Poulomi Roy

Affiliations: 
Birla Institute of Technology, Mesra, Ranchi 
 2017- CSIR – Central Mechanical Engineering Research Institute 
Area:
Nanochemistry
Website:
http://poulomiroy.wixsite.com/nanoenergylab/about
Google:
"Poulomi Roy"
Bio:

http://www.cmeri.res.in/user-details/1474

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Publications

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Das C, Sinha N, Roy P. (2023) Defect Enriched Tungsten Oxide Phosphate with Strategic Sulfur Doping for Effective Seawater Oxidation. Inorganic Chemistry. 62: 19096-19106
Khatun S, Pal S, Sinha N, et al. (2023) New age chloride shielding strategies for corrosion resistant direct seawater splitting. Chemical Communications (Cambridge, England)
Sinha N, Roy P. (2022) Nickel-Vanadium-Manganese Trimetallic Nitride as Energy Saving, Efficient Bifunctional Electrocatalyst for Alkaline Water Splitting via Urea Electrocatalysis. Inorganic Chemistry
Das C, Sinha N, Roy P. (2022) Transition Metal Non-Oxides as Electrocatalysts: Advantages and Challenges. Small (Weinheim An Der Bergstrasse, Germany). e2202033
Khatun S, Roy P. (2020) Bismuth iron molybdenum oxide solid solution: a novel and durable electrocatalyst for overall water splitting. Chemical Communications (Cambridge, England)
Raj S, Kar P, Roy P. (2019) Ammonia-Assisted Growth of CoSn(OH) Nanostructures and Their Electrochemical Performances for Supercapacitor. Journal of Nanoscience and Nanotechnology. 19: 2755-2761
Raj S, Anantharaj S, Kundu S, et al. (2019) In Situ Mn-Doping-Promoted Conversion of Co(OH)2 to Co3O4 as an Active Electrocatalyst for Oxygen Evolution Reaction Acs Sustainable Chemistry & Engineering. 7: 9690-9698
Raj S, Srivastava SK, Kar P, et al. (2019) In situ growth of Co3O4 nanoflakes on reduced graphene oxide-wrapped Ni-foam as high performance asymmetric supercapacitor Electrochimica Acta. 302: 327-337
Raj S, Kar P, Roy P. (2018) Facile synthesis of flower-like morphology CuCoO for a high-performance supercapattery with extraordinary cycling stability. Chemical Communications (Cambridge, England)
Raj S, Kumar S, Srivastava SK, et al. (2018) Deposition of Tin Oxide Thin Films by Successive Ionic Layer Adsorption Reaction Method and Its Characterization. Journal of Nanoscience and Nanotechnology. 18: 2569-2575
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