Lv Guangxin, Soman Bhaskar, Shan Naisong, Evans Christopher M, Cahill David G
Department of Materials Science and Engineering and Materials Research Laboratory, University of Illinois at Urbana-Champaign, Urbana, Illinois 61801, United States.
ACS Macro Lett. 2021 Sep 21;10(9):1088-1093. doi: 10.1021/acsmacrolett.1c00423. Epub 2021 Aug 10.
Dynamic covalent networks are a class of polymers containing exchangeable bonds. The influence of the thermodynamics and kinetics of dynamic bond exchange on the thermal conductivity and mechanical properties of dynamic networks is important for understanding how they differ from thermoplastics and thermosets. In this work, a series of ethylene dynamic networks are synthesized from benzene diboronic acid and alkane diols with different precise ethylene linker lengths. The thermal conductivity of these ethylene dynamic networks at 40 °C decreases from 0.19 to 0.095 W/(m K) when the ethylene linker length increases from 4 to 12 carbons. The thermal conductivity also has a strong temperature dependence, decreasing by a factor of 3 over the temperature range from -80 °C to 100 °C. The minimum thermal conductivity model predicts these trends of the thermal conductivity with variations in ethylene linker length and temperature.
动态共价网络是一类含有可交换键的聚合物。动态键交换的热力学和动力学对动态网络的热导率和机械性能的影响,对于理解它们与热塑性塑料和热固性塑料的差异至关重要。在这项工作中,由苯二硼酸和具有不同精确乙烯连接链长度的烷二醇合成了一系列乙烯动态网络。当乙烯连接链长度从4个碳增加到12个碳时,这些乙烯动态网络在40°C下的热导率从0.19 W/(m·K)降至0.095 W/(m·K)。热导率也具有很强的温度依赖性,在从-80°C到100°C的温度范围内下降了3倍。最小热导率模型预测了热导率随乙烯连接链长度和温度变化的这些趋势。