Ananthanarayanan Krishnamoorthy
SRM Institute of Science and Technology, National University of Singapore Solar Energy Research Institute of Singapore, University of Madras, National University of Singapore
About
Dr. Ananthanarayanan Krishnamoorthy is a Professor (Research) in the Department of Chemistry, SRM Institute of Science and Technology, Chennai, India. He received his doctorate degree in materials chemistry and then started his independent research career in the year 2007 as a Research Scientist in NanoCore, National University of Singapore, starting work on development of novel mesoporous electrode materials for energy conversion and storage. From late 2008 till June 2016, he held various positions like Research Scientist, Senior Research Scientist and Group Head at Solar Energy Research Institute of Singapore (SERIS). He then joined SRM Institute of Science and Technology during July 2016 and his research interests are developing flexible solar cells for low power electronics and organic-inorganic hybrid solar cells. He is the PI of a DST-SERB-EMR sponsored research project and he is also recognized as a mentor of a research project in the National Post Doctoral Fellowship sponsored by the Science and Engineering Research Board (SERB), Department of Science and Technology (DST), India.
Employment
-
SRM Institute of Science and Technology Professor (Research)2026 - Present
-
SRM Institute of Science and Technology Research Associate Professor2016 - 2026
-
National University of Singapore Solar Energy Research Institute of Singapore Senior Research Scientist2013 - 2016
-
National University of Singapore Solar Energy Research Institute of Singapore Group Head and Senior Research Scientist2009 - 2013
-
National University of Singapore Research Scientist2007 - 2009
Education
-
University of Madras Ph.D
Projects & Funding
Projects & funding information is unavailable.
Publications (47)
- Rational Design of Electron-Deficient Tricyanofuran-Based Hole Transport Materials for Stable Perovskite Solar Cells: Combined DFT and Experimental Insights Save
- Strategic terminal-group tuning of symmetric A-D-D-A fluorophores enhances nonlinear absorption and optical limiting for photonic applications Save
- Tailoring interfacial energetics in perovskite/silicon tandem solar cells: the converging roles of self-assembled monolayers and dipolar interlayers Save
- Modulating Interfacial Energetics Through Stoichiometry and Defect Engineering in Solution-Processed Vanadium Oxide Hole Transport Layers for Perovskite Solar Cells Save
- Dual-Armed N-Methoxy Triphenyl-Aminated Phenothiazine-Linked Benzodithiophene Hole Transport and Interface Passivation Materials for Perovskite Solar Cells Save
- Facile and scalable bilayer polymer encapsulation to achieve long-term stability of perovskite solar cells under harsh humidity conditions Save
- Halogen doping of p-type inorganic hole transport layer: electronic nature-based dopant engineering for modulating hole selectivity in inverted planar perovskite solar cells Save
- Small molecule with substantial latent heat of vaporization and distribution coefficient facilitates improved device performance in p-i-n perovskite solar cells Save
- Unraveling the Role of Perovskite Composition on Selectivity of NiOx Hole-Transport Layer: Correlative Analysis of Interface Chemistry and Resultant Carrier Selectivity Save
- Hole Selectivity of n-Type Molybdenum Oxide Carrier Selective Layer for Commercial and Emerging Thin-Film Photovoltaics: A Critical Analysis of Interface Energetics and Ensuant Device Physics Save