Facilely tuning the first-shell coordination microenvironment in iron single-atom for Fenton-like chemistry toward highly efficient wastewater purification

Z Wu, B Huang, X Wang, CS He, Y Liu… - Environmental …, 2023 - ACS Publications
Precisely identifying the atomic structures in single-atom sites and establishing authentic
structure–activity relationships for single-atom catalyst (SAC) coordination are significant …

[引用][C] Facilely Tuning the First-Shell Coordination Microenvironment in Iron Single-Atom for Fenton-like Chemistry toward Highly Efficient Wastewater Purification

Z Wu, B Huang, X Wang, CS He, Y Liu… - Environmental …, 2023 - ui.adsabs.harvard.edu
Facilely Tuning the First-Shell Coordination Microenvironment in Iron Single-Atom for
Fenton-like Chemistry toward Highly Efficient Wastewater Purification - NASA/ADS Now on …

Facilely Tuning the First-Shell Coordination Microenvironment in Iron Single-Atom for Fenton-like Chemistry toward Highly Efficient Wastewater Purification

Z Wu, B Huang, X Wang, CS He… - Environmental …, 2023 - pubmed.ncbi.nlm.nih.gov
Precisely identifying the atomic structures in single-atom sites and establishing authentic
structure-activity relationships for single-atom catalyst (SAC) coordination are significant …

Facilely Tuning the First-Shell Coordination Microenvironment in Iron Single-Atom for Fenton-like Chemistry toward Highly Efficient Wastewater Purification.

Z Wu, B Huang, X Wang, CS He, Y Liu… - Environmental …, 2023 - europepmc.org
Precisely identifying the atomic structures in single-atom sites and establishing authentic
structure-activity relationships for single-atom catalyst (SAC) coordination are significant …