Aniruddha Basu
TCG Crest, University of Colorado Boulder, Academy of Scientific and Innovative Research, University of Delhi, National Renewable Energy Laboratory
About
Dr. Aniruddha Basu is a scientist and researcher with a profound impact on materials science and device engineering. With a Ph.D. in Science from the National Chemical Laboratory, Academy of Scientific and Industrial Research, India, and over ten years of experience, Dr. Basu has established themselves as a leading expert in interdisciplinary science and quantum technologies. Throughout their career, Dr. Basu has contributed significantly to developing innovative materials and devices, particularly in organic electronics, quantum dots, and semiconductor spin qubit devices. Their expertise spans the synthesis and characterization of novel materials, cleanroom fabrication of micro-electronic and optoelectronic devices, and in-depth analysis using advanced techniques such as XRD, XPS, AFM, and TEM. Dr. Basu's research journey has taken them globally, collaborating with esteemed institutions in India, the United Kingdom, Saudi Arabia, and the United States. Their work at renowned institutions, including the Laboratory of Advanced Materials & Applications (LAMA) at King Abdullah University of Science & Technology (KAUST), the Renewable and Sustainable Energy Institute (RASEI) at the University of Colorado Boulder, and the National Renewable Energy Laboratory (NREL), USA, has yielded over 25 publications in prestigious journals. Notably, Dr. Basu has made significant contributions to the development of spin-light emitting diodes using perovskite and III-V quantum dots, as well as the fabrication and optimization of organic field-effect transistors (OFETs) and perovskite-based quantum dots for optoelectronic applications. Their work also extends to the exploration of advanced techniques, such as CO2 laser-scribed micro supercapacitors and the development of high-speed blade coating systems for solution processing of organic semiconductors. Dr. Basu continues to be a dynamic force in the field, with a commitment to pushing the boundaries of scientific knowledge and contributing to the maturation of cutting-edge technologies. Their passion for research, coupled with a collaborative and forward-thinking approach, positions them as a key player in the ongoing advancements in materials science and quantum device engineering.
Employment
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TCG Crest Senior Scientific Officer2025 - Present
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University of Colorado Boulder Research Associate2023 - 2025
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National Renewable Energy Laboratory Contingent Researcher2023 - 2024
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King Abdullah University of Science and Technology Postdoctoral Fellow2018 - 2023
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Indian Institute of Science Education Research Pune Research Associate2017 - 2018
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National Chemical Laboratory CSIR Project Assistant2011 - 2013
Education
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Academy of Scientific and Innovative Research Doctor of Philosophy (Ph.D)2013 - 2017
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University of Delhi Master of Science (M.Sc)2008 - 2010
Projects & Funding
Projects & funding information is unavailable.
Publications (32)
- A Bis(arenesulfonyl) Peroxide, an Ambient-Stable Oxidant, Is a Strong p-Dopant for Organic Semiconductors Save
- Elucidating Charge Carrier Reactivity, Conversion, and Degradation in n-Doped Oligo- and Poly(benzodifurandione) Save
- The Excited-State Lifetime of Poly(NDI2OD-T2) Is Intrinsically Short Save
- Ultra‐Narrowband Near‐Infrared Responsive J‐Aggregates of Fused Quinoidal Tetracyanoindacenodithiophene Save
- CCDC 2190105: Experimental Crystal Structure Determination : 2,2'-(4,4,9,9-tetrahexadecyl-s-indaceno[1,2-b:5,6-b']bisthiophene 2,7(4H,9H)-diylidene)dipropanedinitrile Save
- CCDC 2190106: Experimental Crystal Structure Determination : 2,2'-[4,4,9,9-tetrakis(2-ethylhexyl)-s-indaceno[1,2-b:5,6-b']bisthiophene 2,7(4H,9H)-diylidene]dipropanedinitrile Save
- CCDC 2190107: Experimental Crystal Structure Determination : 2,2'-(4,4,9,9-tetraoctyl-s-indaceno[1,2-b:5,6-b']bisthiophene 2,7(4H,9H)-diylidene)dipropanedinitrile Save
- N-type polymer semiconductors incorporating heteroannulated benzothiadiazole Save
- Doping Approaches for Organic Semiconductors Save
- Doping-induced decomposition of organic semiconductors: a caveat to the use of Lewis acid p-dopants Save