Bipasha Debnath

Bipasha Debnath
Technische Universität Dresden | TUD

Master of Science
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About

5
Publications
594
Reads
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11
Citations
Citations since 2017
5 Research Items
11 Citations
201720182019202020212022202301234
201720182019202020212022202301234
201720182019202020212022202301234
201720182019202020212022202301234
Introduction
The research of Doctoral study is focused on Organic Single Crystals. Organic Electronics are the complementary technology in this cuttng edge time and they are based on organic semiconductor materials. Because of Carbon Hydrogen bonds and low cost processing, the variety of organic semiconductor materials are rising research interest. These materials intrinsic properties and mechanisms are yet to understand to apply them in large scale industrial production. My aim is to contribute on this field with my research interests
Additional affiliations
August 2018 - present
Leibniz Institute for Solid State and Materials Research Dresden
Position
  • Researcher
Description
  • Electrical conductivity and magnetism of charge transfer interfaces
August 2018 - July 2021
Leibniz Institute for Solid State and Materials Research Dresden
Position
  • PhD Student
November 2017 - June 2018
Leibniz Institute for Solid State and Materials Research Dresden
Position
  • Master's Student
Description
  • Fabrication and electrical properties of Rubrene/F6-TCNNQ charge transfer interfaces
Education
October 2018 - July 2021
Technische Universität Dresden
Field of study
  • Physics
October 2013 - July 2018
Technische Universität Dresden
Field of study
  • Organic and Molecular Electronics
May 2007 - January 2011
American International University-Bangladesh
Field of study
  • Electrical and Electronic Engineering

Publications

Publications (5)
Article
Full-text available
Derivatives of the hexacyano‐[3]‐radialene anion radical (CN6‐CP•−) emerge as a promising new family of p‐dopants having a doping strength comparable to that of archetypical dopant 2,3,5,6‐tetrafluoro‐7,7,8,8‐tetracyano‐quinodimethane (F4TCNQ). Here, mixed solution (MxS) and sequential processing (SqP) doping methods are compared by using a model s...
Thesis
The increasing interests in organic semiconductor materials lead to study and understand the fundamental intrinsic properties of these materials. To avoid impurities, structural disorder, and grain boundaries which appear in thin films of organic semiconductor materials, single-crystals of these materials have become an obvious choice for fundament...
Article
Full-text available
The understanding and applications of electron‐conducting π‐conjugated polymers with naphtalene diimide (NDI) blocks show remarkable progress in recent years. Such polymers demonstrate a facilitated n‐doping due to the strong electron deficiency of the main polymer chain and the presence of the positively charged side groups stabilizing a negative...
Article
Full-text available
High-quality single crystals of the organic semiconductor (1,2;8,9)-dibenzopentacene were grown via physical vapor transport. The crystal structure-unknown before-was determined by single-crystal X-ray diffraction; polarization-dependent optical absorption measurements display a large anisotropy in the ac plane of the crystals. The overall Davydov...

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