材料科学
热导率
纳米复合材料
热电效应
三元运算
塞贝克系数
石墨
复合材料
热电材料
聚苯胺
极限抗拉强度
分子动力学
Atom(片上系统)
复合数
热的
热传导
工作(物理)
激光闪光分析
电阻率和电导率
碳纳米管
石墨烯
作者
Xinzhi Li,Xuebo Song,Qinjian Yin,Yihan Wang,Ge Zhou
标识
DOI:10.1080/08927022.2026.2712632
摘要
To effectively utilise dissipated thermal energy, thermoelectric materials were used to carry out direct thermoelectric conversion. To construct excellent thermoelectric materials, graphyne (GY) as a novel filler was added into a composite of polyaniline (PANI) and polypyrrole (PPy). To improve its performance, the graphyne sheet was modified with N atoms (NGY). The NGY sheets were set between PANI and PPy matrix layers to build PPy/NGY-n/PANI composites (PPGP-n, n = 0, 0.5, 1.2, 2.0, 4.4, 7.0, 10.0%, adopting atomic percentage). The effects of varying N atom concentrations in GY sheets on the thermal, electronic properties and mechanical properties of PPGP-n nanocomposites were investigated using molecular simulation. The mechanism of thermal conductivity was investigated through the analysis of the Vibrational Power Spectrum (VPS) and interfacial thermal conductance. The electronic properties were evaluated by analysing the HOMO–LUMO energy gap and the electrostatic potential. The tensile properties are discussed by evaluating the relationship between the ultimate strength, interfacial binding energy, and thermal conductivity. In summary, PPGP-n (n ≥ 2%) exhibits low thermal conductivity and excellent mechanical properties. This work demonstrates the significant potential of the PPy/NGY-n/PANI nanocomposite in the thermoelectric field.
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