Evaluation of power generated by thermoelectric modules comprising a p-type and n-type single walled carbon nanotube composite paper

  • Piao, Mingxing; 
  • Joo, Min-Kyu; 
  • Choi, Jun Hee; 
  • Shin, Jong Mok; 
  • Moon, Young Sun; 
  • 외 2명
Citations

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20
Citations

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19

초록

We report on p-type and n-type thermoelectric (TE) materials made of single-walled carbon nanotube (SWCNT) networks incorporated into the cellulose fiber structure of a common packaging paper. This leads the paper to possess both mechanical flexibility from the cellulose fibers as a supporting matrix and the high electrical conductivity originating from the SWCNTs. Thermoelectric power of up to +/- 50 mu V K-1 was successfully obtained as well, depending on their electronic type. Further, to demonstrate its thermoelectric voltage (V-TEP) and generating power, a couple of thermoelectric modules composed of both p-type and n-type composite layers were assembled in series. The produced V-TEP shows a quasi-linearity with respect to the number of p-n couples and the temperature difference Delta T. Our testing module enables the provision of V-TEP and power generation as large as approximate to 16.8 mV and approximate to 75.5 nW upon inducing a 50 K temperature difference. The feasibility of commercial TE modules consisting of 10, 100 and 1000 p-n SWCNT couples was numerically calculated, taking into account our experimental results.

키워드

CONDUCTIVITY; BEHAVIOR; FIBERS
제목
Evaluation of power generated by thermoelectric modules comprising a p-type and n-type single walled carbon nanotube composite paper
저자
Piao, Mingxing; Joo, Min-Kyu; Choi, Jun Hee; Shin, Jong Mok; Moon, Young Sun; Kim, Gyu Tae; Dettlaff-Weglikowska, Urszula
DOI
10.1039/c5ra13893k
발행일
2015-09
저널명
RSC Advances
권
5
호
95
페이지
78099 ~ 78103