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石墨沉积物形成过程及其消除方法 被引量:2
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作者 Ю.В.Степанов 何玉秀 《燃料与化工》 2004年第2期50-56,共7页
关键词 石墨沉积物 形成过程 消除方法 焦炉 煤料 热解温度
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《炭素技术》 CAS CSCD 2004年第2期13-13,共1页
新的化学计量溴代富勒烯制备及表征[刊,韩]/REEMAMEHROTA,DARSHAN LAL,et al//Carbon Science,2003,4(4):175 系统研究了不同实验条件下溴代富勒烯的合成。
关键词 载银活性炭纤维 银粒子分布 溴代富勒烯 制备 木质纤维素 沥青基炭纤维 氧化反应速率 二维C/C复合材料 环氧/碳纤维复合材料 先驱体聚碳硅烷 石墨沉积物
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Oxide-on-graphene field effect bio-ready sensors 被引量:1
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作者 Bei Wang Kristi L. Liddell +3 位作者 Junjie Wang Brandon Koger Christine D. Keating Jun Zhu 《Nano Research》 SCIE EI CAS CSCD 2014年第9期1263-1270,共8页
Electrical detection schemes using nanoscale devices offer fast and label-free alternatives to biosensing techniques based on chemical and optical interactions. Here we report on the design, fabrication, and operation... Electrical detection schemes using nanoscale devices offer fast and label-free alternatives to biosensing techniques based on chemical and optical interactions. Here we report on the design, fabrication, and operation of oxide-on-graphene ion-sensitive field effect sensor arrays using large-area graphene sheets synthesized by chemical vapor deposition. In this scheme, HfO2 and SiO2 thin films are deposited atop the graphene sheet and play the dual role of the sensing interface, as well as the passivation layer protecting the channel and electrodes underneath from direct contact with the electrolyte. We further demonstrate the functionalization of the SiO2 surface with 3-aminopropyltrimethoxysilane (APTMS). The oxide-on-graphene sensors operate in solution with high stability and a high average mobility of 5,000 cm2/(V's). As a proof of principle, we demonstrate pH sensing using the bare or the APTMS-functionalized SiO2 as the sensing surface. The measured sensitivities, 46 mV/pH and 43 mV/pH, respectively, agree well with existing studies. We further show that by applying the solution gate voltage in pulse, the hysteresis in the transfer curve of the graphene transducer can be eliminated, greatly improving the ionic potential resolution of the sensor. These experiments demonstrate the potential of oxide-on-graphene ion-sensitive field effect sensors in on-chip, label-free and real-time biosensing applications. 展开更多
关键词 GRAPHENE BIOSENSOR pH sensor ISFET APTMS LABEL-FREE
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