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First-row transition metal (de) hydrogenation catalysis based on functional pincer ligands
L Alig, M Fritz, S Schneider - Chemical reviews, 2018 - ACS Publications
The use of 3d metals in de/hydrogenation catalysis has emerged as a competitive field with
respect to “traditional” precious metal catalyzed transformations. The introduction of …
respect to “traditional” precious metal catalyzed transformations. The introduction of …
Metal-coordinated azoaromatics: Strategies for sequential azo-reduction, isomerization and application potential
Reversible electron reservoir feature of redox non-innocent ligand is an important event from
the broader perspectives of metal–ligand cooperativity in catalysis as well as in introducing …
the broader perspectives of metal–ligand cooperativity in catalysis as well as in introducing …
Robust resistive memory devices using solution-processable metal-coordinated azo aromatics
Non-volatile memories will play a decisive role in the next generation of digital technology.
Flash memories are currently the key player in the field, yet they fail to meet the commercial …
Flash memories are currently the key player in the field, yet they fail to meet the commercial …
Radical‐type reactivity and catalysis by single‐electron transfer to or from redox‐active ligands
JI van der Vlugt - Chemistry–A European Journal, 2019 - Wiley Online Library
Controlled ligand‐based redox‐activity and chemical non‐innocence are rapidly gaining
importance for selective (catalytic) processes. This Concept aims to provide an overview of …
importance for selective (catalytic) processes. This Concept aims to provide an overview of …
Charge disproportionate molecular redox for discrete memristive and memcapacitive switching
Electronic symmetry breaking by charge disproportionation results in multifaceted changes
in the electronic, magnetic and optical properties of a material, triggering ferroelectricity …
in the electronic, magnetic and optical properties of a material, triggering ferroelectricity …
Alcohol Dehydrogenation-Triggered Selective C3-Alkylation of Indoles by Homogeneous Azo-aromatic Cobalt Catalysts
Herein, we report azo-benzimidazole containing cobalt complexes (1–3) for alcohol
dehydrogenation-triggered C3-alkylation of indoles. In complexes 1–3, ligands are redox …
dehydrogenation-triggered C3-alkylation of indoles. In complexes 1–3, ligands are redox …
Redox noninnocent azo-aromatic pincers and their iron complexes. Isolation, characterization, and catalytic alcohol oxidation
The new redox-noninnocent azoaromatic pincers 2-(arylazo)-1, 10-phenanthroline (L1) and
2, 9-bis (phenyldiazo)-1, 10-phenanthroline (L2) are reported. The ligand L1 is a tridentate …
2, 9-bis (phenyldiazo)-1, 10-phenanthroline (L2) are reported. The ligand L1 is a tridentate …
Electron transfer catalysis mediated by 3d complexes of redox non-innocent ligands possessing an azo function: a perspective
It was first reported almost two decades ago that ligands with azo functions are capable of
accepting electron (s) upon coordination to produce azo-anion radical complexes, thereby …
accepting electron (s) upon coordination to produce azo-anion radical complexes, thereby …
Exclusively ligand-mediated catalytic dehydrogenation of alcohols
Design of an efficient new catalyst that can mimic the enzymatic pathway for catalytic
dehydrogenation of liquid fuels like alcohols is described in this report. The catalyst is a …
dehydrogenation of liquid fuels like alcohols is described in this report. The catalyst is a …
An azoaromatic ligand as four electron four proton reservoir: catalytic dehydrogenation of alcohols by its zinc (II) complex
Electroprotic storage materials, though invaluable in energy-related research, are scanty
among non-natural compounds. Herein, we report a zinc (II) complex of the ligand 2, 6-bis …
among non-natural compounds. Herein, we report a zinc (II) complex of the ligand 2, 6-bis …