Ho Wei Huan, Li Shih-Cheng, Wang Yi-Ching, Chang Tzu-En, Chiang Yi-Ting, Li Yi-Pei, Kung Chung-Wei
Department of Chemical Engineering, National Cheng Kung University, Tainan City 70101, Taiwan.
Department of Chemical Engineering, National Taiwan University, Taipei City 10617, Taiwan.
ACS Appl Mater Interfaces. 2021 Nov 24;13(46):55358-55366. doi: 10.1021/acsami.1c17396. Epub 2021 Nov 10.
In this study, proton-conducting behaviors of a cerium-based metal-organic framework (MOF), Ce-MOF-808, its zirconium-based isostructural MOF, and bimetallic MOFs with various Zr-to-Ce ratios are investigated. The significantly increased proton conductivity (σ) and decreased activation energy () are obtained by substituting Zr with Ce in the nodes of MOF-808. Ce-MOF-808 achieves a σ of 4.4 × 10 S/cm at 25 °C under 99% relative humidity and an of 0.14 eV; this value is among the lowest-reported of proton-conductive MOFs. Density functional theory calculations are utilized to probe the proton affinities of these MOFs. As the first study reporting the proton conduction in cerium-based MOFs, the finding here suggests that cerium-based MOFs should be a better platform for the design of proton conductors compared to the commonly reported zirconium-based MOFs in future studies on energy-related applications.
在本研究中,对一种铈基金属有机框架(MOF)Ce-MOF-808、其锆基同构MOF以及具有不同Zr/Ce比的双金属MOF的质子传导行为进行了研究。通过在MOF-808的节点中用Ce替代Zr,获得了显著提高的质子传导率(σ)和降低的活化能()。Ce-MOF-808在25°C、相对湿度99%的条件下实现了4.4×10 S/cm的σ和0.14 eV的;该值是质子传导MOF中报道的最低值之一。利用密度泛函理论计算来探究这些MOF的质子亲和力。作为首次报道铈基金属有机框架中质子传导的研究,此处的发现表明,在未来与能源相关应用的研究中,与通常报道的锆基金属有机框架相比,铈基金属有机框架应该是设计质子导体的更好平台。