Sanchez John Eder, Santiago Ulises, Benitez Alfredo, Yacamán Miguel José, González Francisco Javier, Ponce Arturo
Department of Physics and Astronomy, University of Texas at San Antonio , One UTSA Circle, San Antonio, Texas 78249, USA.
Universidad Autónoma de San Luis Potosí , LANCYTT, Sierra Leona 550, San Luis Potosí, SLP 78210, Mexico.
Appl Phys Lett. 2016 Oct 10;109(15):153104. doi: 10.1063/1.4964719.
Detectors, photo-emitter, and other high order radiation devices work under the principle of directionality to enhance the power of emission/transmission in a particular direction. In order to understand such directionality, it is important to study their coupling mechanism of their active elements. In this work, we present a crystalline orientation analysis of ZnO nanorods grown epitaxially on the pentagonal faces of silver nanowires. The analysis of the crystalline orientation at the metal-semiconductor interface (ZnO/Ag) is performed with precession electron diffraction under assisted scanning mode. In addition, high resolution X-ray diffraction on a Bragg-Brentano configuration has been used to identify the crystalline phases of the arrangement between ZnO rods and silver nanowires. The work presented herein provides a fundamental knowledge to understand the metal-semiconductor behavior related to the receiving/transmitting mechanisms of ZnO/Ag nanoantennas.
探测器、光发射器及其他高阶辐射器件依据方向性原理工作,以增强特定方向上的发射/传输功率。为理解这种方向性,研究其有源元件的耦合机制很重要。在本工作中,我们展示了在银纳米线五边形面上外延生长的ZnO纳米棒的晶体取向分析。在辅助扫描模式下,利用进动电子衍射对金属-半导体界面(ZnO/Ag)的晶体取向进行分析。此外,采用布拉格-布伦塔诺配置的高分辨率X射线衍射来识别ZnO棒与银纳米线之间排列的晶相。本文所展示的工作为理解与ZnO/Ag纳米天线的接收/传输机制相关的金属-半导体行为提供了基础知识。