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Synthesis, assembly and device of 1-dimentional nanostructures 被引量:1

Synthesis, assembly and device of 1-dimentional nanostructures
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摘要 Synthesis and assembly of 1-dimentional (1-D) nanostructures and measurement of their electrical and optical properties are very important in fabrication of nanode-vices. Recent developments in this field are summarized in this review. The assembling methods can be divided into two classes: assembly using macroscopic field forces and micro-fluidic-assisted-template-integration. The former can assemble nanowires by controlling direction and intensity of electric or magnetic field, while the latter represents a general assembly strategy for any kind of 1-D nanostructures. The assembly of 1-D nanostructures will make it possible to fabricate nanosensors, nanolasers and nanoscale logic gate circuits for computation. Synthesis and assembly of 1-dimentional (1-D) nanostructures and measurement of their electrical and optical properties are very important in fabrication of nanodevices. Recent developments in this field are summarized in this review. The assembling methods can be divided into two classes: assembly using macroscopic field forces and microfluidic-assisted-template-integration. The former can assemble nanowires by controlling direction and intensity of electric or magnetic field, while the latter represents a general assembly strategy for any kind of 1-D nanostructures. The assembly of 1-D nanostructures will make it possible to fabricate nanosensors, nanolasers and nanoscale logic gate circuits for computation.
机构地区 Tsing Hua Univ
出处 《Chinese Science Bulletin》 SCIE EI CAS 2002年第14期1149-1156,共8页
基金 This work was supported by the National Natural Science Foundation of China (Grant Nos. 20025102, 50028201 and 20151001) the Foundation for the Author of National Excellent Doctoral Dissertation of China the State Key Project of Fundamental Research
关键词 1-D NANOSTRUCTURES SYNTHESIS ASSEMBLY measurement of PHYSICAL properties nanodevice. 1-D nanostructures synthesis assembly measurement of physical properties nanodevice
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