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Unlocking Catalytic Activity via Tuning Fe 3d Spin State in Fe Dual-Atom Nanozymes with Atomically Dispersed Fe2-N6 Configurations for Reprogramming Immuno-Redox Microenvironment in Rheumatoid Arthritis

2026-08-07

Abstract excerpt

<title>Abstract</title> <p> Single-atom nanozymes hold great promise for treating reactive oxygen species (ROS)-driven inflammatory diseases, yet their catalytic activity remains limited by unfavorable spin configurations and strong adsorption of reaction intermediates. Here, we report a rational design of high-spin Fe dual-atom nanozymes (HS Fe <sub>2</sub> -N <sub>6</sub> /DANs) with atomically dispersed F...

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Literature Corpus work
7c510d1d-b9ac-55ca-918f-71755ce6e989
DOI
10.21203/rs.3.rs-10554638/v1
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Unlocking Catalytic Activity via Tuning Fe 3d Spin State in Fe Dual-Atom Nanozymes with Atomically Dispersed Fe2-N6 Configurations for Reprogramming Immuno-Redox Microenvironment in Rheumatoid ArthritisDOI 10.21203/rs.3.rs-10554638/v1
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