Robust Supramolecular Nano-Tunnels Built from Molecular Bricks**

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Abstract

Herein we report a linear ionic molecule that assembles into a supramolecular nano-tunnel structure through synergy of trident-type ionic interactions and π–π stacking interactions. The nano-tunnel crystal exhibits anisotropic guest adsorption behavior. The material shows good thermal stability and undergoes multi-stage single-crystal-to-single-crystal phase transformations to a nonporous structure on heating. The material exhibits a remarkable chemical stability under both acidic and basic conditions, which is rarely observed in supramolecular organic frameworks and is often related to structures with designed hydrogen-bonding interactions. Because of the high polarity of the tunnels, this molecular crystal also shows a large CO2-adsorption capacity while excluding other gases at ambient temperature, leading to high CO2/CH4 selectivity. Aggregation-induced emission of the molecules gives the bulk crystals vapochromic properties.

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Wei, P., He, X., Zheng, Z., He, D., Li, Q., Gong, J., … Tang, B. Z. (2021). Robust Supramolecular Nano-Tunnels Built from Molecular Bricks**. Angewandte Chemie - International Edition, 60(13), 7148–7154. https://doi.org/10.1002/anie.202013117

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