DOAJ Open Access 2024

Bioinspired recognition in metal-organic frameworks enabling precise sieving separation of fluorinated propylene and propane mixtures

Wei Xia Zhijie Zhou Liangzheng Sheng Lihang Chen Fuxing Shen +5 lainnya

Abstrak

Abstract The separation of fluorinated propane/propylene mixtures remains a major challenge in the electronics industry. Inspired by biological ion channels with negatively charged inner walls that allow selective transport of cations, we presented a series of formic acid-based metal-organic frameworks (MFA) featuring biomimetic multi-hydrogen confined cavities. These MFA materials, especially the cobalt formate (CoFA), exhibit specific recognition of hexafluoropropylene (C3F6) while facilitating size exclusion of perfluoropropane (C3F8). The dual-functional adsorbent offers multiple binding sites to realize intelligent selective recognition of C3F6, as supported by theoretical calculations and in situ spectroscopic experiments. Mixed-gas breakthrough experiments validate the capability of CoFA to produce high-purity (>5 N) C3F8 in a single step. Importantly, the stability and cost-effective scalable synthesis of CoFA underscore its extraordinary potential for industrial C3F6/C3F8 separations. This bioinspired molecular recognition approach opens new avenues for the efficient purification of fluorinated electronic specialty gases.

Topik & Kata Kunci

Penulis (10)

W

Wei Xia

Z

Zhijie Zhou

L

Liangzheng Sheng

L

Lihang Chen

F

Fuxing Shen

F

Fang Zheng

Z

Zhiguo Zhang

Q

Qiwei Yang

Q

Qilong Ren

Z

Zongbi Bao

Format Sitasi

Xia, W., Zhou, Z., Sheng, L., Chen, L., Shen, F., Zheng, F. et al. (2024). Bioinspired recognition in metal-organic frameworks enabling precise sieving separation of fluorinated propylene and propane mixtures. https://doi.org/10.1038/s41467-024-53024-8

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Informasi Jurnal
Tahun Terbit
2024
Sumber Database
DOAJ
DOI
10.1038/s41467-024-53024-8
Akses
Open Access ✓