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Combinatorial Self-Assembly of Coordination Cages with Systematically Fine-Tuned Cavities for Efficient Co-Encapsulation and Catalysis
Angewandte Chemie International Edition ( IF 16.1 ) Pub Date : 2022-05-21 , DOI: 10.1002/anie.202204732 Shao-Chuan Li 1, 2 , Li-Xuan Cai 1, 2 , Maochun Hong 1, 2 , Qihui Chen 1, 2 , Qing-Fu Sun 1, 2
Angewandte Chemie International Edition ( IF 16.1 ) Pub Date : 2022-05-21 , DOI: 10.1002/anie.202204732 Shao-Chuan Li 1, 2 , Li-Xuan Cai 1, 2 , Maochun Hong 1, 2 , Qihui Chen 1, 2 , Qing-Fu Sun 1, 2
Affiliation
A combinatorial self-assembly approach gives rise to a family of palladium-organic cages featuring systematically fine-tuned shapes and cavities. Emergent guest-binding and catalytic functions were observed that are due to the fusion of two half cavities on the heteroleptic cages from their parent homoleptic cages.
中文翻译:
具有系统微调腔的协调笼的组合自组装,用于高效的共封装和催化
组合自组装方法产生了一系列具有系统微调形状和空腔的钯-有机笼。观察到出现的客体结合和催化功能,这是由于杂配笼上的两个半腔从其母体同配笼融合而成。
更新日期:2022-05-21
中文翻译:
具有系统微调腔的协调笼的组合自组装,用于高效的共封装和催化
组合自组装方法产生了一系列具有系统微调形状和空腔的钯-有机笼。观察到出现的客体结合和催化功能,这是由于杂配笼上的两个半腔从其母体同配笼融合而成。