| Literature DB >> 28773141 |
Jun Li1, Yong Du2, Runping Jia3, Jiayue Xu4, Shirley Z Shen5.
Abstract
Flexible poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate)/polypyrrole/paper (PEDOT:PSS/PPy/paper) thermoelectric (TE) nanocomposite films were prepared by a two-step method: first, PPy/paper nanocomposite films were prepared by an in situ chemical polymerization process, and second, PEDOT:PSS/PPy/paper TE composite films were fabricated by coating the as-prepared PPy/paper nanocomposite films using a dimethyl sulfoxide-doped PEDOT:PSS solution. Both the electrical conductivity and the Seebeck coefficient of the PEDOT:PSS/PPy/paper TE nanocomposite films were greatly enhanced from 0.06 S/cm to ~0.365 S/cm, and from 5.44 μV/K to ~16.0 μV/K at ~300 K, respectively, when compared to the PPy/paper TE nanocomposite films. The thermal conductivity of the PEDOT:PSS/PPy/paper composite film (0.1522 Wm-1K-1 at ~300 K) was, however, only slightly higher than that of the PPy/paper composite film (0.1142 Wm-1K-1 at ~300 K). As a result, the ZT value of the PEDOT:PSS/PPy/paper composite film (~1.85 × 10-5 at ~300 K) was significantly enhanced when compared to that of the PPy/paper composite film (~4.73 × 10-7 at ~300 K). The as-prepared nanocomposite films have great potential for application in flexible TE devices.Entities:
Keywords: composite films; flexible; paper; polypyrrole; thermoelectric properties
Year: 2017 PMID: 28773141 PMCID: PMC5551823 DOI: 10.3390/ma10070780
Source DB: PubMed Journal: Materials (Basel) ISSN: 1996-1944 Impact factor: 3.623
Figure 1The fabrication process of the PPy/paper and PEDOT:PSS/PPy/paper composite films.
Figure 2(a,b) SEM images of paper; (c) PPy particles; (d) PPy/paper composite film; (e,f) PEDOT:PSS/PPy/paper nanocomposite film; (g) cross-section of PEDOT:PSS/PPy/paper composite film. Photos of (h) PPy/paper and (i) PEDOT:PSS/PPy/paper composite films. The inset in panel (i) is a photo of the common printing paper before any treatment.
Figure 3(a) XPS (X-ray photoelectron spectroscopy) survey spectra; (b) XPS spectra of S2p of the PEDOT:PSS/PPy/paper composite films measured at four different positions in one sample.
Figure 4(a) Electrical conductivity; (b) Seebeck coefficient; (c) power factor; and (d) ZT of the PPy/paper nanocomposite films and the PEDOT:PSS/PPy/paper nanocomposite films.
Figure 5A series of photographs to illustrate the flexibility of the PEDOT:PSS/PPy/paper film. (a) Start to bend; (b–e) bending progress; (f) bended state; (g) releasing the bend; (h) returned to non-bended state as beginning.