电导率
吸附
嫁接
化学
苯
质子
金属有机骨架
材料科学
磺酸
纳米技术
高分子化学
无机化学
化学工程
有机化学
物理化学
聚合物
物理
量子力学
工程类
作者
Fan Yang,Rui-min Shi,Hongliang Huang,Zhengqing Zhang,Xiangyu Guo,Zhihua Qiao,Chongli Zhong
标识
DOI:10.1021/acsaem.1c03852
摘要
Constructing highly proton-conducting metal–organic frameworks (MOFs) remains a difficult challenge. Hence, we developed an effective nanochannel engineering strategy by grafting sulfonic-abundant benzene-1,3,5-trisulfonic acid (BTSA) onto the Zr6-clusters of PCN-222 to act as a proton-conducting intensifier. Although the introduced BTSA dramatically reduced the pore volume, the resultant MOF (PCN-222-BTSA) exhibited strong water affinity and thus significantly enhanced water uptake at low RH values, reaching up to an almost equivalent water adsorption capacity at a high RH value compared with the capacity of pristine PCN-222. Benefiting from the enhanced water adsorption behavior and the proton-donating capability of sulfonic groups, PCN-222-BTSA displayed 2–3 orders of magnitude higher proton conductivity than pristine PCN-222. Our work is the first to report on postsynthetic modification in the nanochannel of MOFs for proton conduction, which demonstrates a strategy to design functional MOFs with abundant sulfonic groups and provides a bright avenue for constructing proton-conducting materials.
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