Effect of ring rotation upon gas adsorption in SIFSIX-3-M (M = Fe, Ni) pillared square grid networks

Author:

Elsaidi Sameh K.12345,Mohamed Mona H.12345,Simon Cory M.6789,Braun Efrem6789ORCID,Pham Tony101112139,Forrest Katherine A.101112139,Xu Wenqian141516179,Banerjee Debasis1819209,Space Brian101112139,Zaworotko Michael J.21222324,Thallapally Praveen K.1819209ORCID

Affiliation:

1. Chemistry Department

2. Faculty of Science

3. Alexandria University

4. Alexandria 21321

5. Egypt

6. Department of Chemical and Biomolecular Engineering

7. University of California-Berkeley

8. Berkeley

9. USA

10. Department of Chemistry

11. CHE205

12. University of South Florida

13. Tampa

14. X-ray Science Division

15. Advanced Photon Source

16. Argonne National Laboratory

17. Argonne

18. Physical and Computational Science Directorate

19. Pacific Northwest National Laboratory

20. Richland

21. Department of Chemical & Environmental Sciences

22. University of Limerick

23. Limerick

24. Republic of Ireland

Abstract

Dynamic and flexible metal–organic frameworks (MOFs) that respond to external stimuli, such as stress, light, heat, and the presence of guest molecules, hold promise for applications in chemical sensing, drug delivery, gas separations, and catalysis.

Funder

Office of Nuclear Energy

National Science Foundation

U.S. Department of Energy

Science Foundation Ireland

Publisher

Royal Society of Chemistry (RSC)

Subject

General Chemistry

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