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首页> 外文期刊>Catalysis science & technology >Photocatalytic one-pot alkylation of nitrobenzene with benzyl alcohol for the precise synthesis of N-benzylideneaniline over F-doped Bi2MoO6 nanosheets
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Photocatalytic one-pot alkylation of nitrobenzene with benzyl alcohol for the precise synthesis of N-benzylideneaniline over F-doped Bi2MoO6 nanosheets

机译:Photocatalytic one-pot alkylation of nitrobenzene with benzyl alcohol for the precise synthesis of N-benzylideneaniline over F-doped Bi2MoO6 nanosheets

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摘要

Monolayer Bi2MoO6 nanosheets doped with F atoms (F-BMO-NSs) were developed as catalysts for the one-pot alkylation of nitrobenzene with benzyl alcohol. 95.88% conversion of nitrobenzene coupled with 99.98% selectivity of n-benzylideneaniline was achieved over the F0.04-BMO-NSs under visible light irradiation and 1 atm N2 at room temperature. XPS and EPR results suggested that F doping not only produced enhanced Lewis acid sites (Bi3+ and Mo6+), but also generated Lewis base sites (Mo5+). In situ FTIR spectra revealed that benzyl alcohol would be selectively adsorbed on the enhanced Lewis acid sites via Bi3+ (Mo6+)?OH-C- interface coordination, resulting in the activation of HO-C-. Moreover, nitrobenzene would be chemisorbed on the Mo5+ basic sites via Mo5+?NO2 coordination, inducing charge transfer from Mo5+ to -NO2. Under visible light irradiation, hydrogen transfer takes place from the chemisorbed benzyl alcohol to nitrobenzene generating benzaldehyde and aniline, finally coupling to form the imine. Based on these surface cooperated functional sites, a synergistic mechanism has been proposed to elucidate the accurate structure-performance relationship. This work provides a new perspective for the design of high activity, high selectivity and high stability photocatalysts for the precise synthesis of imines.
机译:单层Bi2MoO6 nanosheets掺杂F原子(F-BMO-NSs)发展的催化剂锅烷基化与苄硝基苯酒精。加上99.98%的选择性n-benzylideneaniline得以实现的F0.04-BMO-NSs可见光照射下在室温下1 atm N2。建议F掺杂不仅产生了增强的路易斯酸(Bi3 +和Mo6 +)网站,但是还生成路易斯碱(Mo5 +)的网站。红外光谱显示,苯甲醇选择性地吸附在增强的刘易斯酸网站通过Bi3 + (Mo6 +) ?协调,导致激活的HO-C -。吸附在Mo5 +基本通过Mo5 +网站吗?协调,从Mo5 +诱导电荷转移二氧化氮。氢转移发生硝基苯化学吸附苯甲醇最后生成苯甲醛、苯胺耦合形成亚胺。表面功能的网站合作,协同机制被提出说明准确的结构性能的关系。角度设计的高活动、高选择性和高稳定性的催化剂精确的亚胺的合成。

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