Sun Rong, Jacobsson Daniel, Chen I-Ju, Nilsson Malin, Thelander Claes, Lehmann Sebastian, Dick Kimberly A
†Solid State Physics and ‡Center for Analysis and Synthesis, Lund University, S-221 00 Lund, Sweden.
Nano Lett. 2015 Jun 10;15(6):3757-62. doi: 10.1021/acs.nanolett.5b00276. Epub 2015 Jun 1.
The widespread use of Au as a seed particle in the fabrication of semiconductor nanowires presents a fundamental limitation to the potential incorporation of such nanostructures into electronic devices. Although several other growth techniques have been demonstrated, the use of alternative seed particle metals remains an underexplored but potentially very promising way to influence the properties of the resulting nanowires while simultaneously avoiding gold. In this Letter, we demonstrate the use of Sn as a seed particle metal for GaAs nanowires grown by metal-organic vapor phase epitaxy. We show that vertically aligned and stacking defect-free GaAs nanowires can be grown with very high yield. The resulting nanowires exhibit Esaki diode behavior, attributed to very high n-doping of the nanowire core with Sn, and simultaneous C-doping of the radial overgrowth. These results demonstrate that the use of alternative seed particle metals is a potentially important area to explore for developing nanowire materials with controlled material properties.
在半导体纳米线制造过程中广泛使用金作为籽晶颗粒,这对将此类纳米结构纳入电子器件的潜在应用构成了根本性限制。尽管已经展示了其他几种生长技术,但使用替代籽晶颗粒金属仍是一种尚未充分探索但可能非常有前景的方法,可在避免使用金的同时影响所得纳米线的性能。在本信函中,我们展示了将锡用作金属有机气相外延生长砷化镓纳米线的籽晶颗粒金属。我们表明,可以以非常高的产率生长垂直排列且无堆垛缺陷的砷化镓纳米线。所得纳米线表现出江崎二极管行为,这归因于纳米线芯部由锡进行的非常高的n型掺杂以及径向过度生长部分的同时C型掺杂。这些结果表明,使用替代籽晶颗粒金属是开发具有可控材料性能的纳米线材料的一个潜在重要探索领域。