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Rational growth of branched nanowire heterostructures with synthetically encoded properties and function.


ABSTRACT: Branched nanostructures represent unique, 3D building blocks for the "bottom-up" paradigm of nanoscale science and technology. Here, we report a rational, multistep approach toward the general synthesis of 3D branched nanowire (NW) heterostructures. Single-crystalline semiconductor, including groups IV, III-V, and II-VI, and metal branches have been selectively grown on core or core/shell NW backbones, with the composition, morphology, and doping of core (core/shell) NWs and branch NWs well controlled during synthesis. Measurements made on the different composition branched NW structures demonstrate encoding of functional p-type/n-type diodes and light-emitting diodes (LEDs) as well as field effect transistors with device function localized at the branch/backbone NW junctions. In addition, multibranch/backbone NW structures were synthesized and used to demonstrate capability to create addressable nanoscale LED arrays, logic circuits, and biological sensors. Our work demonstrates a previously undescribed level of structural and functional complexity in NW materials, and more generally, highlights the potential of bottom-up synthesis to yield increasingly complex functional systems in the future.

SUBMITTER: Jiang X 

PROVIDER: S-EPMC3145746 | biostudies-literature | 2011 Jul

REPOSITORIES: biostudies-literature

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Rational growth of branched nanowire heterostructures with synthetically encoded properties and function.

Jiang Xiaocheng X   Tian Bozhi B   Xiang Jie J   Qian Fang F   Zheng Gengfeng G   Wang Hongtao H   Mai Liqiang L   Lieber Charles M CM  

Proceedings of the National Academy of Sciences of the United States of America 20110705 30


Branched nanostructures represent unique, 3D building blocks for the "bottom-up" paradigm of nanoscale science and technology. Here, we report a rational, multistep approach toward the general synthesis of 3D branched nanowire (NW) heterostructures. Single-crystalline semiconductor, including groups IV, III-V, and II-VI, and metal branches have been selectively grown on core or core/shell NW backbones, with the composition, morphology, and doping of core (core/shell) NWs and branch NWs well cont  ...[more]

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