{"id":616,"date":"2018-09-05T17:15:07","date_gmt":"2018-09-05T21:15:07","guid":{"rendered":"https:\/\/web.uri.edu\/nano\/?page_id=616"},"modified":"2025-04-25T15:37:39","modified_gmt":"2025-04-25T19:37:39","slug":"publications","status":"publish","type":"page","link":"https:\/\/web.uri.edu\/nano\/publications\/","title":{"rendered":"Publications"},"content":{"rendered":"<h4>100+ peer reviewed articles and 1 book chapter since 2013<\/h4>\n<h3>2025<\/h3>\n<p>Citrus pectin-coated inhalable PLGA nanoparticles for treatment of pulmonary fibrosis. Perera, K., Ghumman, M., Sorkhdini, P., Norbrun, C., Negash, S., Zhou, Y., &amp; Menon, J. U. <i>Journal of Materials Chemistry B (2025)<\/i>,&nbsp;<i>13<\/i>(10), 3325-3339.<\/p>\n<p>Effects of weathering and simulated gastric fluid exposure on cellular responses to polystyrene particles. Gong, L., Pan, A., Matsuo, T., Kanniyappan, H., Andreu, I., Rothman, A., &amp; Lin, Y. <i>Environmental Science: Nano (2025)<\/i>,&nbsp;<i>12<\/i>(1), 528-547.<\/p>\n<p>Comparative Particle Analysis of Glauconite and Ottawa Sands through X-Ray Micro-Computed Tomography. Shazeebur Rahman, S. M., Beemer, R. D., &amp; Cabral, M. In <i>Geotechnical Frontiers 2025<\/i>&nbsp;(pp. 435-445).<\/p>\n<p>RDX Red Gum: A High Performance Pressable Formulation. Busby, T., Ichiyama, R., Smith, J., &amp; Oxley, J. <i>Journal of Energetic Materials (2025)<\/i>,&nbsp;<i>43<\/i>(1), 158-166.<\/p>\n<p>Synthesized microstructures and reflectance spectra of solids in the ice Ih\u2013MgCl2\u2022 12H2O system: Implications for Europa. Czernik, T. B., Robertson, K., Meyers, C., McCarthy, C., Hirth, G., &amp; Cooper, R. F. <i>Icarus (2025)<\/i>, 116481.<\/p>\n<p>Statistical Crushing of Hollow Calcareous Sediments. Zeppilli, D., Beemer, R. D., Riera, R., Lebrec, U., Blazeski, M., &amp; Cassidy, M. J. <i>Journal of Geotechnical and Geoenvironmental Engineering (2025)<\/i>,&nbsp;<i>151<\/i>(1), 04024153.<\/p>\n<h3>2024<\/h3>\n<p>A comparison of the biofouling potential of field-collected and laboratory-cultured Ulva. Kurtz, K. R., Green-Gavrielidis, L., Maranda, L., Thornber, C. S., Moloney, D. M., &amp; Oyanedel-Craver, V.&nbsp; <i>Biofouling (2024)<\/i>,&nbsp;<i>40<\/i>(9), 632-644.<\/p>\n<p>Impact of Nebulization on the Physicochemical Properties of Polymer\u2013Lipid Hybrid Nanoparticles for Pulmonary Drug Delivery. Gonsalves, A., &amp; Menon, J. U. <i>International Journal of Molecular Sciences (2024)<\/i>,&nbsp;<i>25<\/i>(9), 5028.<\/p>\n<p>Continuous co-treatment of mine drainage with municipal wastewater. Spellman, C. D., Burton, Z. T., Ikuma, K., Strosnider, W. H., Tasker, T. L., Roman, B., &amp; Goodwill, J. E. <i>Journal of Environmental Management (2024)<\/i>,&nbsp;<i>354<\/i>, 120282.<\/p>\n<p>Machine Learning-Assisted Near-Infrared Spectral Fingerprinting for Macrophage Phenotyping. Nadeem, A., Lyons, S., Kindopp, A., Jamieson, A., &amp; Roxbury, D.&nbsp;<i>ACS nano (2024)<\/i>,&nbsp;<i>18<\/i>(34), 22874-22887.<\/p>\n<p>Development and characterization of a novel poly (N-isopropylacrylamide)-based thermoresponsive photoink and its applications in DLP bioprinting. Perera, K. D., Boiani, S. M., Vasta, A. K., Messenger, K. J., Delva, S., &amp; Menon, J. U. <i>Journal of Materials Chemistry B (2024)<\/i>,&nbsp;<i>12<\/i>(38), 9767-9779.<\/p>\n<p>Dynamic mode-I fracture toughness and damage sensing characterization in additively manufactured ABS nanocomposites. Lincon, M. I., &amp; Chalivendra, V. B. <i>The International Journal of Advanced Manufacturing Technology (2024)<\/i>,&nbsp;<i>133<\/i>(5), 2277-2292.<\/p>\n<h3>2023<\/h3>\n<p>Electric potential induced prevention and removal of an algal biofoulant from planar SERS substrates. Poonia, M., Kurtz, K., Green-Gavrielidis, L., Oyanedel-Craver, V., &amp; Bothun, G. D. <i>Environmental Science &amp; Technology (2023)<\/i>,&nbsp;<i>57<\/i>(31), 11666-11674.<\/p>\n<p>N-Heterocyclic carbene-based gold etchants. Chevalier, R. B., Pantano, J., Kiesewetter, M. K., &amp; Dwyer, J. R. <i>Beilstein Journal of Nanotechnology (2023)<\/i>, <i>14<\/i>(1), 865-871.<\/p>\n<p>Gong, L., Martinez, O., Mesquita, P., Kurtz, K., Xu, Y. &amp; Lin, Y. A microfluidic approach for label-free identification of small-sized microplastics in seawater. <i>Sci Rep<\/i>&nbsp;<b>13<\/b>, 11011 (2023). 10.1038\/s41598-023-37900-9<\/p>\n<p>Microplastics distribution within western Arctic seawater and sea ice. D\u2019Angelo, A., Trenholm, N., Loose, B., Glastra, L., Strock, J., &amp; Kim, J. <i>Toxics (2023)<\/i>,&nbsp;<i>11<\/i>(9), 792.<\/p>\n<p>Modifying explosive behavior with additives. Busby, T., Smith, J., Sheehan, P., &amp; Oxley, J. <i>Propellants, Explosives, Pyrotechnics (2023)<\/i>,&nbsp;<i>48<\/i>(8), e202200324.<\/p>\n<p>Improved performance of silicon-containing anodes with organic solvent-solubilized lithium nitrate. Rynearson, L., Jayawardana, C., Yeddala, M., &amp; Lucht, B. L. <i>Journal of The Electrochemical Society (2023)<\/i>,&nbsp;<i>170<\/i>(6), 060525.<\/p>\n<p>pH-responsive swelling micelles for the treatment of methicillin-resistant Staphylococcus aureus biofilms. Deusenbery, C., Gomez Casas, C., &amp; Shukla, A. <i>ACS Applied Polymer Materials (2023)<\/i>,&nbsp;<i>5<\/i>(9), 7400-7410.<\/p>\n<p>Improved SiGr\/NCM523 cycling via triethyl phosphate-solubilized lithium nitrate electrolyte. Rynearson, L., Jayawardana, C., Rodrigo, N. D., &amp; Lucht, B. L.<i>The Journal of Physical Chemistry C (2023)<\/i>,&nbsp;<i>127<\/i>(4), 1758-1766.<\/p>\n<p>Development of a porous layer-by-layer microsphere with branched aliphatic hydrocarbon porogens. Shahjin, F., Patel, M., Hasan, M., Cohen, J. D., Islam, F., Ashaduzzaman, M., &#8230; &amp; Kevadiya, B. D. <i>Nanomedicine: Nanotechnology, Biology and Medicine (2023)<\/i>,&nbsp;<i>48<\/i>, 102644.<\/p>\n<p>Development and characterization of lung surfactant-coated polymer nanoparticles for pulmonary drug delivery. Gonsalves, A., Sorkhdini, P., Bazinet, J., Ghumman, M., Dhamecha, D., Zhou, Y., &amp; Menon, J. U. <i>Biomaterials advances (2023)<\/i>,&nbsp;<i>150<\/i>, 213430.<\/p>\n<h3>2022<\/h3>\n<p>Organic Anion Detection with Functionalized SERS Substrates via Coupled Electrokinetic Preconcentration, Analyte Capture, and Charge Transfer. Poonia, M., K\u00fcster, T., Bothun G.D. Appl. Mater. Interfaces (2022), <a href=\"https:\/\/doi.org\/10.1021\/acsami.2c02934\">10.1021\/acsami.2c02934<\/a><\/p>\n<p>Flagellin\/Virus-like Particle Hybrid Platform with High Immunogenicity, Safety, and Versatility for Vaccine Development, Zhao, Y., Li, Z., Voyer, J., Li, Y., Chen, X., <em>ACS Appl. Mater. Interfaces<\/em>&nbsp;14, 19, 21872\u201321885 (2022), <a href=\"https:\/\/doi-org.uri.idm.oclc.org\/10.1021\/acsami.2c01028\">10.1021\/acsami.2c01028<\/a><\/p>\n<p>Electrolytes Containing Triethyl Phosphate Solubilized Lithium Nitrate for Improved Silicon Anode Performance, Rynearson, L., Rodrigo, N.D., Jayawardana, C., and Lucht, B.L., <em>J. Electrochem. Soc.<\/em> 169 040537 (2022), DOI: <a href=\"https:\/\/doi.org\/10.1149\/1945-7111\/ac6455\">10.1149\/1945-7111\/ac6455<\/a><\/p>\n<p>Aggregation Reduces Subcellular Localization and Cytotoxicity of Single-Walled Carbon Nanotubes, Gravely, M., Kindopp, A., Hubert, L., Card, M., Nadeem, A., Miller, C., and Roxbury, D., <em>ACS Appl. Mater. Interfaces<\/em> 14, 17, 19168-19177 (2022), <a href=\"https:\/\/doi.org\/10.1021\/acsami.2c02238\">10.1021\/acsami.2c02238<\/a><\/p>\n<p>Modification of lithium electrodeposition behavior by variation of electrode distance, Chae, O.B., Kim, J., Lucht, B.L., <em>Jour. Power Sources<\/em> 532, 231338 (2022), <a href=\"https:\/\/doi.org\/10.1016\/j.jpowsour.2022.231338\">10.1016\/j.jpowsour.2022.231338.<\/a><\/p>\n<p>Development of a Porous Layer-by-Layer Microsphere with Branched Aliphatic Hydrocarbon Porogens, Shahjin, F., Patel, M., Hasan, M., Cohen J., Islam, F., Ashaduzzaman, M., Nayan, M.,&nbsp; Subramaniam, M., Zhou, Y., Andreu, I., Gendelman, H., Kevadiya, B., (2022) Available at SSRN: <a href=\"https:\/\/ssrn.com\/abstract=4189034\" target=\"_blank\" rel=\"noopener\">https:\/\/ssrn.com\/abstract=4189034<\/a><\/p>\n<p>Protein-templated core\/shell Au nanostructure for intracellular reactive oxygen species detection by SERS,<span class=\"hlFld-ContribAuthor\"> Anik, M., Pan, A., Jakaria, M., Meenach, S., Bothun, G., <span class=\"cit-title\"><i>ACS Appl. Nano Mater.<\/i><\/span>&nbsp;<span class=\"cit-year-info\">2022<\/span><span class=\"cit-volume\">, 5<\/span><span class=\"cit-issue\">, 10<\/span><span class=\"cit-pageRange\">, 14356\u201314366, <a href=\"https:\/\/doi.org\/10.1021\/acsanm.2c02641\">https:\/\/doi.org\/10.1021\/acsanm.2c02641&nbsp;<\/a><\/span><\/span><\/p>\n<h3>2021<\/h3>\n<p>Active site mutations in the bacterial actin homolog FtsA impair direct interactions with the divisome in&nbsp;<em>Escherichia coli <\/em>Morrison, J.J., Ferreira, C.N., Siler, E.M., Nelson, K., Trebino, C.E., Piraino, B., Camberg, J.L. <em>bioRxiv<\/em>, (2021). <a href=\"https:\/\/doi.org\/10.1101\/2022.02.25.482027\">10.1101\/2022.02.25.482027<\/a><\/p>\n<p>Albumin protein coronas render nanoparticles surface active: consonant interactions at air\u2013water and at lipid monolayer interfaces, Ganji, N., Bothun, G.D. <em>Environ. Sci. Nano <\/em>8, 160-173 (2021), <a href=\"https:\/\/doi-org.uri.idm.oclc.org\/10.1039\/D0EN00934B\">10.1039\/D0EN00934B<\/a><\/p>\n<p>A Long-Acting Curcumin Nanoparticle\/In Situ Hydrogel Composite for the Treatment of Uveal Melanoma Xie, L., Yue, W., Ibrahim, K., Shen, J. <em>Pharmaceutics<\/em> 13, 1335 (2021), <a href=\"https:\/\/doi.org\/10.3390\/pharmaceutics13091335\">10.3390\/pharmaceutics13091335<\/a><\/p>\n<p>A Wearable Optical Microfibrous Biomaterial with Encapsulated Nanosensors Enables Wireless Monitoring of Oxidative Stress, Safaee, M.M., Gravelly, M., Roxbury, D. <em>Adv. Func. Mater.<\/em> 31(13), 2006254 (2021), <a href=\"https:\/\/doi.org\/10.1002\/adfm.202006254\">10.1002\/adfm.202006254<\/a><\/p>\n<p>Carbon Nanotube\u2013Liposome Complexes in Hydrogels for Controlled Drug Delivery via Near-Infrared Laser Stimulation Zahra, S., Madani, M., Gravely, M., Silva, C., Kennedy, S., Bothun, G.D. Roxbury, D., <em>ACS Appl Nanomater <\/em>4, 331-342 (2021), <a href=\"https:\/\/doi-org.uri.idm.oclc.org\/10.1021\/acsanm.0c02700\">10.1021\/acsanm.0c02700<\/a><\/p>\n<p>Colorimetric Determination of Nitrate after Reduction to Nitrite in a Paper-Based Dip Strip, Charbaji, A., Heidari-Bafroui, H., Rahmani, N., Anagnostopoulos, C., Faghri, M. <em>Chem Proc<\/em> 5(9), 1-9 (2021), <a href=\"https:\/\/doi.org\/10.3390\/CSAC2021-10459\">10.3390\/CSAC2021-10459<\/a><\/p>\n<p>Contact transfer of engineered nanomaterials in the workplace Andreu, I., Ngo, T.M., Perez, V., Bilton, M.W., Cadieux, K.E.C., Paul, M.T.Y., Hidalgo Castillo, T.C., Davies, C.B., Gates, B.D. <em>Royal Society Open Science<\/em> 8(8), (2021), <a href=\"https:\/\/doi.org\/10.1098\/rsos.210141\">10.1098\/rsos.210141<\/a><\/p>\n<p>Coregulated assembly of actin-like FtsA polymers with FtsZ during Z-ring formation and division in&nbsp;<em>Escherichia coli<\/em>, Morrison, J.J., Conti, J., Camberg, J.L. <em>bioRxiv<\/em>, (2021), <a href=\"https:\/\/doi.org\/10.1101\/2021.01.12.426377\">10.1101\/2021.01.12.426377<\/a><\/p>\n<p>Development of nanoparticle-based orodispersible palatable pediatric formulations Deng, Y., Shen, L., Yang, Y., Shen, J. <em>Int. J. Pharm.<\/em> 596, 120206 (2021), <a href=\"https:\/\/doi-org.uri.idm.oclc.org\/10.1016\/j.ijpharm.2021.120206\">10.1016\/j.ijpharm.2021.120206<\/a><\/p>\n<p>Development of Spray-Dried Cyclodextrin-Based Pediatric Anti-HIV Formulations, Ivone, R., Fernando, A., DeBoef, B., Meenach, S.A., Shen, J. <em>AAPS PharmSciTech<\/em> 22(193), 1-10 (2021), <a href=\"https:\/\/doi.org\/10.1208\/s12249-021-02068-w\">10.1208\/s12249-021-02068-w<\/a><\/p>\n<p>Electrocoagulation applied for the removal of microplastics from wastewater treatment facilities, Elkhatib, D., Oyanedel-Craver, V., Carissimi, E. <em>Sep. Pur. Technol. <\/em>276, 118877 (2021), <a href=\"https:\/\/doi-org.uri.idm.oclc.org\/10.1016\/j.seppur.2021.118877\">10.1016\/j.seppur.2021.118877<\/a><\/p>\n<p>Fabrication of PNIPAm-based thermoresponsive hydrogel microwell arrays for tumor spheroid formation, Dhamecha, D., Le, D., Chakravarty, T., Perera, K., Dutta, A., Menon, J.U. <em>Mater. Sci. Eng. C<\/em> 125, 112100 (2021), <a href=\"https:\/\/doi-org.uri.idm.oclc.org\/10.1016\/j.msec.2021.112100\">10.1016\/j.msec.2021.112100<\/a><\/p>\n<p>Free-standing, thin-film sensors for the trace detection of explosives, Ricci, P.P., Gregory, O.J. <em>Sci. Rep.<\/em> 11, 6623 (2021),<a href=\"https:\/\/doi.org\/10.1038\/s41598-021-86077-6\"> 10.1038\/s41598-021-86077-6<\/a><\/p>\n<p>Improved Resilience and Uniformity in Polysulfone Blends from an Accelerated Grafting Ring-Opening Polymerization Reaction with Benzoxazine, Nadeem, A., Brown, E. A., Radford, M. J., Andreu, I., Gates, B. D., &amp; Rider, D. A.&nbsp;<em>Macromolecules<\/em>&nbsp;54(21), 10017-10030 (2021), <a href=\"https:\/\/doi-org.uri.idm.oclc.org\/10.1021\/acs.macromol.1c01613\">10.1021\/acs.macromol.1c01613<\/a><\/p>\n<p>In Situ Measuring Partition Coefficient at Intact Nanoemulsions: A New Application of Single-Entity Electrochemistry, Madawala, H. ,Sabaragamuwe, S. G., Elangovan, S., Kim, J. <em>Anal. Chem.<\/em>, 93(2), 1154-1160 (2021). doi: <a href=\"http:\/\/10.1021\/acs.analchem.0c04205\">10.1021\/acs.analchem.0c04205<\/a><\/p>\n<p>In situ SERS detection of dissolved nitrate on hydrated gold substrates, K\u00fcster, T., Bothun, G.D. <em>Nanoscale Adv.<\/em> 3, 4098-4105 (2021), <a href=\"https:\/\/doi-org.uri.idm.oclc.org\/10.1039\/D1NA00156F\">10.1039\/D1NA00156F<\/a><\/p>\n<p>Lithium Bis(trimethylsilyl) Phosphate as a Novel Bifunctional Additive for High-Voltage LiNi<sub>1.5<\/sub>Mn<sub>0.5<\/sub>O<sub>4<\/sub>\/Graphite Lithium-Ion Batteries, Kim, J., Adiraju, V., Rodrigo, N., Hoffmann, J., Payne, M., Lucht B. <em>ACS Appl. Mater. Interfaces<\/em> 13(19), 22351\u201322360 (2021), <a href=\"https:\/\/doi-org.uri.idm.oclc.org\/10.1021\/acsami.1c02572\">10.1021\/acsami.1c02572<\/a><\/p>\n<p>Lithium Cyano Tris(2,2,2-trifluoroethyl) Borate as a Multifunctional Electrolyte Additive for High-Performance Lithium Metal Batteries, Chae, O.B., Adiraju, A.K., Lucht, B.L. <em>ACS Energy Letters<\/em> 6, 3851-3857 (2021), <a href=\"https:\/\/doi-org.uri.idm.oclc.org\/10.1021\/acsenergylett.1c01999\">10.1021\/acsenergylett.1c01999<\/a><\/p>\n<p>Multispectral fingerprinting resolves dynamics of nanomaterial trafficking in primary endothelial cells, Gravely, M., Roxbury, D. <em>ACS nano<\/em> 15(7), 12388-12404 (2021), <a href=\"https:\/\/doi-org.uri.idm.oclc.org\/10.1021\/acsnano.1c04500\">10.1021\/acsnano.1c04500<\/a><\/p>\n<p>Optimizing noncontact oxygen-plasma treatment to improve the performance of a top-down nanofabricated surface enhanced Raman spectroscopy substrate with structurally responsive, high-aspect-ratio nanopillar array, Chevalier, R.B., Dwyer, J.R. <em>Jour. Ram. Spec.<\/em> 52(3), 608-615 (2021), <a href=\"https:\/\/doi.org\/10.1002\/jrs.6050\">10.1002\/jrs.6050<\/a><\/p>\n<p>Physicochemical implications of cyanobacteria oxidation with Fe(VI), Addison, E.L., Gerlach, K.T., Spellman, C.D., Santilli, G., Fairbrother, A.R., Shepard, Z., Dudle, J.D., Goodwill, J.E. <em>Chemosphere<\/em> 266, 128956 (2021), <a href=\"https:\/\/doi-org.uri.idm.oclc.org\/10.1016\/j.chemosphere.2020.128956\">10.1016\/j.chemosphere.2020.128956<\/a><\/p>\n<p>Synthesis and characterization of a novel pH-responsive drug-releasing nanocomposite hydrogel for skin cancer therapy and wound healing, Gonsalves, A., Tambe, P., Le, D., Thakore, D., Wadajkar, A.S., Yang, J., Nguyen, K.T. and Menon, J.U. <em>Jour. Mater. Chem. B<\/em> 9, 9533-9546 (2021), <a href=\"http:\/\/DOI\thttps:\/\/doi.org\/10.1039\/D1TB01934A\" data-wplink-url-error=\"true\">10.1039\/d1tb01934a<\/a><\/p>\n<p>The Stress-Active Cell Division Protein ZapE Alters FtsZ Filament Architecture to Facilitate Division in <em>Escherichia coli<\/em> DiBiasio, E.C., Dickinson, R.A., Trebino, C.E., Ferreira, C.N., Morrison, J.J. and Camberg, J.L.&nbsp;<em>Front. Microbiol.<\/em> 12, 2697 (2021), <a href=\"https:\/\/doi.org\/10.3389\/fmicb.2021.733085\">10.3389\/fmicb.2021.733085<\/a><\/p>\n<p>Zinculose: A new fibrous material with embedded zinc particles, Charbaji, A., Smith, W., Anagnostopoulos, C., Faghri, M. <em>Eng. Sci. Technol., an Int.<\/em> 24(2), 571-578 (2021), <a href=\"https:\/\/doi-org.uri.idm.oclc.org\/10.1016\/j.jestch.2020.09.005\">10.1016\/j.jestch.2020.09.005<\/a><\/p>\n<p>A new paper-base microfluidic device for improved detection of nitrate in water, Charbaji, A., Heidari-Bafroui, H., Anagnostopoulos, C., Faghri, <em>Sensor 2021<\/em>, 21(1), <a href=\"https:\/\/doi.org\/10.3390\/s21010102\">https:\/\/doi.org\/10.3390\/s21010102<\/a><\/p>\n<p>Assembly and architecture of&nbsp;<em>Escherichia coli<\/em>&nbsp;divisome proteins FtsA and FtsZ, Morrison, J.J., Conti, J., Camberg, J.L. <em>Int. J. Biol. Chem.<\/em> 298(3), 101663 (2022), <a href=\"https:\/\/doi-org.uri.idm.oclc.org\/10.1016\/j.jbc.2022.101663\">10.1016\/j.jbc.2022.101663<\/a><\/p>\n<p>Investigation of the Electrode-Electrolyte Interphase in Ester-Based Electrolytes in NCM523\/Graphite Cells, Rodrigo, N.D., Jayawardana, C., Lucht, B. <em>J. Electrochem. Soc.<\/em> 169, 030519 (2022), <a href=\"http:\/\/10.1149\/1945-7111\/ac5a19\">10.1149\/1945-7111\/ac5a19<\/a><\/p>\n<p>Lung cell membrane-coated nanoparticles capable of enhanced internalization and translocation in pulmonary epithelial cells, Jakaria, M.G., Sorkhdini, P., Yang, D., Zhou, Y., Meenach, S.A. <em>Pharmaceutics<\/em> 613, 121418 (2022), <a href=\"https:\/\/doi.org\/10.1016\/j.ijpharm.2021.121418\">10.1016\/j.ijpharm.2021.121418<\/a><\/p>\n<h3>2020<\/h3>\n<p>Rapid, General-Purpose Patterning of Silicon Nitride Thin Films Under Ambient Conditions for Applications Including Fluid Channel and SERS Substrate Formation, Sheetz, B. S., Bandara, Y.M.N.D.Y., Rickson, B., Auten, M., Dwyer, J.R. <em>ACS Appl. Mat. Inter.<\/em> 3, 2969-2977 (2020)<\/p>\n<p>Interaction of Cyanobacteria with Nanometer and Micron Sized Polystyrene Particles in Marine and Fresh Water, Silva de Oliveira, T. T., Andreu, I., Machado, M. C., Vimbela, G., Tripathi, A., Bose, A. <em>Langmuir<\/em> 36, 3963-3969 (2020)<\/p>\n<p>Sulfite activation changes character of ferrate resultant particles, Bzdyra, B. M., Spellman, C. J., Andreu, I., Goodwill, J. E. <em>Chem. Eng. J.<\/em> 393, 124771 (2020)<\/p>\n<p>Rheological and microstructural characterization of aqueous suspensions of carbon black and reduced graphene oxide, Zhang, Y., Sullivan, J., Bose, A. <em>Coll. Surf. A<\/em> 592, 124591 (2020)<\/p>\n<p>Carbon Black Templated Gold Nanoparticles for Detection of a Broad Spectrum of Analytes by Surface-Enhanced Raman Scattering, Abbasi, A., Silva de Oliveira, T. T., Bothun, G. D., Bose, A. <em>ACS Appl. Nano. Mater.<\/em> 3, 2605-2613 (2020)<\/p>\n<p>Radiofrequency and Near-Infrared Responsive Core\u2013Shell Nanostructures Using Layersome Templates for Cancer Treatment, Pan, A., Jakaria, M. G., Meenach, S. A., Bothun, G. D.&nbsp;<em>ACS Appl. Bio. Mater.<\/em> 3, 273-281 (2020)<\/p>\n<h3>2019<\/h3>\n<p>Enhancement of macrophage uptake via phosphatidylserine-coated acetalated dextran nanoparticles, Shah, N. K., Gupta, S. W., Wang, Z., Meenach, S. A.,&nbsp;<em>J. Drug Deliv. Sci. Techn.<\/em> 50, 57-65 (2019)<\/p>\n<p>A comparison of centrifugation and tangential flow filtration for nanoparticle purification: A case study on acetalated dextran nanoparticles, Shah, N. K., Ivone, R., Shen, J., Meenach, S.A.&nbsp;<em>Particuology&nbsp;<\/em>(2019)<\/p>\n<p>Sustained release of a model water-soluble compound via dry powder aerosolizable acetalated dextran microparticles, Shah, N. K., Wang, Z., Gupta, S. K., LeCampion, A., Meenach, S. A.,&nbsp;<em>Pharm. Dev. Techn.<\/em> 9,&nbsp;1133-1143 (2019)<\/p>\n<p>Development and Evaluation of Paclitaxel-Loaded Aerosol Nanocomposite Microparticles and Their Efficacy Against Air-Grown Lung Cancer Tumor Spheroids, Torrico, E. A., Sun, Q., Meenach, S. A.,&nbsp;<em>ACS Biomat. Sci. Techn.&nbsp;<\/em> (2019)<\/p>\n<p>Using \u201cnano tools\u201d as the basis for a hands-on experiential course in nanotechnology, Bothun, G. D., Oyanedel-Craver, V., Park, K. Chapter 11 in&nbsp;<em>Exposure to Engineered Nanomaterials in the Environment<\/em>, Elsevier, Ed. Marmiroli, N., White, J. C., Song, J. 291-305 (2019)<\/p>\n<p>Single-Entity Electrochemistry of Nanoemulsion: The Nanostructural Effect on Its Electrochemical Behavior,&nbsp;Sabaragamuwe, S. G., Conti, D., Puri, S. R., Andreu, I., Kim, J.&nbsp;<em>Anal. Chem.<\/em> 91, 9599-9607 (2019)<\/p>\n<p>Biomolecular Functionalization of a Nanomaterial To Control Stability and Retention within Live Cells. Gravely, M., Safaee, M. M., Roxbury, D. <em>Nano Lett.,<\/em>&nbsp;19, 9, 6203-6212 (2019)<\/p>\n<p>Enhancing the Thermal Stability of Carbon Nanomaterials with DNA, Safaee, M. M., Gravely, M., Lamothe, A., McSweeney, M., Roxbury, D.&nbsp;<em>Sci. Rep.<\/em>, 9, 11926 (2019)<\/p>\n<p>Massive and sustained enhancement of the electrical conductivity of polystyrene using multilayer graphene at low loadings, and carbon black as a dispersion aid, Abbasi, A., Bose, A.,<em>&nbsp;Coll. .Surf. A<\/em>, 580, 123727 (2019)<\/p>\n<h3>2018<\/h3>\n<p>Effect of Electrolyte on the nanostructure of the Solid Electrolyte Interphase (SEI) and Performance of Lithium Metal Anodes, Jurng, S., Brown, Z. L., Kim, J., Lucht, B. L., <em>Energy Environm. Sci.<\/em>, 11, 2600-2608 (2018)<\/p>\n<p>Surfactant Assisted, One-Step Synthesis of Fe<sub>3<\/sub>O<sub>4<\/sub> Nanospheres and Further Modified Fe<sub>3<\/sub>O<sub>4<\/sub>\/C with Excellent Lithium Storage Performance, Pan, Y., Zeng, W., Li, L., Zhang, Y., Dong, Y., Ye, K., Cheng, K., Cao, D., Wang, G., Lucht, B. L., <em>J. Electroanalyt. Chem.<\/em>, 810, 248-254 (2018)<\/p>\n<p>Effect of Fluoroethylene Carbonate Electrolytes on the Nanostructure of the Solid Electrolyte Interphase and Performance of Lithium Metal Anodes, Brown, Z. L., Jurng, S., Nguyen, C. C., Lucht, B. L., <em>ACS Appl. Energy Mater<\/em>, 1, 3057-3062 (2018)<\/p>\n<p>Tolouei E, Nulger N, Ghatee R, Kennedy SM. A magnetically responsive biomaterial system for regulating the duration between pro- and anit-inflammatory cytokine deliveries. <em>Adv. Healthc. Mater.<\/em> 7 1800227&nbsp;(2018)<\/p>\n<p>Karawdeniya BI, Nuwan YM, Bandara DY, Whelan JC, Dwyer JR. A General Strategy to Make an On-Demand Library of Structurally and Functionally Diverse SERS Substrates. <em>ACS Appl. Nano. Mater.<\/em> 1 960-968&nbsp;(2018)<\/p>\n<p>Jones DR, DiScenza DJ, Mako TL, Levine M Environmental Application of Cyclodextrin Metal-Organic Frameworks in an Undergraduate Teaching Laboratory <em>J. Chem. Educ.<\/em> 2018, 95&nbsp; 1636\u20131641&nbsp;(2018)<\/p>\n<p>Ganji N, Khan I, Bothun GD.&nbsp;Surface activity of poly(ethylene glycol)-coated silver nanoparticles in the presence of a lipid monolayer,&nbsp;<em>Langmuir<\/em>,&nbsp;34 2039-2045 (2018)<\/p>\n<p>Aceto SR, Lu Y, Narayanan R, Hesket DR, Wujcik EK, Bose A. Hexagonally patterned mixed surfactant-templated room temperature synthesis of titania\u2013lead selenide nanocomposites. <em>Adv. Comp. Hybrid Mat. <\/em>1 389\u2013396&nbsp;(2018)<\/p>\n<p>Faghihzadeh F, Anaya FN,&nbsp; Astudillo-Castro C, Oyanedel-Craver V. Kinetic, metabolic and macromolecular response of bacteria to chronic nanoparticle exposure in continuous culture.&nbsp;<em>Env. Sci.: Nano<\/em>, 5 1386-1396&nbsp;(2018) &nbsp;<\/p>\n<p>Emi T, Barnes T, Orton E, Reisch A, Tolouei AE, Madani SZM, Kennedy SM. Temporal control over optimized anticancer deliveries from magnetically responsive hydrogels<em>. ACS Biomet. Sci. Eng.<\/em> 4 2412-2423&nbsp;(2018)<\/p>\n<h3>2017<\/h3>\n<p>Zhang Y, Pan Y, Dong Y, Lucht BL, Bose A. Influence of the Oil on the Structure and Electrochemical Performance of Emulsion-Templated Tin\/Carbon Anodes for Lithium Ion Batteries<em>. Langmuir<\/em> 33 (2017) 8869\u22128876<\/p>\n<p>Xia Y, Jang H-S, Shen Z, Bothun GD, Li Y, Nieh M-P.&nbsp;Effects of Membrane Defects and Polymer Hydrophobicity on Networking Kinetics of Vesicles,&nbsp;<em>Langmuir<\/em>, 33 (2017) 5745-5751<\/p>\n<p>Wang Z,&nbsp;Meenach SA.&nbsp;Optimization of Acetalated Dextran-Based Nanocomposite Microparticles (nCmP) for Deep Lung Delivery of Therapeutics Via Spray Drying. <em>J. Pharm. Sci.<\/em>&nbsp; 525 (2017) 264-274<\/p>\n<p>Wang Z, Gupta SK,&nbsp; Meenach SA.&nbsp;Development and Physicochemical Characterization of Acetalated Dextran Aerosol Particle Systems for Deep Lung Delivery. <em>Int. J. Pharm.<\/em>&nbsp; 525 (2017) 264-277<\/p>\n<p>Sullivan RK,&nbsp;Erickson M, Oyanedel-Craver V. Understanding the microbiological, organic and inorganic contaminant removal capacity of ceramic water filters doped with different silver nanoparticles.&nbsp;<em>Env. Sci.: Nano,<\/em>&nbsp;4 (2017) 2348-2355<\/p>\n<p>Saha A, Chaudhuri S, Godfrin MP, Mamak M, Reeder B, Hodgdon T, Saveyn P, Tripathi A, Bose A. Impact of Nearly Water-Insoluble Additives on the Properties of Vesicular Suspensions. <em>Ind. Eng. Chem. Res.<\/em> 56 (2017) 899\u2212906<\/p>\n<p>Rocchio J, Neilsen J, Everett K, Bothun GD. A Solvent-Free Lecithin-Tween 80 System for Oil Dispersion,&nbsp;<em>Coll. Surf. A<\/em>, 533&nbsp;(2017) 218-223<\/p>\n<p>Preiss MR,&nbsp;Cournoyer E, Paquin KL,&nbsp;Vuono EA, Belanger K,&nbsp;Walsh E, Howlett NG, Bothun GD.&nbsp;Tuning the multifunctionality of iron oxide nanoparticles using self-assembled mixed lipid layers,&nbsp;<em>Bioconj. Chem.<\/em> 28, 11 (2017) 2729-2736<\/p>\n<p>Preiss MR, Hart A, Kitchens C, Bothun GD.&nbsp;Hydrophobic Nanoparticles Modify the Thermal Release Behavior of Liposomes,&nbsp;<em>J. Phys. Chem. B<\/em>, 121 (2017) 5040-5047.<\/p>\n<p>Pereira MC, Pianella M, Wei D, Moshnikova A, Marianecci C, Carafa M, Andreev OA, Reshetnyak YK. pH-sensitive pHLIP\u00ae coated niosomes.&nbsp;<em>Mol. Membr. Biol<\/em>.&nbsp;2017 (2017) 1-13&nbsp;<\/p>\n<p>Katepalli H, John VT, Tripathi A, Bose A. Microstructure and rheology of particle stabilized emulsions: Effects of particle shape and inter-particle interactions<em>J. Colloid Interf. Sci.<\/em>485 (2017) 11-17<\/p>\n<p>Gupta SK, Torrico Guzman EA,&nbsp;Meenach SA.&nbsp;Co-administration of a Tumor-Penetrating Peptide Improves the Therapeutic Efficacy of Paclitaxel in a Novel Air-Grown Lung Cancer 3D Spheroid Model. Int. J. Cancer, 141 (2017) 2143-2153<\/p>\n<p>Dwyer JR, Harb M.&nbsp;Through a window, brightly:&nbsp;&nbsp;A review of selected nanofabricated thin film platforms for spectroscopy, imaging, and detection.&nbsp;<em>App. Spectroscopy.<\/em> 71 (2017) 2051-2075<\/p>\n<p>Daniels JL, Crawford TM, Andreev OA, and Reshetnyak YK. Synthesis and Characterization of pHLIP\u00ae Coated Gold Nanoparticles.&nbsp;<em>Biochem. Biophys. Rep<\/em>.&nbsp;10 (2017) 62-69<\/p>\n<p>Brousseau S, Wang Z,&nbsp;Meenach SA.&nbsp;Development and Physicochemical Characterization of Phospholipid-Based Aerosol Microparticles for the Treatment of Pulmonary Hypertension. <em>AAPS PharmSciTech<\/em> 18 (2017) 3247-3257<\/p>\n<p>Bothun GD, Ganji N, Khan I, Xi A, Bobba C.&nbsp;Anionic and cationic silver nanoparticle binding restructures net-anionic PC\/PG monolayers with saturated or unsaturated lipids,&nbsp;<em>Langmuir<\/em>, 33 (2017) 353-360<\/p>\n<p>Abbasi A, Park D, Bose A, Bothun GD.&nbsp;Near Infrared Responsive Gold-Layersome Nanoshells,&nbsp;<em>Langmuir<\/em>, 33 (2017) 5321-5327<\/p>\n<h3>2016<\/h3>\n<p>Wujcik EK, Aceto SR, Narayanan R, Bose A. Lead Selenide Nanostructures Self-Assembled across Multiple Length Scales and Dimensions. <em>J. Nanomat.<\/em> 2016 (2016) 9575839<\/p>\n<p>Wang Z,&nbsp;Meenach SA.&nbsp;Synthesis and Characterization of Nanocomposite Microparticles (nCmP) for the Delivery of Therapeutics for Cystic Fibrosis. <em>Pharm. Res.<\/em> 33 (2016) 1862-1872<\/p>\n<p>Wang Z, Cuddigan J, Gupta SK,&nbsp;Meenach SA.&nbsp;Nanocomposite Microparticles (nCmP) for the Delivery of Tacrolimus in the Treatment of Pulmonary Arterial Hypertension. <em>Int. J. Pharm.<\/em>&nbsp; 512 (2016) 305-313<\/p>\n<p>Torres JR, Jay GD, Kim K-S, Bothun GD.&nbsp;Adhesion in hydrogel contacts,&nbsp;<em>Proceedings A<\/em>, (2016) 472, 20150892.<\/p>\n<p>Saha A, John VT, Bose A. Facile synthesis, characterization and catalytic activity of nanoporous supports loaded with monometallic and bimetallic nanoparticles <em>Coll. Surf. A: Physicochem. Eng.Aspects<\/em> 491 (2016) 57-61<\/p>\n<p>Nuwan YM, Bandara DY, Karawdeniya BI, Whelan JC, Ginsberg LDS, Dwyer JR.&nbsp;Solution-Based Photo-Patterned Gold Film Formation on Silicon Nitride. <em>ACS App. Mat. Interf.<\/em> 8 (2016) 34964-34969<\/p>\n<p>Katepalli H, Bose A, Hatton TA, Blankschtein D. Destabilization of Oil-in-Water Emulsions Stabilized by Non-ionic Surfactants: Effect of Particle Hydrophilicity. <em>Langmuir<\/em> 32 (2016) 10694\u221210698<\/p>\n<p>Kashcooli Y, Park K, Bose A, Greenfield M, Bothun GD.&nbsp;Patchy layersomes formed by layer-by-layer coating of liposomes with strong biopolyelectrolytes,&nbsp;<em>Biomacromol.<\/em> 17 (2016) 3838-3844<\/p>\n<p>Dwyer JR, Nuwan YM Bandara DY, Whelan JC, Karawdeniya BI, Nichols JW.&nbsp;Silicon nitride membranes for nanofluidic device fabrication <em>Nanofluidics 2nd edition:&nbsp;&nbsp;Nanoscience and Nanotechnology Series<\/em> (2016) 196-236.&nbsp;(Eds. Joshua Edel &amp; Min Jun Kim, Royal Society for Chemistry)<\/p>\n<p>Chakraborty I , Shukla A , Bose A Core\u2013shell rubbery fillers for massive electrical conductivity enhancement and toughening of polystyrene\u2013graphene nanoplatelet composites <em>J. Mater. Sci. <\/em>51 (2016) 10555\u201310560<\/p>\n<p>Anaya N,&nbsp;Faghihzadeh F, Ganji N, Bothun G, Oyanedel-Craver V. Comparative study between chemostat and batch reactors to quantify membrane permeability changes on bacteria exposed to silver nanoparticles.&nbsp;<em>Sci. Tot. Env<\/em><em>.<\/em> 565 (2016) 841-848<\/p>\n<p>Anaya N, Salomon F, Oyanedel-Craver V. Assessment of&nbsp;effect&nbsp;of rare earth elements nanoparticles on&nbsp;structural&nbsp;and metabolic function of bacteria.&nbsp;<em>Env. Sci.: Nano<\/em>, 3 (2016) 67-73<\/p>\n<h3>2015<\/h3>\n<p>Saha A, John VT, Bose A.&nbsp; In Situ Assembly of Hydrophilic and Hydrophobic Nanoparticles at Oil\u2212Water Interfaces as a Versatile Strategy To Form Stable Emulsions. <em>ACS Appl. Mater. Interfaces<\/em> 7 (2015) 21010\u221221014<\/p>\n<p>Nie M, Demeaux J, Young BT, Heskett DR, Chen Y, Bose A, Woicik JC, Lucht BL. Effect of Vinylene Carbonate and Fluoroethylene Carbonate on SEI Formation on Graphitic Anodes in Li-Ion Batteries. <em>J. Electrochem. Soc.<\/em>, 162 (2015) A7008-A7014<\/p>\n<p>Malekar SA, Sarode AL, Bach AC, Bose A, Bothun GD, Worthen DR.&nbsp;Radiofrequency-activated nanoliposomes for controlled combination drug delivery,&nbsp;<em>AAPS PharmSciTech<\/em>, 16 (2015) 1335-43.<\/p>\n<p>Drazenovic J, Wang H, Roth K, Zhang J, Ahmed S, Chen Y, Bothun GD, Wunder S. Effect of Lamellarity and Size on Calorimetric Phase Transitions in Single Component Phosphatidylcholine Vesicles, <em>Biochim. Biophys. Acta-Biomembranes<\/em>, 1848 (2015) 532-543<\/p>\n<p>Chen Y, Xu M, Zhang Y, Pan Y, Lucht BL, Bose A. All-Aqueous Directed Assembly Strategy for Forming High-Capacity, Stable Silicon\/Carbon Anodes for Lithium-Ion Batteries. <em>ACS Appl. Mater. Interfaces<\/em> 7 (2015) 21391\u22122139<\/p>\n<h3>2014<\/h3>\n<p>Xi A, Bothun GD. Centrifugation-based assay for examining nanoparticle-lipid membrane binding and disruption, <em>Analyst<\/em>, 139 (2014) 973-981<\/p>\n<p>Katepalli H, Bose A. Response of Surfactant Stabilized Oil-in-Water Emulsions to the Addition of Particles in an Aqueous Suspension. <em>Langmuir<\/em> 30 (2014) 12736\u221212742<\/p>\n<p>Heeder N, Yussuf &nbsp;A,&nbsp; Guo F, Chakraborty I, Godfrin MP, Hurt R, Tripathi A, Bose A, Shukla A. Highly conductive graphene-based segregated composites prepared by particle templating.<em> J. Mater. Sci. <\/em>49 (2014) 2567\u20132570<\/p>\n<p>Gupta A, Sender M, Fields S, Bothun GD. Phase and sedimentation behavior of oil (octane) dispersions in the presence of model mineral aggregates, <em>Marine Pollution Bulletin<\/em>, 15 (2014) 164-170<\/p>\n<p>Creighton MA, Ohata Y, Miyawaki J, Bose A, Hurt RH.Two-Dimensional Materials as Emulsion Stabilizers: Interfacial Thermodynamics and Molecular Barrier Properties<em>. Langmuir<\/em> 30 (2014) 3687\u22123696<\/p>\n<p>Chen Y, Nie M, Lucht BL, Saha A, Guduru PR, Bose A. High Capacity, Stable Silicon\/Carbon Anodes for Lithium-Ion Batteries Prepared Using Emulsion-Templated Directed Assembly<em>. ACS Appl. Mater. Interfaces,<\/em> 6 (2014) 4678\u22124683<\/p>\n<p>Chen Y, Chen Y, Xiao D, Bose A, Deng R, Bothun GD. Low-Dose Chemotherapy of Hepatocellular Carcinoma In Vitro through Triggered-Release from Bilayer-Decorated Magnetoliposomes, <em>Coll. Surf. B: Biointerfaces<\/em>, 116 (2014) 452-458<\/p>\n<p>Whelan JC, Karawdeniya BI, Nuwan YM, Bandara DY, Velleco BD, Masterson CM, Dwyer JR. Electroless Plating of Thin Gold Films Directly onto Silicon Nitride Thin Films and into Micropores. <em>ACS App. Mat. Interf.<\/em> 6 (2014) 10952-10957<\/p>\n<h3>2013<\/h3>\n<p>Yao L, Daniels J, Wijesinghe D, Andreev OA, Reshetnyak YK (2013) pHLIP-Mediated Delivery of PEGylated Liposomes to Cancer Cells,&nbsp;<em>J. Cont. Rel.<\/em> 167 (2013) 228-237<\/p>\n<p>Saha A, Nikova A, Venkataraman P, John VT, Bose A. Oil Emulsification Using Surface-Tunable Carbon Black Particles. <em>ACS Appl. Mater. Interfaces <\/em>5 (2013) 3094\u22123100<\/p>\n<p>Preiss MR, Gupta A, Bothun GD. Liposome-nanoparticle assemblies, Bionanotechnology: Biological self-assembly and its applications, Caister Academic Press, Norfolk, UK, (2013)<\/p>\n<p>Nie M, Chalasani D, Abraham DP, Chen Y, Bose A, Lucht BL. Lithium Ion Battery Graphite Solid Electrolyte Interphase Revealed by Microscopy and Spectroscopy. <em>J. Phys. Chem. C<\/em>, 117 (2013) 1257\u20131267<\/p>\n<p>Nie M, Abraham DP, Chen Y, Bose A, Lucht BL. Silicon Solid Electrolyte Interphase (SEI) of Lithium Ion Battery Characterized by Microscopy and Spectroscopy. J. Phys. Chem. C,&nbsp;117 (2013) 13403\u201313412<\/p>\n<p>Nasrolahi Shirazi A, Oh D, Tiwari R, Sillivan B, Gupta A, Bothun GD, Parang K. Peptide-Amphiphile Containing Arginine and Fatty Acyl Chains as Molecular Transporters, <em>Mol. Pharm.<\/em> 10 (2013) 4717-4727<\/p>\n<p>Croote D, Godfrin MP, Bose A, Tripathi A, Lee J. A platform for retaining native morphology at sub-second time scales in cryogenic transmission electron microscopy. <em>Rev. Sci. Inst. <\/em>&nbsp;84 (2013) 053707<\/p>\n","protected":false},"excerpt":{"rendered":"<p>100+ peer reviewed articles and 1 book chapter since 2013 2025 Citrus pectin-coated inhalable PLGA nanoparticles for treatment of pulmonary fibrosis. Perera, K., Ghumman, M., Sorkhdini, P., Norbrun, C., Negash, S., Zhou, Y., &amp; Menon, J. U. Journal of Materials Chemistry B (2025),&nbsp;13(10), 3325-3339. Effects of weathering and simulated gastric fluid exposure on cellular responses [&hellip;]<\/p>\n","protected":false},"author":2158,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"_acf_changed":false,"footnotes":"","_links_to":"","_links_to_target":""},"class_list":["post-616","page","type-page","status-publish","hentry"],"acf":[],"_links":{"self":[{"href":"https:\/\/web.uri.edu\/nano\/wp-json\/wp\/v2\/pages\/616","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/web.uri.edu\/nano\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/web.uri.edu\/nano\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/web.uri.edu\/nano\/wp-json\/wp\/v2\/users\/2158"}],"replies":[{"embeddable":true,"href":"https:\/\/web.uri.edu\/nano\/wp-json\/wp\/v2\/comments?post=616"}],"version-history":[{"count":4,"href":"https:\/\/web.uri.edu\/nano\/wp-json\/wp\/v2\/pages\/616\/revisions"}],"predecessor-version":[{"id":1552,"href":"https:\/\/web.uri.edu\/nano\/wp-json\/wp\/v2\/pages\/616\/revisions\/1552"}],"wp:attachment":[{"href":"https:\/\/web.uri.edu\/nano\/wp-json\/wp\/v2\/media?parent=616"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}