DD
Dipti Das
CSIR-Institute of Minerals & Materials Technology, Council of Scientific and Industrial Research Institute of Minerals and Materials Technology, Vidyasagar University, Utkal University
About
Research activities are mostly centered on synthesis, characterization of layered/composite/heterojunction photocatalytic materials, mesoporous materials, non-metal doped mixed oxides having different hierarchy and graphene based nanocomposites/nanoarchitectures for phototransformation, water splitting and environmental benign reactions.
Employment
-
CSIR-Institute of Minerals & Materials Technology Principal Scientist2019 - Present
-
CSIR-Institute of Minerals & Materials Technology Senior Scientist2015 - 2019
-
Council of Scientific and Industrial Research Institute of Minerals and Materials Technology Scientist2012 - 2015
-
Institute of Minerals and Materials Technology CSIR Junior Scientist2009 - 2012
Education
-
Vidyasagar University Ph.D2004 - 2006
-
Utkal University Masters in Science (M.Sc.)1998 - 2000
Projects & Funding
Projects & funding information is unavailable.
Publications (41)
- GQD@NiFe‐LDH Nanosheets for Photocatalytic Activity towards Textile Dye Degradation via Lattice Contraction Save
- Hydrogen Photosynthesis through Schottky Junction of RGO-NiPO and the Perspective of the Mechanism Save
- REDUCED GRAPHENE OXIDE-SILVER PHOSPHATE (RGO-AGP) AND A PROCESS FOR THE PREPARATION THEREOF FOR THE PHOTODEGRADATION OF ORGANIC DYES Save
- Silver Phosphate Based Photocatalysis: A Brief Review from Fundamentals to Applications Save
- Repercussion of Solid state vs. Liquid state synthesized p-n heterojunction RGO-copper phosphate on proton reduction potential in water Save
- Transfiguring UV light active “metal oxides” to visible light active photocatayst by reduced graphene oxide hypostatization Save
- Construing the interactions between MnO2 nanoparticle and bovine serum albumin: insight into the structure and stability of a protein–nanoparticle complex Save
- Back Cover: Reduced Graphene Oxide-Ag3PO4Heterostructure: A Direct Z-Scheme Photocatalyst for Augmented Photoreactivity and Stability (Chem. Asian J. 4/2016) Save
- Reduced Graphene Oxide-Ag3PO4Heterostructure: A Direct Z-Scheme Photocatalyst for Augmented Photoreactivity and Stability Save
- Back Cover: 3 D Co3(PO4)2-Reduced Graphene Oxide Flowers for Photocatalytic Water Splitting: A Type II Staggered Heterojunction System (ChemSusChem 22/2016) Save