吸附
乙炔
多孔性
饱和(图论)
材料科学
选择性
分析化学(期刊)
多孔介质
跟踪(心理语言学)
生物系统
化学
球形填料
湿度
吸附
微量
扩散
热力学
微量气体
化学工程
矿物学
实现(概率)
理论(学习稳定性)
相对湿度
系列(地层学)
纳米技术
优化设计
作者
Jun‐Hao Wang,Yu‐Chi Wan,Ji‐Ning Cao,Ye‐Fan Zhang,Ye‐Fan Zhang,Rui‐Min Wu,Haitao Zhang,Xudong Wu,Jin‐Sheng Zou,Mei‐Jing Cheng,Yong‐Liang Huang,Mian Li,Ying Zhang,Ying Zhang,Yun‐Lei Peng,Michael J. Zaworotko
标识
DOI:10.1002/anie.202524692
摘要
Host-guest fit is critical in enzyme-substrate binding and useful for designing crystalline porous adsorbents to remove trace impurities; however, realization of such remains highly scarce, let alone to elucidate the atomic-level understanding on how to optimize such an effect. Herein, we demonstrate the systematic design of a pillared-layer MOF series (CPL-1) to achieve optimal host-guest fit through increasing the number of bulky groups, progressively enhancing the C2H2 adsorption performance. The newly synthesized, best-fit SXU-10 exhibits the most superior very-low-pressure C2H2 capture-reaching near saturation at just 2 kPa. With record C2H2 packing densities of 483.9 mg cm-3 at 1 kPa and 733.97 mg cm-3 at 100 kPa, SXU-10 exhibits an uptake of 1.18 mmol g-1 C2H2 at 1 kPa and C2H2/C2H4 selectivity of 133 for 1/99 C2H2/C2H4 mixtures (all at 298 K), along with exceptional stability and humidity tolerance, enabling the production of polymer-grade C2H4 from trace C2H2 mixtures under a challenging humid condition (80% RH). The unusual steep-rise-uptake phenomenon and significantly improved performance are attributed to the optimized host-guest shape fit at a sub-ångström precision which constrains the gate-opening flexibility, evidenced via in situ single-crystal X-ray diffraction. The present study sheds light on the molecular-level engineering of bioinspired porous adaptive materials.
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