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通过硫酸根跳跃位点修饰的氧锆簇在宽温度范围内保持超质子传导性。

Keeping Superprotonic Conductivity over a Wide Temperature Region via Sulfate Hopping Sites-Decorated Zirconium-Oxo Clusters.

作者信息

Xie Wei-Lian, Li Xiao-Min, Lin Jiao-Min, Dong Long-Zhang, Chen Yu, Li Ning, Shi Jing-Wen, Liu Jing-Jing, Liu Jiang, Li Shun-Li, Lan Ya-Qian

机构信息

Jiangsu Collaborative Innovation Centre of Biomedical Functional Materials, Jiangsu Key Laboratory of New Power Batteries, School of Chemistry and Materials Science, Nanjing Normal University, Nanjing, 210023, P. R. China.

School of Materials Science and Engineering, Institute of Functional Porous Materials, Zhejiang Sci-Tech University, Hangzhou, 310018, P. R. China.

出版信息

Small. 2022 Dec;18(48):e2205444. doi: 10.1002/smll.202205444. Epub 2022 Oct 25.

Abstract

Metal-oxo clusters have emerged as advanced proton conductors with well-defined and tunable structures. Nevertheless, the exploitation of metal-oxo clusters with high and stable proton conductivity over a relatively wide temperature range still remains a great challenge. Herein, three sulfate groups decorated zirconium-oxo clusters (Zr , Zr , and Zr ) as proton conductors are reported, which exhibit ultrahigh bulk proton conductivities of 1.71 × 10 , 2.01 × 10 , and 3.73 × 10  S cm under 70 °C and 98% relative humidity (RH), respectively. Remarkably, Zr and Zr with multiple sulfate groups as proton hopping sites show ultralow activation energies of 0.22 and 0.18 eV, respectively, and stable bulk conductivities of >10  S cm between 30 and 70 °C at 98% RH. Moreover, a time-dependent proton conductivity test reveals that the best performing Zr can maintain high proton conductivity up to 15 h with negligible loss at 70 °C and 98% RH, representing one of the best crystalline cluster-based proton conducting materials.

摘要

金属氧簇已成为具有明确且可调节结构的先进质子导体。然而,开发在相对较宽温度范围内具有高且稳定质子传导率的金属氧簇仍然是一个巨大的挑战。在此,报道了三种作为质子导体的硫酸根修饰的锆氧簇(Zr 、Zr 和Zr ),它们在70°C和98%相对湿度(RH)下分别表现出1.71×10 、2.01×10 和3.73×10 S cm的超高体相质子传导率。值得注意的是,具有多个硫酸根作为质子跳跃位点的Zr 和Zr 分别显示出0.22和0.18 eV的超低活化能,并且在98% RH下30至70°C之间具有>10 S cm的稳定体相传导率。此外,一项随时间变化的质子传导率测试表明,性能最佳的Zr 在70°C和98% RH下可保持高达15小时的高质子传导率,损失可忽略不计,这代表了基于晶体簇的最佳质子传导材料之一。

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