Siddharth V. Patwardhan, Ph.D.

Affiliations: 
2003 University of Cincinnati, Cincinnati, OH 
Area:
Materials Science Engineering, Microbiology Biology
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"Siddharth Patwardhan"

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Stephen J. Clarson grad student 2003 University of Cincinnati
 (Silicification and biosilicification: The role of macromolecules in bioinspired silica synthesis.)
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Publications

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Entwistle JE, Beaucage G, Patwardhan SV. (2020) Mechanistic understanding of pore evolution enables high performance mesoporous silicon production for lithium-ion batteries Journal of Materials Chemistry A. 8: 4938-4949
Dove CA, Bradley FF, Patwardhan SV. (2019) A material characterization and embodied energy study of novel clay-alginate composite aerogels Energy and Buildings. 184: 88-98
Manning JRH, Routoula E, Patwardhan SV. (2018) Preparation of Functional Silica Using a Bioinspired Method. Journal of Visualized Experiments : Jove
Patwardhan SV, Manning JR, Chiacchia M. (2018) Bioinspired synthesis as a potential green method for the preparation of nanomaterials: Opportunities and challenges Current Opinion in Green and Sustainable Chemistry. 12: 110-116
Alotaibi KM, Shiels L, Lacaze L, et al. (2017) Iron supported on bioinspired green silica for water remediation. Chemical Science. 8: 567-576
Manning JR, Yip T, Centi A, et al. (2017) An eco-friendly, tunable and scalable method for producing porous functional nanomaterials designed using molecular interactions. Chemsuschem
Clare AT, Speidel A, Mitchell-smith J, et al. (2017) Electrolyte design for suspended particulates in electrolyte jet processing Cirp Annals. 66: 201-204
McKinstry C, Cussen EJ, Fletcher AJ, et al. (2017) Scalable continuous production of high quality HKUST-1 via conventional and microwave heating Chemical Engineering Journal. 326: 570-577
Manning JRH, Yip TWS, Centi A, et al. (2017) Inside Cover: An Eco-Friendly, Tunable and Scalable Method for Producing Porous Functional Nanomaterials Designed Using Molecular Interactions (ChemSusChem 8/2017) Chemsuschem. 10: 1643-1643
Davidson S, Lamprou DA, Urquhart AJ, et al. (2016) Bioinspired Silica Offers a Novel, Green, and Biocompatible Alternative to Traditional Drug Delivery Systems Acs Biomaterials Science & Engineering. 2: 1493-1503
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