Marine College, Shandong University, Weihai, Weihai 264209, People's Republic of China.
Dalton Trans. 2018 Jul 10;47(27):9096-9102. doi: 10.1039/c8dt01350k.
A one-pot hydrothermal approach has been developed to introduce tetraethylene glycol (TEG) molecules into a two-dimensional (2D) layered lanthanide metal-organic framework ([Sm(H5C2P2O7)(H2O)2]·Guest, denoted SmHEDP-Guest). Through the straightforward loading of TEG, the proton conductivity of SmHEDP-TEG (1.21 × 10-3 S cm-1) is increased by 3 orders of magnitude compared with its analogue SmHEDP-H2O (1.22 × 10-6 S cm-1) under 100% relative humidity at room temperature. More excitingly, SmHEDP-TEG exhibits very high proton conductivity of 9.17 × 10-2 S cm-1, even higher than commercial Nafion, when the temperature is increased to 333 K, which is significantly higher than SmHEDP-H2O (3.38 × 10-5 S cm-1). The single crystal XRD reveals that the adjacent water molecules located in the channels of SmHEDP-H2O are isolated without hydrogen bonding interactions owing to their long distances. However, interestingly, the guest TEG molecules of SmHEDP-TEG behave as hydrogen bonded connected bridges, which switch on the proton transport pathway to promote proton hopping. This discovery may provide a facile strategy to design and synthesize more promising candidates for novel proton conductors.
一种一步水热法已被开发用于将四乙二醇(TEG)分子引入二维(2D)层状镧系金属有机骨架([Sm(H5C2P2O7)(H2O)2]·Guest,记为 SmHEDP-Guest)。通过简单地加载 TEG,与类似物 SmHEDP-H2O(1.22×10-6 S cm-1)相比,SmHEDP-TEG(1.21×10-3 S cm-1)在室温下 100%相对湿度下的质子电导率增加了 3 个数量级。更令人兴奋的是,当温度升高到 333 K 时,SmHEDP-TEG 表现出非常高的质子电导率为 9.17×10-2 S cm-1,甚至高于商业 Nafion,而 SmHEDP-H2O 的质子电导率为 3.38×10-5 S cm-1。单晶 XRD 表明,位于 SmHEDP-H2O 通道中的相邻水分子由于距离较远而没有氢键相互作用而被隔离。然而,有趣的是,SmHEDP-TEG 的客体 TEG 分子表现为氢键连接的桥梁,这开启了质子传输途径,促进质子跳跃。这一发现可能为设计和合成更有前途的新型质子导体提供了一种简便的策略。