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Reduction of nitro compounds using 3d-non-noble metal catalysts
D Formenti, F Ferretti, FK Scharnagl, M Beller - Chemical reviews, 2018 - ACS Publications
The reduction of nitro compounds to the corresponding amines is one of the most utilized
catalytic processes in the fine and bulk chemical industry. The latest development of …
catalytic processes in the fine and bulk chemical industry. The latest development of …
Advancement in methodologies for reduction of nitroarenes
The importance of aryl amines as raw materials for various applications has spurred
extensive research in develo** economic processes for the reduction of nitroarenes …
extensive research in develo** economic processes for the reduction of nitroarenes …
Nitroarenes and nitroalkenes as potential amino sources for the synthesis of N-heterocycles
D Zou, W Wang, Y Hu, T Jia - Organic & Biomolecular Chemistry, 2023 - pubs.rsc.org
Nitro-compounds are one of the cheapest and most readily available materials in the
chemical industry and are commonly utilized as versatile building blocks. Previously, the …
chemical industry and are commonly utilized as versatile building blocks. Previously, the …
A MOF-derived Co–CoO@ N-doped porous carbon for efficient tandem catalysis: dehydrogenation of ammonia borane and hydrogenation of nitro compounds
The one-step pyrolysis of a zeolite-type metal–organic framework, Co (2-methylimidazole) 2
(ZIF-67), produces an N-doped porous carbon incorporating well-dispersed Co/CoO …
(ZIF-67), produces an N-doped porous carbon incorporating well-dispersed Co/CoO …
A critical review on the role of carbon supports of metal catalysts for selective catalytic hydrogenation of chloronitrobenzenes
Hydrogenation of chloronitrobenzenes (CNB) emerges as a prominent topic of interest in
catalysis research owing to its enormous industrial importance. However, hydrogenation of …
catalysis research owing to its enormous industrial importance. However, hydrogenation of …
A metal–organic framework-templated synthesis of γ-Fe 2 O 3 nanoparticles encapsulated in porous carbon for efficient and chemoselective hydrogenation of nitro …
The γ-Fe2O3 nanoparticles well dispersed in porous carbon were fabricated via a Fe-based
metal–organic framework-templated pyrolysis. The resultant product exhibits excellent …
metal–organic framework-templated pyrolysis. The resultant product exhibits excellent …
Elemental Sulfur Disproportionation in the Redox Condensation Reaction between o‐Halonitrobenzenes and Benzylamines
TB Nguyen, L Ermolenko, P Retailleau… - Angewandte …, 2014 - Wiley Online Library
The disproportionation of elemental sulfur at moderate temperatures is investigated in the
redox condensation involving o‐halonitrobenzenes 1 and benzylamines 2. As a redox …
redox condensation involving o‐halonitrobenzenes 1 and benzylamines 2. As a redox …
Catalytic reduction of 2-nitroaniline: a review
nitroaniline (2-NA) is highly toxic and environmental contaminant. It is reduced to less toxic
and environmental benign product o-phenylenediamine by using different reducing agents …
and environmental benign product o-phenylenediamine by using different reducing agents …
Rational Control of the Selectivity of a Ruthenium Catalyst for Hydrogenation of 4‐Nitrostyrene by Strain Regulation
J Mao, W Chen, W Sun, Z Chen, J Pei… - Angewandte Chemie …, 2017 - Wiley Online Library
Tuning the selectivity of metal catalysts is of paramount importance yet a great challenge. A
new strategy to effectively control the selectivity of metal catalysts, by tuning the lattice strain …
new strategy to effectively control the selectivity of metal catalysts, by tuning the lattice strain …
Insights into the mechanism of nitrobenzene reduction to aniline over Pt catalyst and the significance of the adsorption of phenyl group on kinetics
Abstract Aniline (C 6 H 5 NH 2) plays a significant role in both industry and daily life, and can
be synthesized via catalytic hydrogenation of nitrobenzene (C 6 H 5 NO 2) over transition …
be synthesized via catalytic hydrogenation of nitrobenzene (C 6 H 5 NO 2) over transition …