材料科学
热电效应
兴奋剂
热电材料
碘
纳米技术
铜
化学工程
光电子学
工程物理
无机化学
冶金
复合材料
热导率
化学
物理
工程类
热力学
作者
Junhui Wang,Mingcheng Zhang,Jiajia Li,Changxuan Wu,Kefeng Cai
标识
DOI:10.1021/acsami.5c06377
摘要
Cu2Se has become a highly promising thermoelectric material owing to its abundant elemental reserves, nontoxicity, and low thermal conductivity. In this work, flexible Cu2Se1-xIx (x = 0, 0.02, 0.04, and 0.06) films were synthesized by a cost-effective and facile hydrothermal approach, followed by vacuum-assisted filtration and hot pressing, and the films were dense with well-crystallized Cu2Se grains. The introduction of iodine provides an additional electron, acting as N-type doping and reducing carrier concentration. With the increase of x, the films exhibit a gradual reduction in electrical conductivity but a concurrent increase in the Seebeck coefficient. As a result, the Cu2Se1-xIx film with x = 0.04 shows an optimal power factor of ∼566.9 μW m-1 K-2 along with remarkable flexibility at room temperature. In addition, the maximum output power of the six-leg flexible thermoelectric generator fabricated using the Cu2Se0.96I0.04 film at a temperature difference of 22.8 K is 1.41 μW, with a power density of 4.02 W m-2. This work presents an effective strategy for developing high-performance flexible Cu2Se-based thermoelectric films.
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