Quantifying the Effects of Inhomogeneity and Doping on the Electronic Contribution to Thermal Conductivity in Semiconducting Polymers
Author:
Affiliation:
1. School of Mechanical Engineering Georgia Institute of Technology Atlanta GA 30318 USA
2. School of Materials Science and Engineering Georgia Institute of Technology Atlanta GA 30318 USA
Funder
Office of Naval Research
Publisher
Wiley
Subject
Electronic, Optical and Magnetic Materials
Link
https://onlinelibrary.wiley.com/doi/pdf/10.1002/aelm.202200846
Reference49 articles.
1. Organic thermoelectric materials for energy harvesting and temperature control
2. Disentangling Redox Properties and Capacitance in Solution-Processed Conjugated Polymers
3. Conductive, Solution‐Processed Dioxythiophene Copolymers for Thermoelectric and Transparent Electrode Applications
4. Rapid single-molecule detection of COVID-19 and MERS antigens via nanobody-functionalized organic electrochemical transistors
5. Charge-Transfer Intermediates in the Electrochemical Doping Mechanism of Conjugated Polymers
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1. Dopant‐induced Morphology of Organic Semiconductors Resulting in High Doping Performance;Small Methods;2024-05-13
2. Heterogeneous Oriented Structure model of thermoelectric transport in conducting polymers;Scientific Reports;2023-11-30
3. Quantifying Charge Carrier Localization in PBTTT Using Thermoelectric and Spectroscopic Techniques;The Journal of Physical Chemistry C;2023-06-14
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