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Energy harvesting and temperature sensing thermoelectric devices based on the carbon template method

机译:基于碳模板法的能量收集与温度传感热电器件

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摘要

A series of self-supporting carbon nanomaterial films with different morphologies were employed as conductive templates for n-junction after polyethyleneimine (PEI) doping by taking advantages of the entanglement between carbon nanotubes. With the assistance of dimethyl sulfoxide (DMSO)-treated poly(3,4-ethylenedioxythiophene): poly(styrenesulfonate) (PEDOT:PSS) films as p-junction, flexible and light-weight thermoelectric generators (TEGs) were assembled. The effect of the morphology of the carbon nanomaterial, including multi-walled carbon nanotube (MWCNT), whisker carbon nanotube (WSCNT), and graphene on the electrical conductivity, mechanical properties and morphology of n-junction was investigated, on basis of which thermoelectric properties of TEG were evaluated. The properties of the three carbon-based self-supporting films show significant differences. The MWCNT/PEI film exhibits a tensile strength of up to 36.23 +/- 0.57 MPa due to the high entanglement network density of MWCNT. The entanglement of WSCNT/MWCNT/PEI provides an ideal conductive template for PEI to prepare n-junction material. TEGs with PEDOT:PSS-DMSO and WSCNT/MWCNT/PEI as p- and n-junctions show high power generation performance and cyclability. The output power density is up to 4.6 nW/cm(2) at Delta T = 42.0 K, matched to a suitable load. With its fast response and slow recovery, this TEG is expected to be used for human health monitoring and energy storage.
机译:利用碳纳米管间的纠缠,利用聚乙烯亚胺(PEI)掺杂后的n结自支撑碳纳米材料薄膜作为一系列不同形貌的自支撑碳纳米材料薄膜的导电模板。在二甲基亚砜(DMSO)处理的聚(3,4-乙烯二氧噻吩):聚苯乙烯磺酸酯(PEDOT:PSS)薄膜作为p结的帮助下,组装了柔性轻质热电发电机(TEG)。研究了多壁碳纳米管(MWCNT)、晶须碳纳米管(WSCNT)和石墨烯的形貌对n结电导率、力学性能和形貌的影响,并在此基础上评价了TEG的热电性能。三种碳基自支撑薄膜的性能存在显著差异。由于MWCNT的高纠缠网络密度,MWCNT/PEI薄膜的拉伸强度高达36.23 +/- 0.57 MPa。WSCNT/MWCNT/PEI的纠缠为PEI制备n结材料提供了理想的导电模板。以PEDOT:PSS-DMSO和WSCNT/MWCNT/PEI为p结和n结的TEG具有较高的发电性能和可循环性。当 Delta T = 42.0 K 时,输出功率密度高达 4.6 nW/cm(2),与合适的负载相匹配。该TEG反应快,恢复慢,有望用于人体健康监测和储能。

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