Synthetic Routes for a 2D Semiconductive Copper Hexahydroxybenzene Metal–Organic Framework
Journal Article
·
· Journal of the American Chemical Society
- Stanford Univ., Stanford, CA (United States)
- Stockholm Univ., Stockholm (Sweden)
- Argonne National Lab. (ANL), Lemont, IL (United States)
Conductive metal-organic frameworks (c-MOFs) have demonstrated outstanding performance in energy storage and electrocatalysis. Varying the bridging metal species and the coordinating atom are versatile approaches to tune their intrinsic electronic properties in c-MOFs. Herein we report the first synthesis of the oxygen analog of M3(C6X6)2 (X = NH, S) family using Cu(II) and hexahydroxybenzene (HHB), namely Cu-HHB [Cu3(C6O6)2], through a kinetically controlled approach with a competing coordination reagent. We also successfully demonstrate an economical synthetic approach using tetrahydroxyquinone as the starting material. Cu-HHB was found to have a partially eclipsed packing between adjacent 2D layers and a bandgap of approximately 1 eV. The addition of Cu-HHB to the family of synthetically realized M3(C6X6)2 c-MOFs will allow greater understanding of the influence of the organic linkers and metals, and further broadens the range of applications for these materials.
- Research Organization:
- Argonne National Lab. (ANL), Lemont, IL (United States)
- Sponsoring Organization:
- Camille and Henry Dreyfus Foundation; Knut and Alice Wallenberg Foundation; National Research Foundation (NRF) of Korea; National Science Foundation (NSF); Swedish Research Council; USDOE Office of Science (SC), Basic Energy Sciences (BES) (SC-22)
- Grant/Contract Number:
- AC02-06CH11357
- OSTI ID:
- 1507097
- Journal Information:
- Journal of the American Chemical Society, Journal Name: Journal of the American Chemical Society Journal Issue: 44 Vol. 140; ISSN 0002-7863
- Publisher:
- American Chemical Society (ACS)Copyright Statement
- Country of Publication:
- United States
- Language:
- English
Similar Records
2D Copper Tetrahydroxyquinone Conductive Metal–Organic Framework for Selective CO
2
Electrocatalysis at Low Overpotentials
Linker Redox Mediated Control of Morphology and Properties in Semiconducting Iron‐Semiquinoid Coordination Polymers**
Journal Article
·
Sun Jan 31 19:00:00 EST 2021
· Advanced Materials
·
OSTI ID:1785880
Linker Redox Mediated Control of Morphology and Properties in Semiconducting Iron‐Semiquinoid Coordination Polymers**
Journal Article
·
Thu Oct 06 20:00:00 EDT 2022
· Angewandte Chemie (International Edition)
·
OSTI ID:1891568