演讲嘉宾-赵青山

赵青山
中国石油大学(华东)化学工程学院、讲师
  赵青山,2015年毕业于天津大学,化学工程博士,2015年7月至今现为中国石油大学(华东)化学工程系讲师,主要研究方向为新型碳纳米材料在非均相催化中的绿色应用探索,在Nanoscale、Scientific Reports、 Journal of Material Chemistry A、Industrial & Engerring Chemistry Research 等国际著名刊物上发表研究论文15篇,影响因子总和75,主持和参与省部级以上科研项目6项。
演讲题目:Design of Efficient Synergetic Catalytic System based on Graphene Platform
主题会场石墨烯在催化剂领域的应用
开始时间
结束时间
内容摘要

Synergistic catalysis is a synthetic strategy wherein both the nucleophile and the electrophile are simultaneously activated by two separate and distinct catalysts to afford a single chemical transformation[1]. This powerful catalysis strategy can not only introduce previously unattainable chemical transformations, but also improve the catalytic efficiency of existing transformations. Herein, we demonstrated a facile strategy of merging an organic amine with palladium complex on graphene oxide (GO) as a synergetic and recyclable catalyst for Tsuji-Trost allylation coupling. Through silylation modification with [3-(diethylamino) propyl] trimethoxysilane  and 3-(2-aminoethylamino) propyl trimethoxysilane, followed by a coordination process, a tertiary amine and palladium-diamine complex were simultaneously immobilized onto the GO support (GO–NEt2–2N–Pd)[2]. Fourier transform infrared spectroscopy (FTIR), X-ray photoelectron spectroscopy (XPS), scanning electron microscopy (SEM), energy dispersive X-ray spectroscopy (EDS) mapping and transmission electron microscopy (TEM) confirm the successful preparation of the designed catalyst. Systematic investigation revealed the palladium-diamine complex was effective for Tsuji-Trost allylation of allyl methyl carbonate with ethyl acetoacetate, resulting in a 44.52% yield in 5 h. When the tertiary amine was introduced, the conversion reached up to 91.85% within the same time, with a yield of 87.67% and 4.18% for the monoallylation and diallylation product, respectively, revealing the obvious promotion effect of the introduced tertiary amine. The catalyst could be readily recovered and recycled for at least five times without reduction of catalytic activity. The excellent performance of GO–NEt2–2N–Pd should be ascribed to the neighborhood catalytic environment, the cooperative dual effect, as well as the robust immobilization interaction. The graphene-based support serves as an ideal platform to merge the two catalytic species together. What is more important, it provides a bridge for the combination of transition metal catalysis and organocatalysis. 

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400-110-3655   

E-mail: meeting@c-gia.cn   meeting01@c-gia.cn

参展电话:13646399362(苏老师)

主讲申请:19991951101(王老师)

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凯发_赵青山

凯发

演讲嘉宾-赵青山

赵青山
中国石油大学(华东)化学工程学院、讲师
  赵青山,2015年毕业于天津大学,化学工程博士,2015年7月至今现为中国石油大学(华东)化学工程系讲师,主要研究方向为新型碳纳米材料在非均相催化中的绿色应用探索,在Nanoscale、Scientific Reports、 Journal of Material Chemistry A、Industrial & Engerring Chemistry Research 等国际著名刊物上发表研究论文15篇,影响因子总和75,主持和参与省部级以上科研项目6项。
演讲题目:Design of Efficient Synergetic Catalytic System based on Graphene Platform
主题会场石墨烯在催化剂领域的应用
开始时间
结束时间
内容摘要

Synergistic catalysis is a synthetic strategy wherein both the nucleophile and the electrophile are simultaneously activated by two separate and distinct catalysts to afford a single chemical transformation[1]. This powerful catalysis strategy can not only introduce previously unattainable chemical transformations, but also improve the catalytic efficiency of existing transformations. Herein, we demonstrated a facile strategy of merging an organic amine with palladium complex on graphene oxide (GO) as a synergetic and recyclable catalyst for Tsuji-Trost allylation coupling. Through silylation modification with [3-(diethylamino) propyl] trimethoxysilane  and 3-(2-aminoethylamino) propyl trimethoxysilane, followed by a coordination process, a tertiary amine and palladium-diamine complex were simultaneously immobilized onto the GO support (GO–NEt2–2N–Pd)[2]. Fourier transform infrared spectroscopy (FTIR), X-ray photoelectron spectroscopy (XPS), scanning electron microscopy (SEM), energy dispersive X-ray spectroscopy (EDS) mapping and transmission electron microscopy (TEM) confirm the successful preparation of the designed catalyst. Systematic investigation revealed the palladium-diamine complex was effective for Tsuji-Trost allylation of allyl methyl carbonate with ethyl acetoacetate, resulting in a 44.52% yield in 5 h. When the tertiary amine was introduced, the conversion reached up to 91.85% within the same time, with a yield of 87.67% and 4.18% for the monoallylation and diallylation product, respectively, revealing the obvious promotion effect of the introduced tertiary amine. The catalyst could be readily recovered and recycled for at least five times without reduction of catalytic activity. The excellent performance of GO–NEt2–2N–Pd should be ascribed to the neighborhood catalytic environment, the cooperative dual effect, as well as the robust immobilization interaction. The graphene-based support serves as an ideal platform to merge the two catalytic species together. What is more important, it provides a bridge for the combination of transition metal catalysis and organocatalysis. 

关于主办方

联系我们
400-110-3655   

E-mail: meeting@c-gia.cn   meeting01@c-gia.cn

参展电话:13646399362(苏老师)

主讲申请:19991951101(王老师)

官方微信订阅号
Copyright © 中国国际石墨烯创新大会 版权所有     运营机构:北京现代华清材料科技发展有限责任公司
grapchina.org 京ICP备10026874号-12   grapchina.cn 京ICP备10026874号-23
京公网安备 11010802023402号
分享到: