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Ligand stabilized MnLm NCs (M: noble metal; n: number of metal atoms, n < 150; L: ligand; m: number of ligands) have a long history in catalysis, but recent advances in synthetic strategies and instrumental characterization have led to a renaissance in the catalytic applications of MnLm NCs.
ORR intermediates for the current N doped as well as prior reported B doped Gy/Gdy systems are found to follow a linear scaling relation akin to those reported for transition metal, N doped graphene etc. that facilitated isolation of a single descriptor which is used to compare their electrocatalytic activities.
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The title complex represents a new example of introducing the metal N-heterocyclic multi-carboxylic acid frameworks into POMs chemistry.
Herein, we report the synthesis and X-ray structural analysis of a collection of fluorinated metal N-heterocyclic carbenes (Ag, Au, Pd, Rh, Ir) and their precursor salts.
Based on Keggin-anions being immobilized as part of the metal N-heterocyclic multi-carboxylic acid framework, the title complex realizes four approaches in the 1D hydrophilic channel used to engender proton conductivity in MOFs.
Recently, Metal N-heterocyclic carbene (M-NHC) complexes appeared as an emerging field of research in medicinal chemistry.
To identify in-vivo evidence of a metal N-terminal huntingtin interaction we determined if mutant huntingtin distribution co-localizes with increases in metal levels in brains of 12-week-old R6/2 HD mice.
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