SA
SHANKHA SHUBHRA ACHARYYA
HANYANG UNIVERSITY, Shinshu University, Visva-Bharati, Visva-Bharati University, Technische Universität Dresden
Employment
-
HANYANG UNIVERSITY Research Assistant Professor2025 - 2027
-
Shinshu University Researcher2022 - 2024
-
Technische Universität Dresden Scientific Researcher & Lecturer2020 - 2021
-
The University of Kansas, USA Associate Researcher2020 - 2020
-
The University of Electro-Communications Project Assistant Professor2018 - 2019
-
The University of Electro-Communications JSPS Post-Doctoral Research Fellow2016 - 2018
-
The University of Electro-Communications Project Assistant Professor2015 - 2016
-
Indian Institute of Petroleum CSIR Post-Doctoral Researcher2015 - 2015
-
Indian Institute of Petroleum CSIR Junior Research Fellow & Senior Research Fellow2010 - 2015
-
National Tsing-Hua University Department of Chemistry Research Assistant2009 - 2010
Education
-
Visva-Bharati M. Sc2006 - 2008
-
Visva-Bharati University B.Sc. HONS2003 - 2006
Projects & Funding
Projects & funding information is unavailable.
Publications (46)
- SiO2-Encapsulated Ag/WO3 Nano-architectures for Azoxybenzene Production via Simultaneous Activation of Aniline and Molecular O2 Save
- Catalytic Aromatic Oxidations Save
- Tailoring Oxygen Vacancies and Active Surface Oxygen Species in CrOx Hierarchical Strawberry-Type Three-Dimensional (3D) Micro-Spindles Catalysts for Total Catalytic Oxidation of VOCs Save
- Advances in Catalytic Conversion of Benzene to Phenol using N2O as Oxidant Save
- Recent Advances in Catalytic Conversion of Toluene to Benzonitrile Save
- Unprecedented Catalysis of Cs+ Single Sites Confined in Y Zeolite Pores for Selective Csp3–H Bond Ammoxidation: Transformation of Inactive Cs+ Ions with a Noble Gas Electronic Structure to Active Cs+ Single Sites Save
- Unravelling the role of AgCr interfacial synergistic effect in Ag/Cr2O3 nanostructured catalyst for the ammoxidation of toluene via low temperature activation of Csp3-H bond Save
- NH3-Driven Benzene CH Activation with O2 that Opens a New Way for Selective Phenol Synthesis Save
- Confined Single Alkali Metal Ion Platform in a Zeolite Pore for Concerted Benzene C–H Activation to Phenol Catalysis Save
- Fabrication of Ag nanoparticles supported on one-dimensional (1D) Mn3O4 spinel nanorods for selective oxidation of cyclohexane at room temperature Save