Deepak Asthana
Ashoka University, The University of Manchester, Kyushu University, Jawaharlal Nehru University
About
I completed my doctoral research (2007-2013) working on the topic of supramolecular and Materials Chemistry. In my postdoctoral work at Kyushu University (JSPS Fellow, 2014-2016) I worked on triplet-triplet annihilation based photon up-conversion (TTA-UC). In December 2016 I joined the Molecular Magnets team at School of Chemistry, The University of Manchester, UK and worked on synthesis of supramolecular systems of heterometallic {Cr7M} wheels (Qubits).
In April 2021, I joined the the Department of Chemistry at Ashoka University, India, as an Assistant Professor and my current research interests are in the field of supramolecular systems, electroactive materials for electro/photo-catalysis, circularly polarized luminescence and triplet-triplet annihilation-based photon upconversion.
Employment
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Ashoka University Assistant Professor2021 - Present
Education
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The University of Manchester Research Associate2016 - 2021
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Kyushu University Postdoctoral Research2014 - 2016
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Jawaharlal Nehru University Ph.D.2008 - 2014
Projects & Funding
Projects & funding information is unavailable.
Publications (35)
- Tunable naphthalimide-based fluorogenic intracellular nanoaggregates trigger ROS-mediated DNA damage and apoptosis in triple-negative breast cancer cells Save
- Unravelling the interplay between structures, self-assembly patterns, AIEE and chiroptical properties of NDI-bis-cholesteryl systems Save
- Molecular engineering of naphthalimide-based dyad systems to generate multifaceted materials Save
- Observation of Intensity Redistribution of Emission Peaks in Anthracene: Dynamics of Vibronic Excimer Formation in a Xerogel Matrix Save
- Supramolecular assembly-based tuning of optical properties of pyrrolidine, pyrimidine and morpholine functionalized naphthalimides Save
- Dynamics of Pyrene Excimer in a Cholesteryl‐Based Supramolecular Host Matrix Save
- Pyridyl Aroyl Hydrazone-Based Metal Complexes Showing a Ligand-Centered Metal-Assisted Pathway for Electrocatalytic Hydrogen Evolution Save
- Diphenylanthracene-based trimeric systems for efficient photon upconversion through triplet–triplet annihilation Save
- New azo dyes for detection of metallic impurities Save
- A supramolecular host matrix for preserving fluorescence in the solid-state Save