Literature DB >> 22316286

Multilayered carbon nanotube/polymer composite based thermoelectric fabrics.

Corey A Hewitt1, Alan B Kaiser, Siegmar Roth, Matt Craps, Richard Czerw, David L Carroll.   

Abstract

Thermoelectrics are materials capable of the solid-state conversion between thermal and electrical energy. Carbon nanotube/polymer composite thin films are known to exhibit thermoelectric effects, however, have a low figure of merit (ZT) of 0.02. In this work, we demonstrate individual composite films of multiwalled carbon nanotubes (MWNT)/polyvinylidene fluoride (PVDF) that are layered into multiple element modules that resemble a felt fabric. The thermoelectric voltage generated by these fabrics is the sum of contributions from each layer, resulting in increased power output. Since these fabrics have the potential to be cheaper, lighter, and more easily processed than the commonly used thermoelectric bismuth telluride, the overall performance of the fabric shows promise as a realistic alternative in a number of applications such as portable lightweight electronics.
© 2012 American Chemical Society

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Year:  2012        PMID: 22316286     DOI: 10.1021/nl203806q

Source DB:  PubMed          Journal:  Nano Lett        ISSN: 1530-6984            Impact factor:   11.189


  11 in total

1.  Development of n-type cobaltocene-encapsulated carbon nanotubes with remarkable thermoelectric property.

Authors:  Takahiro Fukumaru; Tsuyohiko Fujigaya; Naotoshi Nakashima
Journal:  Sci Rep       Date:  2015-01-22       Impact factor: 4.379

2.  Thermoelectric fabrics: toward power generating clothing.

Authors:  Yong Du; Kefeng Cai; Song Chen; Hongxia Wang; Shirley Z Shen; Richard Donelson; Tong Lin
Journal:  Sci Rep       Date:  2015-03-23       Impact factor: 4.379

3.  High-performance and compact-designed flexible thermoelectric modules enabled by a reticulate carbon nanotube architecture.

Authors:  Wenbin Zhou; Qingxia Fan; Qiang Zhang; Le Cai; Kewei Li; Xiaogang Gu; Feng Yang; Nan Zhang; Yanchun Wang; Huaping Liu; Weiya Zhou; Sishen Xie
Journal:  Nat Commun       Date:  2017-03-24       Impact factor: 14.919

Review 4.  Recent Progress in Flexible Organic Thermoelectrics.

Authors:  Mario Culebras; Kyungwho Choi; Chungyeon Cho
Journal:  Micromachines (Basel)       Date:  2018-11-30       Impact factor: 2.891

5.  Stretchable fabric generates electric power from woven thermoelectric fibers.

Authors:  Tingting Sun; Beiying Zhou; Qi Zheng; Lianjun Wang; Wan Jiang; Gerald Jeffrey Snyder
Journal:  Nat Commun       Date:  2020-01-29       Impact factor: 14.919

Review 6.  Thermoelectric Materials for Textile Applications.

Authors:  Kony Chatterjee; Tushar K Ghosh
Journal:  Molecules       Date:  2021-05-25       Impact factor: 4.411

7.  Systematic conversion of single walled carbon nanotubes into n-type thermoelectric materials by molecular dopants.

Authors:  Yoshiyuki Nonoguchi; Kenji Ohashi; Rui Kanazawa; Koji Ashiba; Kenji Hata; Tetsuya Nakagawa; Chihaya Adachi; Tomoaki Tanase; Tsuyoshi Kawai
Journal:  Sci Rep       Date:  2013-11-26       Impact factor: 4.379

8.  High-efficiency electrochemical thermal energy harvester using carbon nanotube aerogel sheet electrodes.

Authors:  Hyeongwook Im; Taewoo Kim; Hyelynn Song; Jongho Choi; Jae Sung Park; Raquel Ovalle-Robles; Hee Doo Yang; Kenneth D Kihm; Ray H Baughman; Hong H Lee; Tae June Kang; Yong Hyup Kim
Journal:  Nat Commun       Date:  2016-02-03       Impact factor: 14.919

9.  Thermoelectric plastics: from design to synthesis, processing and structure-property relationships.

Authors:  Renee Kroon; Desalegn Alemu Mengistie; David Kiefer; Jonna Hynynen; Jason D Ryan; Liyang Yu; Christian Müller
Journal:  Chem Soc Rev       Date:  2016-11-07       Impact factor: 54.564

10.  All-Organic Textile Thermoelectrics with Carbon-Nanotube-Coated n-Type Yarns.

Authors:  Jason D Ryan; Anja Lund; Anna I Hofmann; Renee Kroon; Ruben Sarabia-Riquelme; Matthew C Weisenberger; Christian Müller
Journal:  ACS Appl Energy Mater       Date:  2018-06-11
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