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◆ ACS Materials Letters2026-01-30· Adsorption

Locking of CO <sub>2</sub> in a Bioinspired Porous-Organic-Polymeric Prison: Impact of Aliphatic Odd–Even Linker Combination

Nitumani Das, Chandan Biswas, Sai V. C. Vummaleti, Tahereh Azizivahed, Yining Huang, Wenjing Wang, Xinglong Zhang, John Mondal

原始摘要(英文原文)· Original abstract
The critical need for better sorbents for CO 2 capture and separation (CCS) is at the forefront of the current research scenario, which is addressed here by synthesizing allomelanin-inspired porous organic polymers (POPs) LPOP - n ( n = 1–5). An investigation into the effect of different linkers on CO 2 adsorption revealed an interesting performance trend, with LPOP-2 showing the highest CO 2 uptake, 3.50 and 3.02 mmol/g at 273 and 298 K, respectively, with impressive CO 2 /N 2 selectivity. Moreover, a dynamic breakthrough experiment revealed a longer breakthrough time for CO 2 than that for N 2, verifying the feasibility of LPOP-2 for its practical application in the CCS process. Density functional theory (DFT) calculations indicated that noncovalent interactions (NCIs), like π-quadrupole interaction and H-bonding, were crucial in dictating the varying CO 2 adsorption behaviors across the LPOP - n series. This work underscores how simple materials originating from biologically active units can produce biocompatible materials for gas adsorption and separation applications.
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Locking of CO <sub>2</sub> in a Bioinspired Porous-Organic-Polymeric Prison: Impact of Aliphatic Odd–Even Linker Combination — 科研速览 Science Skim