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Qinglin Jiang

Researcher at South China University of Technology

Publications -  81
Citations -  2766

Qinglin Jiang is an academic researcher from South China University of Technology. The author has contributed to research in topics: PEDOT:PSS & Thermoelectric effect. The author has an hindex of 21, co-authored 69 publications receiving 1728 citations. Previous affiliations of Qinglin Jiang include Jiangxi Science and Technology Normal University.

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Effective Approaches to Improve the Electrical Conductivity of PEDOT:PSS: A Review

TL;DR: In this article, various physical and chemical approaches that can effectively improve the electrical conductivity of poly(3,4-ethylenedioxythiophene): poly(styrenesulfonic acid) (PEDOT:PSS) are summarized.
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Liquid Exfoliated Graphene as Dopant for Improving the Thermoelectric Power Factor of Conductive PEDOT:PSS Nanofilm with Hydrazine Treatment.

TL;DR: A highly conductive poly(3,4-ethylenedioxythiophene):poly(4-styrenesulfonate) nanofilm via vacuum filtration with enhanced thermoelectric power factor by doping of liquid exfoliated graphene (GE) and hydrazine treatment is fabricated.
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Wearable Thermoelectric Materials and Devices for Self-Powered Electronic Systems.

TL;DR: A review of wearable thermoelectric generators (WTEGs) can be found in this article, where the functional materials, processing techniques, and strategies for the device design of different types of WTEGs are comprehensively covered.
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Highly Conductive Hydrogel Polymer Fibers toward Promising Wearable Thermoelectric Energy Harvesting

TL;DR: A highly conductive p-type PEDOT:PSS fiber was produced by gelation process, which was 3 orders of magnitude higher than that of previous hydrogel fibers, and a post-treatment with organic solvents tripled their electrical conductivity with an optimized thermoelectric power factor.
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Fabrication of a layered nanostructure PEDOT:PSS/SWCNTs composite and its thermoelectric performance

TL;DR: In this paper, a two-step spin casting of PEDOT:PSS/SWCNTs was used to construct layered nanostructure organic-inorganic composites for improving thermoelectric properties of conducting polymers.