Happy to share our recent work on the fabrication of a Co3O4/CoS2 heterostructure for an overall hydrazine-assisted water splitting (OHzWS).
Congratulations to @viplove741 for his first publication. Many more to come. 🤗💐⚡️
@athmaep@Ayan_Mondal_
https://t.co/WuIswG57T4
Congratulations to @athmaep for successfully defending her Ph.D. thesis.
Special thanks to Prof. Sandhyarani N from NIT Calicut and @Rathees81024350 for their insightful suggestions.
It's time for celebrations 🍾🍾
happy to share our recent work on the selective synthesis of Ni2P and Ni12P5 possessing bifunctional electrocatalytic activity toward hydrogen evolution and hydrazine oxidation reactions. @InorgChem
Congratulations to @athmaep@GanguliSagar@Debashrita23
https://t.co/Vh9fgTYN3T
Ligand-Tuned Energetics for the Selective Synthesis of Ni2P and Ni12P5 Possessing Bifunctional Electrocatalytic Activity toward Hydrogen Evolution and Hydrazine Oxidation Reactions https://t.co/OyUSU8aml2
@pramodpillai81@ChemSci_JNCASR thereby indicating that majority of the nickel ions have been consumed during the reaction. In contrast, the colour of the supernatant after the reaction for all three NiFe nanowires was deep brown, which Fe3+ ions are known to impart in aqueous solutions((Fig b)).(3/n)
@pramodpillai81@ChemSci_JNCASR The colour of the supernatant after synthesis further supports this observation. (Please see Figure below). The initially green reaction solution (NiCl2 + ethylene glycol) turned completely transparent after product formation in the case of Ni NW (Fig a) (2/n)
Happy to share my poster in #chemsci2021poster
MC 49: "Influence of Vanadate Structure on Electrochemical Surface
Reconstruction and OER Performance of CoV2O6 and Co3V2O8"
@ChemSci_JNCASR#MatChem
#chemsci2021poster#MatChem 66
Hello, my name is Debashrita Sarkar and I am from IISER Kolkata.
This work is towards understanding OER activity.
Have a look at my poster and feel free to provide your comments, suggestions and feedback.
@ChemSci_JNCASR@The_NaNo_LaB
Check out our new paper on the role of oxygen vacancies in silicates for the removal of organic pollutants and enhanced aromatic alcohol oxidation. Congratulations to @Debashrita23@PaliwalShivdas@GanguliSagar@athmaep for their hard work.
https://t.co/3mcveZJKiQ