Yu Choongho, Kim Yeon Seek, Kim Dasaroyong, Grunlan Jaime C
Department of Mechanical Engineering, Texas A&M University, College Station, Texas 77843, USA.
Nano Lett. 2008 Dec;8(12):4428-32. doi: 10.1021/nl802345s.
Segregated-network carbon nanotube (CNT)-polymer composites were prepared, and their thermoelectric properties were measured as a function of CNT concentration at room temperature. This study shows that electrical conductivity can be dramatically increased by creating a network of CNTs in the composite, while the thermal conductivity and thermopower remain relatively insensitive to the filler concentration. This behavior results from thermally disconnected, but electrically connected, junctions in the nanotube network, which makes it feasible to tune the properties in favor of a higher thermoelectric figure of merit. With a CNT concentration of 20 wt %, these composites exhibit an electrical conductivity of 4800 S/m, thermal conductivity of 0.34 W/m x K and a thermoelectric figure of merit (ZT) greater than 0.006 at room temperature. This study suggests that polymeric thermoelectrics are possible and provides the basis for further development of lightweight, low-cost, and nontoxic polymer composites for thermoelectric applications in the future.
制备了隔离网络碳纳米管(CNT)-聚合物复合材料,并在室温下测量了它们的热电性能随CNT浓度的变化。这项研究表明,通过在复合材料中创建CNT网络,可以显著提高电导率,而热导率和热功率对填料浓度相对不敏感。这种行为源于纳米管网络中热断开但电连接的结,这使得调整性能以有利于更高的热电优值成为可能。在CNT浓度为20 wt%时,这些复合材料在室温下表现出4800 S/m的电导率、0.34 W/m x K的热导率和大于0.006的热电优值(ZT)。这项研究表明聚合物热电材料是可行的,并为未来开发用于热电应用的轻质、低成本和无毒聚合物复合材料提供了基础。