Li Long, Li Huijing, Wei Junjie, Li Rui, Sun Jiale, Zhao Chuanzhuang, Chen Tao
School of Material Science and Chemical Engineering, Ningbo University, Ningbo 315211, China.
Key Laboratory of Marine Materials and Related Technologies, Zhejiang Key Laboratory of Marine Materials and Protective Technologies, Ningbo Institute of Material Technology and Engineering, Chinese Academy of Sciences, Ningbo 315201, China.
Polymers (Basel). 2023 Mar 31;15(7):1746. doi: 10.3390/polym15071746.
The energy crisis is one of the most critical and urgent problems in modern society; thus, harvesting energy from ubiquitous low-grade heat energy with thermoelectric (TE) materials has become an available strategy in sustainable development. Recently, emerging ionic TE materials have been widely used to harvest low-grade heat energy, owing to their excellent performance in high ionic Seebeck coefficient, low thermal conductivity, and mechanical flexibility. However, the instability of ionic conductive materials in the underwater environment seriously suppresses underwater energy-harvesting, resulting in a waste of underwater low-grade heat energy. Herein, we developed a water-resistant TE ionogel (TEIG) with excellent long-term underwater stability utilizing a hydrophobic structure. Due to the hydrophobic polymer network and hydrophobic ionic liquid (IL), the TEIG exhibits high hydrophobicity and antiswelling capacity, which meets the requirement of environment stability for underwater thermoelectric application. Furthermore, the water resistance endows the TEIG with great thermoelectric performances in the underwater environment, including satisfactory ionic Seebeck coefficient, outstanding durability, and superior salt tolerance. Therefore, this investigation provides a promising strategy to design water-resistant TE materials, enabling a remarkable potential in harvesting low-grade heat energy under water.
能源危机是现代社会最关键和紧迫的问题之一;因此,利用热电(TE)材料从无处不在的低品位热能中收集能量已成为可持续发展中的一种可行策略。最近,新兴的离子TE材料因其在高离子塞贝克系数、低导热率和机械柔韧性方面的优异性能而被广泛用于收集低品位热能。然而,离子导电材料在水下环境中的不稳定性严重抑制了水下能量收集,导致水下低品位热能的浪费。在此,我们利用疏水结构开发了一种具有优异长期水下稳定性的防水TE离子凝胶(TEIG)。由于疏水聚合物网络和疏水性离子液体(IL),TEIG表现出高疏水性和抗溶胀能力,满足了水下热电应用对环境稳定性的要求。此外,防水性赋予TEIG在水下环境中优异的热电性能,包括令人满意的离子塞贝克系数、出色的耐久性和卓越的耐盐性。因此,本研究为设计防水TE材料提供了一种有前景的策略,在水下收集低品位热能方面具有巨大潜力。