Gas Sensing on High Surface Area Graphene Foam Electrode
Gas Sensing on High Surface Area Graphene Foam Electrode
批准号:
104962
负责人:
金额:
$1.29万
依托单位:
依托单位国家:
英国
项目类别:
Collaborative R&D
财政年份:
2019
资助国家:
英国
项目状态:
已结题
起止时间:
2019 至 --
中文摘要
“RD graphene (RDG)已经开发出一种新颖的环境工艺,可以在几秒钟内生产出纯3D泡沫状石墨烯电极,并且在卷对卷设备上具有成本效益。这完全消除了下一代石墨烯增强产品商业化的障碍。RDG目前利用有限的资源开发石墨烯超级电容器。这些产品的性能已经与同类最佳的商业产品相匹配,这证实了制造产品的高质量,并计划在未来几年内进行商业开发。RDG想要开发的另一个潜在市场是基于石墨烯在场效应晶体管(gfet)中的结合,它利用了石墨烯有望展示的特殊电子特性。gfet能够调整石墨烯的特性,以便将其可控地整合到实际应用的设备中,例如气体检测。如果这项研究证实RDG电极上的GFET是可行的,并且像预期的那样好,这将增加额外的,RDG渴望开发的数十亿英镑的市场机会。机会包括:晶体管、传感器、太阳能电池板、led、天线等等。”
英文摘要
"RD graphene (RDG) has developed a novel, ambient process to produce pure 3D foam-like graphene electrodes that can be produced in seconds and cost-effectively on reel-to-reel equipment. This completely removes the barrier to commercialization for next generation, graphene-enhanced products.RDG currently uses its limited resources to develop graphene super-capacitors. Demonstrated performance of these already match best-in-class commercially available products, which validates the high quality of the manufactured product and commercial exploitation is planned for the next couple of years.Another potential market that RDG wants to exploit is based upon graphene's incorporation in Field Effect Transistors (GFETs), which exploits the exceptional electronic properties graphene is expected to exhibit.GFETs are able to tune the properties of the graphene in order to controllably incorporate them into devices for real-world applications, for example, gas detection.Should this study confirm that GFET on RDG's electrode is feasible and as good as expected this will add additional, multi-billion Pound market opportunities which RDG is eager to exploit. Opportunities are: transistors, sensors, solar panels, LEDs, antennae and many more."
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