德州学院学报
德州學院學報
덕주학원학보
JOURNAL OF DEZHOU UNIVERSITY
2011年
4期
107-110
,共4页
微电子材料%石墨烯%构建器件
微電子材料%石墨烯%構建器件
미전자재료%석묵희%구건기건
microelectronic materials%graphene nanoribbons(GNRs)%construction of device/
在硅电子材料即将发展到顶峰时,石墨烯以其优良的导体和半导体性质将成为延续硅材料的主流微电子材料;详述了石墨烯的结构与电学性质,从而说明其作为微电子材料的优势,并列举了在微电子器件构建中已经取得的成果及构建器件的方法,简述了相应石墨烯的制备方法.
在硅電子材料即將髮展到頂峰時,石墨烯以其優良的導體和半導體性質將成為延續硅材料的主流微電子材料;詳述瞭石墨烯的結構與電學性質,從而說明其作為微電子材料的優勢,併列舉瞭在微電子器件構建中已經取得的成果及構建器件的方法,簡述瞭相應石墨烯的製備方法.
재규전자재료즉장발전도정봉시,석묵희이기우량적도체화반도체성질장성위연속규재료적주류미전자재료;상술료석묵희적결구여전학성질,종이설명기작위미전자재료적우세,병열거료재미전자기건구건중이경취득적성과급구건기건적방법,간술료상응석묵희적제비방법.
In the era that electronics materials based on the silicon is developing to the peak,Graphene nanoribbons(GNRs),which have excellent natures of conductor and semiconductor,will become the mainstream of the continuation of silicon microelectronic materials.It is verified that GNRs showed some advantages as microelectronic materials by a specification of their structure and electronic natures,and listed several acquired achievements and promising methods in the process of constructing microelectronic devices,as well as introduced the methods of preparation of corresponding GNRs.