材料科学
电解质
溶剂
电导率
熔点
离子
盐(化学)
聚合物
热传导
化学工程
导电体
阳离子聚合
有机溶剂
载流子
离子电导率
混合(物理)
电阻率和电导率
化学物理
大气温度范围
热导率
电荷(物理)
离子运输机
电化学
溶解过程
无机化学
相(物质)
航程(航空)
易熔合金
熔化温度
熔盐
热的
导电聚合物
空间电荷
作者
Yiming Yuan,Thomas B. H. Schroeder
标识
DOI:10.1002/adma.202519014
摘要
Conductive media in which ions carry charge through a solution are foundationally important to batteries, supercapacitors, and ionotronic devices. Shifts in ion mobility imposed by physical changes in the solution can dynamically impact the conductivity of the medium. This paper reports a class of temperature-responsive phase-change organogels in which a polymer network is formed within salt solutions in organic solvents with melting points between room temperature and 100 °C. The conductivity in the molten state (up to ∼10-4 to 10-3 S/cm) exceeded that in the frozen state by over 10 000-fold and remained stable after holding at 90 °C for 3 h or over 100 freezing/melting cycles. A diverse range of salts can be used, and the conductivity/temperature relationship can be tuned by selecting or mixing solvents with different melting points. Depending on the solvent composition, these phase-change organogels can either produce approximately digital (binary) thermal responses to function as switches or respond continuously as analog temperature sensors or other transducers. An advantage of this strategy over prior literature is that the identity of the charge carrier and the phase behavior of the solvent can be tuned independently, presenting a wide design space for electrolyte materials whose conductivity responds to temperature.
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