Literature DB >> 22208722

Crystal face-dependent nanopiezotronics of an obliquely aligned InN nanorod array.

Nai-Jen Ku1, Jun-Han Huang, Chao-Hung Wang, Hsin-Chiao Fang, Chuan-Pu Liu.   

Abstract

This paper proposes an obliquely aligned InN nanorod array to maximize nanorod deformation in the application of nanopiezotronics. The surface-dependent piezotronic I-V characteristics of the InN nanorod array with exposed polar (0002) and semipolar ( ̅1102) planes were studied by conductive atomic force microscopy. The effects of the piezopotential, created in the InN under straining, and the surface quantum states on the transport behavior of charge carriers in different crystal planes of the InN nanorod were investigated. The crystal plane-dependent electron density in the electron surface accumulation layer and the strain-dependent piezopotential distribution modulate the interfacial contact of the Schottky characteristics for the (0002) plane and the quasi-ohmic behavior for the ( ̅1102) plane. Regarding the piezotronic properties under applied forces, the Schottky barrier height increases in conjunction with the deflection force with high current density at large biases because of tunneling. The strain-induced piezopotential can thus tune the transport process of the charge carriers inside the InN nanorod over a larger range than in ZnO. The quantized surface electron accumulation layer is demonstrated to modulate the piezopotential-dependent carrier transport at the metal/InN interfaces and become an important factor in the design of InN-based piezotronic devices and nanogenerators.
© 2011 American Chemical Society

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Year:  2012        PMID: 22208722     DOI: 10.1021/nl202782q

Source DB:  PubMed          Journal:  Nano Lett        ISSN: 1530-6984            Impact factor:   11.189


  2 in total

1.  Morphology Controlled Fabrication of InN Nanowires on Brass Substrates.

Authors:  Huijie Li; Guijuan Zhao; Lianshan Wang; Zhen Chen; Shaoyan Yang
Journal:  Nanomaterials (Basel)       Date:  2016-10-29       Impact factor: 5.076

2.  Novel Study of Strain-Induced Piezoelectricity in VO2.

Authors:  Raktima Basu; Geramilla Mangamma; Sandip Dhara
Journal:  ACS Omega       Date:  2022-04-27
  2 in total

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