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October 28, 2022Journal of the American Chemical Society84 citationsOpen Access

Optimization of Pore-Space-Partitioned Metal–Organic Frameworks Using the Bioisosteric Concept

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HYHuajun YangYCYichong ChenCDCandy Dang

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Abstract

Pore space partitioning (PSP) is methodically suited for dramatically increasing the density of guest binding sites, leading to the partitioned acs (pacs) platform capable of record-high uptake for CO2 and small hydrocarbons such as C2Hx. For gas separation, achieving high selectivity amid PSP-enabled high uptake offers an enticing prospect. Here we aim for high selectivity by introducing the bioisosteric (BIS) concept, a widely used drug design strategy, into the realm of pore-space-partitioned MOFs. New pacs materials have high C2H2/CO2 selectivity of up to 29, high C2H2 uptake of up to 144 cm3/g (298 K, 1 atm), and high separation potential of up to 5.3 mmol/g, leading to excellent experimental breakthrough performance. These metrics, coupled with exceptional tunability, high stability, and low regeneration energy, demonstrate the broad potential of the BIS-PSP strategy.

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Cite This Study

Yang et al. (2022) studied this question.

synapsesocial.com/papers/6a0b20279b4eb2f7ce2e502chttps://doi.org/10.1021/jacs.2c09349
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