三元运算
微型多孔材料
吸附
乙炔
材料科学
多孔性
乙烯
选择性
化学工程
多孔介质
Crystal(编程语言)
配体(生物化学)
密度泛函理论
单晶
选择性吸附
工作(物理)
晶体结构
三元数制
纳米技术
气体分离
三元络合物
结晶学
物理化学
晶体工程
表面改性
无机化学
作者
Zhang Mingxing,Jingui Duan,Yanfei Feng,Junfeng Bai
标识
DOI:10.1038/s41467-025-65057-8
摘要
Abstract Direct harvesting of electronic-grade acetylene (C 2 H 2 ) from ternary C2 mixtures is a great challenge due to the ubiquitous adsorption preference of conventional porous materials (C 2 H 2 > ethylene (C 2 H 4 ) > ethane (C 2 H 6 )). Here, we report a strategy to reverse this selectivity by leveraging ligand functionalization in porous crystals. Through the incorporation of trifluoromethyl/methyl groups into a pyrazole-carboxylate linker, we engineer a series of MOF-5 analogs. The optimal material, NTU-98 , fully reverses the adsorption trend of C2 hydrocarbons (C 2 H 6 > C 2 H 4 > C 2 H 2 ), enabling direct production of C 2 H 2 with >99.99% purity from ternary feeds at room temperature in one-step. Combined density functional theory calculations and gas-loaded crystallographic analyses unveil the molecular mechanism: methyl groups precisely positioned within the cages enhance host-guest interactions with C 2 H 4 and C 2 H 6 , while suppressing the binding affinity for C 2 H 2 . This work presents a porous crystal for direct C 2 H 2 purification from ternary feeds and a blueprint for designing microporous environments targeting challenging separations.
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