SB
Santanu Bhattacharyya
Indian Institute of Science Education and Research Berhampur, Ludwig-Maximilians-Universitat Munchen, Indian Association for the Cultivation of Science, The University of Burdwan
Employment
-
Indian Institute of Science Education and Research Berhampur Associate Professor2024 - Present
-
Ludwig-Maximilians-Universitat Munchen Alexander on humboldt postdoctoral fellow2015 - 2017
-
Fundación IMDEA Nanociencia Post doc2014 - 2015
-
Indian Association for the Cultivation of Science Research Associate-12014 - 2014
Education
-
Indian Association for the Cultivation of Science PhD2009 - 2013
-
The University of Burdwan M.Sc2006 - 2008
Projects & Funding
Projects & funding information is unavailable.
Publications (42)
- Tracing Different Emissive Species in Nitrogen-Doped Sulfur Dots during the Growth Process and the Intriguing Photophysics Thereof Save
- A novel 1,1,6,6-tetracyano hexatriene linked conjugated microporous polymer for high photocatalytic hydrogen evolution Save
- Accelerated interfacial charge transfer in a hybrid heterostructure made of a carbon-rich carbon nitride@nitrogen-rich carbon nitride composite for photocatalytic solar H2 production Save
- Enhancing photocatalytic hydrogen peroxide production by doping a trace amount of azo-linked C3N5 into a g-C3N4 matrix Save
- Insight into multivalent iron complex-bound oxygen vacancy-rich BiOBr nanodiscs for photocatalytic ammonia synthesis Save
- Unveiling the Photocatalytic Potential of Heteroatom-Rich Luminescent Carbon Dots for Green H2 Production Save
- In situ decoration of Cd0.05Mn0.05Zn0.90 (ZIF-8) photocatalyst for solar-driven hydrogen production Save
- Red Carbon Dots Sensitized Ni‐Doped 2D MoS2 Nanosheets as Electrode Materials for Visible‐Light Active Photorechargeable Supercapacitors Save
- Highly Defined Layered 2D Sulfur Nanosheets from 0D Sulfur Dots and their use in the Photocatalytic Oxidative Coupling of Aryl Amines to Aromatic Azo Compounds Save
- Low Bandgap NiCo2S4 Nanoparticles Decorated 2D‐BiOBr Nano Pallets: Atomic Level Insight into the Active Sites for Photocatalytic H2O2 Production Save