Polypropylene-based melt mixed composites with singlewalled carbon nanotubes for thermoelectric applications: Switching from p-type to n-type by the addition of polyethylene glycol

被引:63
作者
Luo, Jinji [1 ]
Cerretti, Giacomo [2 ]
Krause, Beate [1 ]
Zhang, Long [3 ]
Otto, Thomas [4 ]
Jenschke, Wolfgang [1 ]
Ullrich, Mathias [1 ]
Tremel, Wolfgang [2 ]
Voit, Brigitte [1 ,5 ]
Poetschke, Petra [1 ]
机构
[1] Leibniz Inst Polymerforsch Dresden eV IPF, Hohe Str 6, D-01069 Dresden, Germany
[2] Johannes Gutenberg Univ Mainz, Inst Anorgan & Analyt Chem, Duesbergweg 10-14, D-55128 Mainz, Germany
[3] Leibniz Inst Festkorper & Werkstoffforsch Dresden, Helmholtzstr 20, D-01069 Dresden, Germany
[4] Fraunhofer Inst Elekt Nanosyst, Technol Campus 3, D-09126 Chemnitz, Germany
[5] Tech Univ Dresden, Organ Chem Polymers, D-01062 Dresden, Germany
关键词
Thermoelectric; Composite; Polymer; Carbon nanotube; Copper oxide; n-type; POLYMER; NANOCOMPOSITES; ENHANCEMENT; COMPLEX; CUO;
D O I
10.1016/j.polymer.2016.12.019
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
The thermoelectric properties of melt processed conductive nanocomposites consisting of an insulating polypropylene (PP) matrix filled with singlewalled carbon nanotubes (CNTs) and copper oxide (CuO) were evaluated. An easy and cheap route to switch p-type composites into n-type was developed by adding polyethylene glycol (PEG) during melt mixing. At the investigated CNT concentrations of 0.8 wt% and 2 wt% (each above the electrical percolation threshold of similar to 0.1 wt%), and a fixed CuO content of 5 wt%, the PEG addition converted p-type composites (positive Seebeck coefficient (S)) into n-type (negative S). PEG was also found to improve the filler dispersion inside the matrix. Two composites were prepared: P type polymer/CNT composites with high S (up to 45 mu V/K), and n-type composites (with S up to -56 mu V/K) through the addition of PEG. Two prototypes with 4 and 49 thermocouples of these p- and n-type composites were fabricated, and delivered an output voltage of 21 mV and 110 mV, respectively, at a temperature gradient of 70 K. (C) 2016 Elsevier Ltd. All rights reserved.
引用
收藏
页码:513 / 520
页数:8
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