Issue 4, 2023

Gyroidal MOFs: anion-coordination effect enables inverse architecture and enhanced moisture stability

Abstract

The rational construction of MOFs with fascinating architecture and satisfactory stability under humid conditions are very attractive but rather challenging to obtain. Herein, we proposed a facile and generalizable method to drastically boost the moisture or water resistance of MOFs by the anion coordination effect. Three gyroidal MOFs (GMOF-1, 2, 3) with the unique topology (nku, abbreviation of Nankai University) were successfully synthesized. Surprisingly, compared with GMOF-1, the coordination of NO3 in GMOF-3 reverses the direction of the helical channels, while GMOF-2 decorated with Br coordination possesses the same helical direction. By means of the anion coordination effect, both GMOF-2 and GMOF-3 are endowed with enhanced water resistance.

Graphical abstract: Gyroidal MOFs: anion-coordination effect enables inverse architecture and enhanced moisture stability

Supplementary files

Article information

Article type
Research Article
Submitted
07 Nov 2022
Accepted
30 Dec 2022
First published
05 Jan 2023

Inorg. Chem. Front., 2023,10, 1197-1202

Gyroidal MOFs: anion-coordination effect enables inverse architecture and enhanced moisture stability

G. Ren, N. Li, N. Lu, Q. Gao, Y. Zhang, X. Wang, Z. Chang, Y. Liu and X. Bu, Inorg. Chem. Front., 2023, 10, 1197 DOI: 10.1039/D2QI02361J

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