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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Control of Electrical and Thermal Transport Properties by Hybridization of Two-Dimensional Tungsten Disulfide and Reduced Graphene Oxide for Thermoelectric Applications
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Control of Electrical and Thermal Transport Properties by Hybridization of Two-Dimensional Tungsten Disulfide and Reduced Graphene Oxide for Thermoelectric Applications

机译:通过二维钨二硫化物的杂交控制电气和热传输性能,用于热电应用的石墨烯氧化物

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Thermoelectric efficiency is determined by the figure of merit (ZT) with the achievement of high electrical conductivity (sigma), high Seebeck coefficient (S), and low thermal conductivity (k) for high performance thermoelectric devices. Tungsten disulfide (WS2) has been reported to have a comparably high S (3.5 x 10(2)similar to 9.5 x 10(2) mu V/K) and low sigma (10(-2)-10(-1) S/m), which leads to a low ZT value (approximately 0). In this study, WS2 particles were hybridized with highly conductive reduced graphene oxide (rGO) particles (similar to 10(5) S/m). The inclusion of rGO provides conductive paths for the transfer of carriers in the composites, and thus, this led to an increase in sigma (similar to 3 x 10(3) S/m). The hybrid material of WS2/rGO, as a function of the weight percentage of rGO, was fabricated by spark plasma sintering. As a result, the power factor in a WS2/0.8 wt % rGO (87 mu W/mK(2)) with enhanced sigma was 310% greater than that of WS2. Moreover, two-dimensional structures of the materials contributed to the induction of phonon scattering and resulted in steady k in spite of enhanced sigma with increased rGO content. Consequently, an optimized ZT value was obtained for the WS2/0.8 wt % rGO sample; this value was 260% greater (approximately 6.8 x 10(-4)) than that of WS2 without rGO (approximately 1.9 x 10(-4)).
机译:热电效率由优选(ZT)的图来确定高性能热电装置的高电导率(Sigma),高塞贝克系数和低导热率(k)。据报道,钨二硫化物(WS2)具有相当高的S(3.5×10(2),类似于9.5×10(2)mu v / k)和低σ(10(2)-10(-1)s / m),导致低ZT值(约0)。在该研究中,WS2颗粒与高导电的氧化石墨烯(RGO)颗粒杂交(类似于10(5)次)。包含Rgo提供了用于在复合材料中转移载体的导电路径,因此,这导致σ(类似于3×10(3)S / m)的增加。通过火花等离子体烧结制造了WS2 / Rgo的杂化材料作为Rgo的重量百分比的函数。结果,具有增强的σ的WS2 / 0.8wt%RGO(87μW/ mK(2))中的功率因数比WS2的310%大。此外,材料的二维结构有助于诱导声子散射,并且尽管有增强的Sigma具有增加的Rgo含量,但是稳定的k。因此,获得了WS2 / 0.8wt%RGO样品的优化ZT值;该值大于260%(约6.8×10(-4)),没有RGO的WS2(约1.9×10(-4))。

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