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Direct transformation of dinitrogen: synthesis of N-containing organic compounds via N−C bond formation

N-containing organic compounds are of vital importance to lives. Practical synthesis of valuable N-containing organic compounds directly from dinitrogen (N(2)), not through ammonia (NH(3)), is a holy-grail in chemistry and chemical industry. An essential step for this transformation is the functiona...

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Autores principales: Lv, Ze-Jie, Wei, Junnian, Zhang, Wen-Xiong, Chen, Ping, Deng, Dehui, Shi, Zhang-Jie, Xi, Zhenfeng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8288816/
https://www.ncbi.nlm.nih.gov/pubmed/34691489
http://dx.doi.org/10.1093/nsr/nwaa142
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author Lv, Ze-Jie
Wei, Junnian
Zhang, Wen-Xiong
Chen, Ping
Deng, Dehui
Shi, Zhang-Jie
Xi, Zhenfeng
author_facet Lv, Ze-Jie
Wei, Junnian
Zhang, Wen-Xiong
Chen, Ping
Deng, Dehui
Shi, Zhang-Jie
Xi, Zhenfeng
author_sort Lv, Ze-Jie
collection PubMed
description N-containing organic compounds are of vital importance to lives. Practical synthesis of valuable N-containing organic compounds directly from dinitrogen (N(2)), not through ammonia (NH(3)), is a holy-grail in chemistry and chemical industry. An essential step for this transformation is the functionalization of the activated N(2) units/ligands to generate N−C bonds. Pioneering works of transition metal-mediated direct conversion of N(2) into organic compounds via N−C bond formation at metal-dinitrogen [N(2)-M] complexes have generated diversified coordination modes and laid the foundation of understanding for the N−C bond formation mechanism. This review summarizes those major achievements and is organized by the coordination modes of the [N(2)-M] complexes (end-on, side-on, end-on-side-on, etc.) that are involved in the N−C bond formation steps, and each part is arranged in terms of reaction types (N-alkylation, N-acylation, cycloaddition, insertion, etc.) between [N(2)-M] complexes and carbon-based substrates. Additionally, earlier works on one-pot synthesis of organic compounds from N(2) via ill-defined intermediates are also briefed. Although almost all of the syntheses of N-containing organic compounds via direct transformation of N(2) so far in the literature are realized in homogeneous stoichiometric thermochemical reaction systems and are discussed here in detail, the sporadically reported syntheses involving photochemical, electrochemical, heterogeneous thermo-catalytic reactions, if any, are also mentioned. This review aims to provide readers with an in-depth understanding of the state-of-the-art and perspectives of future research particularly in direct catalytic and efficient conversion of N(2) into N-containing organic compounds under mild conditions, and to stimulate more research efforts to tackle this long-standing and grand scientific challenge.
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spelling pubmed-82888162021-10-21 Direct transformation of dinitrogen: synthesis of N-containing organic compounds via N−C bond formation Lv, Ze-Jie Wei, Junnian Zhang, Wen-Xiong Chen, Ping Deng, Dehui Shi, Zhang-Jie Xi, Zhenfeng Natl Sci Rev Review N-containing organic compounds are of vital importance to lives. Practical synthesis of valuable N-containing organic compounds directly from dinitrogen (N(2)), not through ammonia (NH(3)), is a holy-grail in chemistry and chemical industry. An essential step for this transformation is the functionalization of the activated N(2) units/ligands to generate N−C bonds. Pioneering works of transition metal-mediated direct conversion of N(2) into organic compounds via N−C bond formation at metal-dinitrogen [N(2)-M] complexes have generated diversified coordination modes and laid the foundation of understanding for the N−C bond formation mechanism. This review summarizes those major achievements and is organized by the coordination modes of the [N(2)-M] complexes (end-on, side-on, end-on-side-on, etc.) that are involved in the N−C bond formation steps, and each part is arranged in terms of reaction types (N-alkylation, N-acylation, cycloaddition, insertion, etc.) between [N(2)-M] complexes and carbon-based substrates. Additionally, earlier works on one-pot synthesis of organic compounds from N(2) via ill-defined intermediates are also briefed. Although almost all of the syntheses of N-containing organic compounds via direct transformation of N(2) so far in the literature are realized in homogeneous stoichiometric thermochemical reaction systems and are discussed here in detail, the sporadically reported syntheses involving photochemical, electrochemical, heterogeneous thermo-catalytic reactions, if any, are also mentioned. This review aims to provide readers with an in-depth understanding of the state-of-the-art and perspectives of future research particularly in direct catalytic and efficient conversion of N(2) into N-containing organic compounds under mild conditions, and to stimulate more research efforts to tackle this long-standing and grand scientific challenge. Oxford University Press 2020-06-23 /pmc/articles/PMC8288816/ /pubmed/34691489 http://dx.doi.org/10.1093/nsr/nwaa142 Text en © The Author(s) 2020. Published by Oxford University Press on behalf of China Science Publishing & Media Ltd. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Review
Lv, Ze-Jie
Wei, Junnian
Zhang, Wen-Xiong
Chen, Ping
Deng, Dehui
Shi, Zhang-Jie
Xi, Zhenfeng
Direct transformation of dinitrogen: synthesis of N-containing organic compounds via N−C bond formation
title Direct transformation of dinitrogen: synthesis of N-containing organic compounds via N−C bond formation
title_full Direct transformation of dinitrogen: synthesis of N-containing organic compounds via N−C bond formation
title_fullStr Direct transformation of dinitrogen: synthesis of N-containing organic compounds via N−C bond formation
title_full_unstemmed Direct transformation of dinitrogen: synthesis of N-containing organic compounds via N−C bond formation
title_short Direct transformation of dinitrogen: synthesis of N-containing organic compounds via N−C bond formation
title_sort direct transformation of dinitrogen: synthesis of n-containing organic compounds via n−c bond formation
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8288816/
https://www.ncbi.nlm.nih.gov/pubmed/34691489
http://dx.doi.org/10.1093/nsr/nwaa142
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