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Importance of V^(4)and optimal acid environment in the hydroxylation of inert benzene via activation of C_(sp2)-H bond
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作者 Peng Dong Yang Xin +6 位作者 Yanwei Li Xiaohui zhang Xiaorui Wang Yu Zhao dongqiang zhang Haowen Ma Guixian Li 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2024年第10期216-226,共11页
Hydroxylation of inert benzene through the activation of the C_(sp2)-H bond is a representative reaction about the transformation of CeH bonds to C-O bonds,which has far-reaching guiding significance but remains a cha... Hydroxylation of inert benzene through the activation of the C_(sp2)-H bond is a representative reaction about the transformation of CeH bonds to C-O bonds,which has far-reaching guiding significance but remains a challenging scientific problem.To overcome this problem,a series of VOx-Ga_(2)O_(3)/SiO_(2)-Al_(2)O_(3)were prepared to achieve an efficient and economical hydroxylation path of benzene to phenol.The results showed that the phenol yield was 72.89%(selectivity>98.1%)under the optimum conditions.The reason is that the CeH bond in the benzene ring is activated by heterolysis over a VOx-Ga_(2)O_(3)/SiO_(2)-Al_(2)O_(3)catalyst.Meanwhile,the introduction of aluminum(Al)and gallium(Ga)made a qualitative change in the catalyst,enhancing the electron motion and spin motion of vanadium species,resulting in the increase of V4^(+)/V5^(+)ratio.In addition,the catalyst can provide an optimal acidic environment and a threedimensional cross-linked surface structure that facilitates product diffusion. 展开更多
关键词 C_(sp2)-H activation V4^(+)/V5^(+)ratio Acid microenvironment Catalysis Support Catalyst activation
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