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Bottom-Up Solid-State Molecular Assembly via Guest-Induced Intermolecular Interactions

Jia‐Rui Wu, Zhi Cai, Gengxin Wu, Dihua Dai, Yuqing Liu, Ying‐Wei Yang

2021Journal of the American Chemical Society82 citationsDOI

Abstract

The manipulation of molecular motions to construct highly ordered supramolecular architectures from chaos in the solid state is considered to be far more complex and challenging in comparison to that in solution. In this work, a bottom-up molecular assembly approach based on a newly designed skeleton-trimmed pillar[5]arene analogue, namely the permethylated leggero pillar[5]arene MeP[5]L, is developed in the solid state. An amorphous powder of MeP[5]L can take up certain guest vapors to form various ordered linker-containing solid-state molecular assemblies, which can be further used to construct a thermodynamically favored linker-free superstructure upon heating. These approaches are driven by vapor-induced solid-state molecular motions followed by a thermally triggered phase-to-phase transformation. The intermolecular interactions play a crucial role in controlling the molecular arrangements in the resulting assemblies. This research will open new insights into exploring controllable molecular motions and assemblies in the solid state, providing new perspectives in supramolecular chemistry and materials.

Topics & Concepts

ChemistrySupramolecular chemistryIntermolecular forceSolid-stateLinkerPillarAmorphous solidSuperstructureChemical physicsMolecular dynamicsMoleculePhase (matter)Molecular machineNanotechnologyCrystallographyComputational chemistryOrganic chemistryThermodynamicsPhysical chemistryMaterials scienceOperating systemComputer sciencePhysicsEngineeringStructural engineeringSupramolecular Chemistry and ComplexesLuminescence and Fluorescent MaterialsCovalent Organic Framework Applications
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