演讲嘉宾-Pedro Gómez-Romero

Pedro Gómez-Romero
加泰罗尼亚纳米科学和纳米技术研究所

Pedro Gómez-Romero是西班牙巴塞罗那材料科学研究所的一个高级研究科学家,他领导的课题组从事导电高分子与氧化物、团簇和活性分子的纳米复合物杂化材料的研究,并开发其在能量存储和转换应用领域如燃料电池、锂离子电池和超级电容器的应用。

他在瓦伦西亚大学取得了学士和硕士学位,在美国乔治敦大学获得了化学博士学位。1998年至1999年,他在北大西洋公约组织(NATO)担任高级研究员,期间在美国GODDEN公司的可再生能源实验室做访问科学家。除了科研之外,Pedro Gómez-Romero博士喜欢具有创造性科普活动,他出版了一百多个科学版物,并撰写了一本获奖图书和许多科普文章。

Pedro Gómez-Romero是美国科学促进协会成员,美国化学学会、材料研究学会和电化学学会的成员。

演讲题目:Hybrid Graphene Supercapacitors. From solid to liquid electrodes.
主题会场石墨烯在超级电容器领域的应用&中西石墨烯双边合作论坛
开始时间
结束时间
内容摘要

Hybrid Graphene Supercapacitors. From solid to liquid electrodes.(主题会场:石墨烯在超级电容器领域的应用)

In the field of energy storage and in particular for supercapacitors, graphene is by all accounts the advanced material of choice for years to come. Graphene has already been claimed as a champion material for supercapacitors providing large active area for capacitive double-layer storage. What then could be better than graphene for energy storage?
Hybrid materials offer the opportunity of building synergies thus leading to improved performance over their individual components.[1] In that way, hybrids based on graphene and a variety of molecular species[2.3] or extended phases[4] have been used to design materials with enhanced activity. This approach has been applied to Graphenes leading to materials with a perfect combination of properties for their use as active electrode materials in energy-storage devices, namely, a combination of conductivity-electroactivity as well as a combination of double-layer capacitive energy storage (graphene) and faradaic energy storage in a single material with a dual energy storage mechanism.[1] 
A wise choice of electroactive species can thus improve the energy density of graphene-based supercapacitors through hybridization. 
Furthermore, in our group we have gone beyond the conventional solid state electrode format and have developed graphene electroactive nanofluids as liquid electrodes for flow cells. This novel electrode format is also prone to the development of hybrid materials. In this conference this general hybrid approach, with some emphasis on our own group results will be presented in relation to graphene-based materials for energy storage and illustrative examples discussed.

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)

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凯发_Pedro Gómez

凯发

演讲嘉宾-Pedro Gómez-Romero

Pedro Gómez-Romero
加泰罗尼亚纳米科学和纳米技术研究所

Pedro Gómez-Romero是西班牙巴塞罗那材料科学研究所的一个高级研究科学家,他领导的课题组从事导电高分子与氧化物、团簇和活性分子的纳米复合物杂化材料的研究,并开发其在能量存储和转换应用领域如燃料电池、锂离子电池和超级电容器的应用。

他在瓦伦西亚大学取得了学士和硕士学位,在美国乔治敦大学获得了化学博士学位。1998年至1999年,他在北大西洋公约组织(NATO)担任高级研究员,期间在美国GODDEN公司的可再生能源实验室做访问科学家。除了科研之外,Pedro Gómez-Romero博士喜欢具有创造性科普活动,他出版了一百多个科学版物,并撰写了一本获奖图书和许多科普文章。

Pedro Gómez-Romero是美国科学促进协会成员,美国化学学会、材料研究学会和电化学学会的成员。

演讲题目:Hybrid Graphene Supercapacitors. From solid to liquid electrodes.
主题会场石墨烯在超级电容器领域的应用&中西石墨烯双边合作论坛
开始时间
结束时间
内容摘要

Hybrid Graphene Supercapacitors. From solid to liquid electrodes.(主题会场:石墨烯在超级电容器领域的应用)

In the field of energy storage and in particular for supercapacitors, graphene is by all accounts the advanced material of choice for years to come. Graphene has already been claimed as a champion material for supercapacitors providing large active area for capacitive double-layer storage. What then could be better than graphene for energy storage?
Hybrid materials offer the opportunity of building synergies thus leading to improved performance over their individual components.[1] In that way, hybrids based on graphene and a variety of molecular species[2.3] or extended phases[4] have been used to design materials with enhanced activity. This approach has been applied to Graphenes leading to materials with a perfect combination of properties for their use as active electrode materials in energy-storage devices, namely, a combination of conductivity-electroactivity as well as a combination of double-layer capacitive energy storage (graphene) and faradaic energy storage in a single material with a dual energy storage mechanism.[1] 
A wise choice of electroactive species can thus improve the energy density of graphene-based supercapacitors through hybridization. 
Furthermore, in our group we have gone beyond the conventional solid state electrode format and have developed graphene electroactive nanofluids as liquid electrodes for flow cells. This novel electrode format is also prone to the development of hybrid materials. In this conference this general hybrid approach, with some emphasis on our own group results will be presented in relation to graphene-based materials for energy storage and illustrative examples discussed.

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: