The surface chemistry of Metal–Organic Polyhedra (MOPs) is crucial to their physicochemical properties because it governs how they interact with external substances …
J Li, Z Liu, J Liu, X Liu, Y Luo, J Liang… - Advanced …, 2024 - Wiley Online Library
Designing autonomously oscillating materials is highly desirable for emerging smart material fields but challenging. Herein, a type of hypercrosslinked metal–organic polyhedra …
G Li, Z Du, C Wu, Y Liu, Y Xu, R Lavendomme… - Nature …, 2025 - nature.com
Intensified host-guest electronic interplay within stable metal-organic cages (MOCs) presents great opportunities for applications in stimuli response and photocatalysis. Zr …
Certain discrete metal–organic polyhedra (MOPs) contain pores that also appear in extended metal–organic frameworks (MOFs) and MOP-based supramolecular frameworks …
MN Morey, CM Montone, MR Dworzak, GPA Yap… - Chemical …, 2025 - pubs.rsc.org
Zirconium-based porous coordination cages have been widely studied and have shown to be potentially useful for many applications as a result of their tunability and stability, likely as …
L Hernández-López, C von Baeckmann… - Chem. Eur. J, 2023 - core.ac.uk
Rh (II)-based MOP with 24 available surface alkyne groups was synthesised. Each of the 24 alkyne groups on the surface of the “clickable” Rh-MOP can react with azide-containing …
S Du, J Lyu, Z Yu, K Su, W Wang, X Zhang… - Angewandte Chemie … - Wiley Online Library
Nanoscale molecular materials have emerged as a new class of compounds at the nanometer scale with well‐defined chemical structures, remarkable uniformity and high …