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Updated: Jun 20, 2026

Synthesis and Characterization of Functionalized Metal-organic Frameworks
Published on: September 5, 2014
Novel Carborane Based Metal Organic Framework for Record Electronic Specialty Gas C2F6 Purification via Molecular
Jianan He1, Lingyao Wang1, Guangzu Xiong1
1Key Laboratory of the Ministry of Education for Advanced Catalysis Materials, College of Chemistry and Materials Science, Zhejiang Normal University, Jinhua, P.R. China.
Abstract:
The production of high-purity perfluoroethane (C2F6), an essential electronic specialty gas, requires the removal of its partially-fluorinated analog, pentafluoroethane C2F5H. This separation is exceptionally challenging due to their similar physicochemical properties. Herein, we report a novel carborane-based metal-organic framework, ZNU-23 (Ni-CB-HPBTA), engineered with a pearl-chain-like pore architecture to achieve unprecedented molecular sieving separation. The narrow pore channel and large cavity in ZNU-23 facilitate the high and fast uptake of C2F5H (65.2 cm3·g-1 at 298 K and 1 bar) while nearly completely excluding C2F6, leading to a record-high IAST selectivity exceeding 5000 for a C2F5H/C2F6 (1/99) mixture. Dynamic breakthrough experiments confirm its excellent separation performance across various mixture ratios, remarkable stability under humid and elevated-temperature conditions, and superb recyclability. Mechanistic studies via GCMC simulations and DFT calculations attribute this performance to the multi-site confinement of C2F5H within the pearl-chain pores and the complete steric exclusion of the larger C2F6 molecule. The potential C2F5H binding sites within the framework were further revealed by C2F5H-loaded single crystal structure of ZNU-23.
