DS
Dr. Astha Singh
University of Hohenheim, Indian Institute of Technology Mandi, Institute of Nano Science and Technology, Central University of Jharkhand
About
I am a material science researcher, pursuing research on synthesis and photocatalytic applications of nanomaterials using flow chemistry. My research experience includes: (A) Flow based synthesis of metal oxides and metal sulphides for photocatalytic degradation of organic pollutants. (B) Flow synthesis of porous materials (COF, COP, conducting polymers) and their nanocomposites (C) Photocatalytic degradation and adsorption of hazardous pollutants in continuous flow
Employment
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University of Hohenheim Post Doctoral Research Associate2024 - 2026
Education
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Indian Institute of Technology Mandi Doctoral Researcher2018 - 2023
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Institute of Nano Science and Technology Junior Research Fellow2016 - 2018
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Central University of Jharkhand Integrated M.Tech Nanotechnology2011 - 2016
Projects & Funding
Projects & funding information is unavailable.
Publications (21)
- COFfee: A Coffee Waste@Anthraquinone COF Nanocomposite as a Photocatalyst for Green Hydrogen Production Save
- Sulfone based conjugated porous organic polymer-immobilized electrospun nanofibers for continuous-flow photoreduction of hexavalent chromium Save
- Room Temperature Synthesis of Visible Light Active PANI/BiOBr Z-Scheme Heterojunction for the Photocatalytic Degradation of Rhodamine B Save
- Synthesis of highly luminescent core–shell nanoprobes in a single pot for ofloxacin detection in blood serum and water Save
- Engineering the physical properties and photocatalytic activities of a β-ketoenamine COF using continuous flow synthesis Save
- Mechanically pulverized covalent organic framework as a metal-free photocatalyst for fenton-like degradation of organic pollutants and hexavalent chromium reduction Save
- Push-Pull Engine─Electron Pumping by Anchored Ligands over ZnO/C: Boosting Photo-Fenton-Like Catalysis without Additional Oxidants Save
- Facile Synthesis of Z-Scheme Fe-nPPy/BiOI Nanocomposite for Enhanced Visible Light Driven Photocatalytic Activity Save
- Scopes and challenges of microfluidic technology for nanoparticle synthesis, photocatalysis and sensor applications: A comprehensive review Save
- Facile synthesis of Z-scheme Fe-nPPy/BiOI nanocomposites for enhanced visible light driven photocatalytic activity Save