Metal-organic frameworks are nano-porous adsorbents of relevance to gas separation and catalysis, and separation of oxygen from air is essential to diverse industrial applications. The ferrous salt of 2,5-dihydroxy-terephthalic acid, a metal-organic framework of the MOF74 family, can selectively adsorb oxygen in a manner that defies the classical picture: adsorption sites either do or do not share electrons over a long range. Here we propose, and then justify phenomenologically and computationally, a mechanism. Charge-transfer-mediated adsorption of electron acceptor oxygen molecules in the metal-organic framework, which is a quasi-one-dimensional electron-donor semiconductor, drives and is driven by quasi-one-dimensional metal–insulator–me...
The air-free reaction between FeCl<SUB>2</SUB> and H<SUB>4</SUB>dobdc (dobdc<SUP>4−</SUP> = 2,5-diox...
“Breathing” metal–organic frameworks (MOFs) that involve changes in their structural and physical pr...
Four isostructural CPO‐54‐M metal‐organic frameworks based on the larger organic linker 1,5‐dihydrox...
Developing O2-selective adsorbents that can produce high-purity oxygen from air remains a significan...
The air-free reaction between FeCl2 and H4dobdc (dobdc4– = 2,5-dioxido-1,4-benzenedicarboxylate) in ...
The air-free reaction between FeCl2 and H4dobdc (dobdc4– = 2,5-dioxido-1,4-benzenedicarboxylate) i...
The work herein describes progress towards using metal–organic frameworks as scaffolds for stabilizi...
The air-free reaction between FeCl2 and H4dobdc (dobdc4- = 2,5-dioxido-1,4-benzenedicarboxylate) in ...
This dissertation documents efforts to use a variety of synthetic approaches to generate new redox-a...
The design of stable adsorbents capable of selectively capturing dioxygen with a high reversible cap...
The air-free reaction between FeCl2 and H4dobdc (dobdc4- = 2,5-dioxido-1,4-benzenedicarboxylate) in ...
The work herein describes progress toward designing, synthesizing, and characterizing new metal–orga...
Metal-organic frameworks (MOFs) have a rich chemistry characterized by a diverse assortment of organ...
Nanoporous materials such as metal-organic frameworks (MOFs) and zeolites are under investigation fo...
The design of stable adsorbents capable of selectively capturing dioxygen with a high reversible cap...
The air-free reaction between FeCl<SUB>2</SUB> and H<SUB>4</SUB>dobdc (dobdc<SUP>4−</SUP> = 2,5-diox...
“Breathing” metal–organic frameworks (MOFs) that involve changes in their structural and physical pr...
Four isostructural CPO‐54‐M metal‐organic frameworks based on the larger organic linker 1,5‐dihydrox...
Developing O2-selective adsorbents that can produce high-purity oxygen from air remains a significan...
The air-free reaction between FeCl2 and H4dobdc (dobdc4– = 2,5-dioxido-1,4-benzenedicarboxylate) in ...
The air-free reaction between FeCl2 and H4dobdc (dobdc4– = 2,5-dioxido-1,4-benzenedicarboxylate) i...
The work herein describes progress towards using metal–organic frameworks as scaffolds for stabilizi...
The air-free reaction between FeCl2 and H4dobdc (dobdc4- = 2,5-dioxido-1,4-benzenedicarboxylate) in ...
This dissertation documents efforts to use a variety of synthetic approaches to generate new redox-a...
The design of stable adsorbents capable of selectively capturing dioxygen with a high reversible cap...
The air-free reaction between FeCl2 and H4dobdc (dobdc4- = 2,5-dioxido-1,4-benzenedicarboxylate) in ...
The work herein describes progress toward designing, synthesizing, and characterizing new metal–orga...
Metal-organic frameworks (MOFs) have a rich chemistry characterized by a diverse assortment of organ...
Nanoporous materials such as metal-organic frameworks (MOFs) and zeolites are under investigation fo...
The design of stable adsorbents capable of selectively capturing dioxygen with a high reversible cap...
The air-free reaction between FeCl<SUB>2</SUB> and H<SUB>4</SUB>dobdc (dobdc<SUP>4−</SUP> = 2,5-diox...
“Breathing” metal–organic frameworks (MOFs) that involve changes in their structural and physical pr...
Four isostructural CPO‐54‐M metal‐organic frameworks based on the larger organic linker 1,5‐dihydrox...