CH Sharp, BC Bukowski, H Li, EM Johnson… - Chemical Society …, 2021 - pubs.rsc.org
The ubiquity of metal–organic frameworks in recent scientific literature underscores their highly versatile nature. MOFs have been developed for use in a wide array of applications …
The electrochemical reduction of CO2 to diverse value‐added chemicals is a unique, environmentally friendly approach for curbing greenhouse gas emissions while addressing …
The production of metal–organic frameworks (MOFs) in the form of colloids has brought a paradigm shift in the design of new functional porous materials. Along with their intrinsic …
Metal organic framework (MOF) membranes have gained more attentions due to their abilities in various applications in gas and liquid separations. The majority of works are …
CO2 emission has raised worldwide concerns because of its potential effects on climate change, species extinction, and plant nutrition deterioration. Metal–organic frameworks …
S Dou, J Song, S Xi, Y Du, J Wang… - Angewandte Chemie …, 2019 - Wiley Online Library
Electrochemical CO2 reduction relies on the availability of highly efficient and selective catalysts. Herein, we report a general strategy to boost the activity of metal–organic …
Metal–organic frameworks are considered as prospering photocatalysts, which can potentially generate high CO2 removal capacity arising from their large pores and great …
Enhancing the enzymatic activity inside metal–organic frameworks (MOFs) is a critical challenge in chemical technology and bio-technology, which, if addressed, will broaden …
Metal–organic frameworks (MOFs) are a class of coordination polymers, consisting of metal ions or clusters linked together by chemically mutable organic groups. In contrast to zeolites …