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首页> 外文期刊>Advanced Sustainable Systems >Lignin Doped Carbon Nanotube Yarns for Improved Thermoelectric Efficiency
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Lignin Doped Carbon Nanotube Yarns for Improved Thermoelectric Efficiency

机译:木质素掺杂碳纳米管线改善热电效率

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Due to ever increasing public awareness of the deteriorating planetary health condition associated with climate change and increasing carbon emissions, sustainable energy development has come sharply into focus. Here, a thermoelectric material is produced, which consists of macroscopic carbon nanotube yarns (CNTYs) produced continuously from the gas-phase. The CNTYs are doped with lignin, obtained from lignocellulosic waste, and at 23 wt% lignin, electrical conductivity and the Seebeck coefficient are approximately doubled when compared to pristine CNTY samples. As a consequence, the power factor is remarkably improved to 132.2 mu W m(-1)K(-2), more than six times that of the pristine CNTY. A thermoelectric generator device is manufactured, comprising 20 CNTY/lignin nanocomposite yarns, and they exhibit a maximum power output of 3.8 mu W, at a temperature gradient of 30 K.
机译:由于不断增加的公众意识行星健康状况恶化与气候变化和增加有关碳排放,可持续能源发展已经迅速成为关注。热电材料是生产,由宏观碳纳米管线从气相(CNTYs)连续生产。CNTYs掺杂木质素,从获得的木质纤维素的浪费,在23 wt %木质素,导电性和塞贝克当系数大约翻了一番相对于原始CNTY样本。因此,功率因数是显著的提高到132.2μW m (1) K(2),超过6倍的原始CNTY。发电机设备制造,包括20CNTY /木质素纳米复合纱线,展览最大输出功率为3.8μW,在30 K的温度梯度。

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