演讲嘉宾-王丁

王丁
上海理工大学 讲师
  日本文部省政府奖学金获得者,纳米新机能材料科学博士,现任教于上海理工大学材料科学与工程学院。
  主要研究方向为石墨烯基催化剂及半导体气敏材料。主持国家自然科学基金项目一项,中国石油大学开放性课题一项,在ACS catalysis,Chemsuschem, Nanoscale等期刊发表SCI论文15篇,他引次数超过300次。
演讲题目:Pt Nanocatalysts Supported on Reduced Graphene Oxide for Conversion of Biomass
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

Pt nanocatalysts loaded on reduced graphene oxide (Pt/RGO) were prepared by means of a convenient microwave-assisted reduction approach with ethylene glycol as reductant.[1] The conversion of cellulose or cellobiose into sorbitol was used as an application reaction to investigate their catalytic performance. Various metal nanocatalysts loaded on RGO were compared and RGO-supported Pt exhibited the highest catalytic activity with 91.5% of sorbitol yield from cellobiose. The catalytic performances of Pt nanocatalysts supported on different carbon materials or on silica support were also compared. The results showed that RGO was the best catalyst support, and the yield of sorbitol was as high as 91.5% from cellobiose and 58.9% from cellulose, respectively. The improvement of catalytic activity was attributed to the appropriate Pt particle size and hydrogen spillover effect of Pt/RGO catalyst. Interestingly, the size and dispersion of supported Pt particles could be easily regulated by convenient adjustment of the microwave heating temperature. The catalytic performance was found to initially increase and then decrease with increasing particle size. The optimum Pt particle size was 3.6 nm. These findings may offer useful guidelines for designing novel catalysts with beneficial catalytic performance for biomass conversion.[2]

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凯发_王丁

凯发

演讲嘉宾-王丁

王丁
上海理工大学 讲师
  日本文部省政府奖学金获得者,纳米新机能材料科学博士,现任教于上海理工大学材料科学与工程学院。
  主要研究方向为石墨烯基催化剂及半导体气敏材料。主持国家自然科学基金项目一项,中国石油大学开放性课题一项,在ACS catalysis,Chemsuschem, Nanoscale等期刊发表SCI论文15篇,他引次数超过300次。
演讲题目:Pt Nanocatalysts Supported on Reduced Graphene Oxide for Conversion of Biomass
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

Pt nanocatalysts loaded on reduced graphene oxide (Pt/RGO) were prepared by means of a convenient microwave-assisted reduction approach with ethylene glycol as reductant.[1] The conversion of cellulose or cellobiose into sorbitol was used as an application reaction to investigate their catalytic performance. Various metal nanocatalysts loaded on RGO were compared and RGO-supported Pt exhibited the highest catalytic activity with 91.5% of sorbitol yield from cellobiose. The catalytic performances of Pt nanocatalysts supported on different carbon materials or on silica support were also compared. The results showed that RGO was the best catalyst support, and the yield of sorbitol was as high as 91.5% from cellobiose and 58.9% from cellulose, respectively. The improvement of catalytic activity was attributed to the appropriate Pt particle size and hydrogen spillover effect of Pt/RGO catalyst. Interestingly, the size and dispersion of supported Pt particles could be easily regulated by convenient adjustment of the microwave heating temperature. The catalytic performance was found to initially increase and then decrease with increasing particle size. The optimum Pt particle size was 3.6 nm. These findings may offer useful guidelines for designing novel catalysts with beneficial catalytic performance for biomass conversion.[2]

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: