Feng Junyang, Li Ying, Xie Lixia, Tong Jinzhao, Li Gang
School of Pharmaceutical Engineering, Henan Technical Institute, Zhengzhou 450042, China.
College of Science, Henan Agricultural University, Zhengzhou 450002, China.
Molecules. 2024 Jun 4;29(11):2656. doi: 10.3390/molecules29112656.
Solid electrolyte materials with high structural stability and excellent proton conductivity (σ) have long been a popular and challenging research topic in the fuel cell field. This problem can be addressed because of the crystalline metal-organic frameworks' (MOFs') high structural stability, adjustable framework composition, and dense H-bonded networks. Herein, one highly stable Sr(II) MOF, {[Sr(Htmidc)(HO)]·4HO} () (Htmidc = 2-(1H-tetrazolium-1-methylene)-1H-imidazole-4,5-dicarboxylic acid) was successfully fabricated, which was structurally characterized by single-crystal X-ray diffraction and electrochemically examined by the AC impedance determination. The results demonstrated that the σ of the compound manifested a positive dependence on temperature and humidity, and the optimal proton conductivity is as high as 1.22 × 10 S/cm under 100 °C and 98% relative humidity, which is at the forefront of reported MOFs with ultrahigh σ. The analysis of the proton conduction mechanism reveals that numerous tetrazolium groups, carboxyl groups, coordination, and crystallization water molecules in the framework are responsible for the high efficiency of proton transport. This work offers a fresh perspective on how to create novel crystalline proton conductive materials.
具有高结构稳定性和优异质子传导率(σ)的固体电解质材料长期以来一直是燃料电池领域中一个热门且具有挑战性的研究课题。由于结晶金属有机骨架(MOF)具有高结构稳定性、可调节的骨架组成以及密集的氢键网络,这个问题可以得到解决。在此,一种高度稳定的Sr(II)MOF,{[Sr(Htmidc)(HO)]·4HO}()(Htmidc = 2 - (1H - 四唑 - 1 - 亚甲基) - 1H - 咪唑 - 4,5 - 二羧酸)被成功制备出来,通过单晶X射线衍射对其结构进行了表征,并通过交流阻抗测定进行了电化学检测。结果表明,该化合物的σ对温度和湿度呈正相关,在100°C和98%相对湿度下,最佳质子传导率高达1.22×10 S/cm,这在已报道的具有超高σ的MOF中处于领先地位。对质子传导机制的分析表明,骨架中的大量四唑基团、羧基、配位水分子和结晶水分子是质子高效传输的原因。这项工作为如何制备新型结晶质子传导材料提供了新的视角。