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Catalytic Oxidative Cleavage of C(OH)-C Bonds in Lignin Model Compounds to Carboxylic Acids by Fe(NO(3))(3).9H(2)O/NaI/DMSO

The secondary C(OH)-C bonds are abundant in biomass such as lignin and cellulose. Thus, selective cleavage of the C(OH)-C bonds into value chemicals attracted much attention. Molecular iodine has received considerable attention as an inexpensive and readily available catalyst to yield the correspond...

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Autores principales: Wang, Xuerong, Sun, Huilin, Li, Caicui, Niu, Shuijiao, Gao, Yu, Chen, Ying, Xu, Tianwei, Wang, Jinhui, Xu, Huanjun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9283955/
https://www.ncbi.nlm.nih.gov/pubmed/35844649
http://dx.doi.org/10.3389/fchem.2022.933763
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author Wang, Xuerong
Sun, Huilin
Li, Caicui
Niu, Shuijiao
Gao, Yu
Chen, Ying
Xu, Tianwei
Wang, Jinhui
Xu, Huanjun
author_facet Wang, Xuerong
Sun, Huilin
Li, Caicui
Niu, Shuijiao
Gao, Yu
Chen, Ying
Xu, Tianwei
Wang, Jinhui
Xu, Huanjun
author_sort Wang, Xuerong
collection PubMed
description The secondary C(OH)-C bonds are abundant in biomass such as lignin and cellulose. Thus, selective cleavage of the C(OH)-C bonds into value chemicals attracted much attention. Molecular iodine has received considerable attention as an inexpensive and readily available catalyst to yield the corresponding products in excellent yields with high selectivity, but it is highly corrosive and toxic, making its use somewhat unattractive. In this study, I(2) was generated in situ from Fe(NO(3))(3).9H(2)O/NaI, which was further combined with Fe(NO(3))(3).9H(2)O to catalyze the oxidation process. In the reaction, the H(2)O molecule from the reaction and Fe(NO(3))(3).9H(2)O attacked the phenylglyoxal to form benzaldehyde, which was further oxidized to benzoic acid. Aryl primary and secondary benzylic alcohols from lignin were successfully transformed into aryl carboxylic acids by Fe(NO(3))(3).9H(2)O/NaI/DMSO. The catalytic system was green and efficient, avoiding the usage of toxic and corrosive molecular I(2). From the experiments, it was clear that the yield of the product from the substrates with an electron-donating group was higher than that of electron-withdrawing substituted substrates, which was similar to the aryl secondary alcohols. Aryl alkyl ketones were also successfully conducted by the Fe(NO(3))(3).9H(2)O/NaI/DMSO catalytic system.
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spelling pubmed-92839552022-07-16 Catalytic Oxidative Cleavage of C(OH)-C Bonds in Lignin Model Compounds to Carboxylic Acids by Fe(NO(3))(3).9H(2)O/NaI/DMSO Wang, Xuerong Sun, Huilin Li, Caicui Niu, Shuijiao Gao, Yu Chen, Ying Xu, Tianwei Wang, Jinhui Xu, Huanjun Front Chem Chemistry The secondary C(OH)-C bonds are abundant in biomass such as lignin and cellulose. Thus, selective cleavage of the C(OH)-C bonds into value chemicals attracted much attention. Molecular iodine has received considerable attention as an inexpensive and readily available catalyst to yield the corresponding products in excellent yields with high selectivity, but it is highly corrosive and toxic, making its use somewhat unattractive. In this study, I(2) was generated in situ from Fe(NO(3))(3).9H(2)O/NaI, which was further combined with Fe(NO(3))(3).9H(2)O to catalyze the oxidation process. In the reaction, the H(2)O molecule from the reaction and Fe(NO(3))(3).9H(2)O attacked the phenylglyoxal to form benzaldehyde, which was further oxidized to benzoic acid. Aryl primary and secondary benzylic alcohols from lignin were successfully transformed into aryl carboxylic acids by Fe(NO(3))(3).9H(2)O/NaI/DMSO. The catalytic system was green and efficient, avoiding the usage of toxic and corrosive molecular I(2). From the experiments, it was clear that the yield of the product from the substrates with an electron-donating group was higher than that of electron-withdrawing substituted substrates, which was similar to the aryl secondary alcohols. Aryl alkyl ketones were also successfully conducted by the Fe(NO(3))(3).9H(2)O/NaI/DMSO catalytic system. Frontiers Media S.A. 2022-07-01 /pmc/articles/PMC9283955/ /pubmed/35844649 http://dx.doi.org/10.3389/fchem.2022.933763 Text en Copyright © 2022 Wang, Sun, Li, Niu, Gao, Chen, Xu, Wang and Xu. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Chemistry
Wang, Xuerong
Sun, Huilin
Li, Caicui
Niu, Shuijiao
Gao, Yu
Chen, Ying
Xu, Tianwei
Wang, Jinhui
Xu, Huanjun
Catalytic Oxidative Cleavage of C(OH)-C Bonds in Lignin Model Compounds to Carboxylic Acids by Fe(NO(3))(3).9H(2)O/NaI/DMSO
title Catalytic Oxidative Cleavage of C(OH)-C Bonds in Lignin Model Compounds to Carboxylic Acids by Fe(NO(3))(3).9H(2)O/NaI/DMSO
title_full Catalytic Oxidative Cleavage of C(OH)-C Bonds in Lignin Model Compounds to Carboxylic Acids by Fe(NO(3))(3).9H(2)O/NaI/DMSO
title_fullStr Catalytic Oxidative Cleavage of C(OH)-C Bonds in Lignin Model Compounds to Carboxylic Acids by Fe(NO(3))(3).9H(2)O/NaI/DMSO
title_full_unstemmed Catalytic Oxidative Cleavage of C(OH)-C Bonds in Lignin Model Compounds to Carboxylic Acids by Fe(NO(3))(3).9H(2)O/NaI/DMSO
title_short Catalytic Oxidative Cleavage of C(OH)-C Bonds in Lignin Model Compounds to Carboxylic Acids by Fe(NO(3))(3).9H(2)O/NaI/DMSO
title_sort catalytic oxidative cleavage of c(oh)-c bonds in lignin model compounds to carboxylic acids by fe(no(3))(3).9h(2)o/nai/dmso
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9283955/
https://www.ncbi.nlm.nih.gov/pubmed/35844649
http://dx.doi.org/10.3389/fchem.2022.933763
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