材料科学
纳米颗粒
锌
纳米技术
氧化物
形态学(生物学)
光电子学
电压
电流(流体)
量子点
表征(材料科学)
电气工程
工程类
生物
冶金
遗传学
作者
Somi Kim,Taehyun Park,Hyung Joong Yun,Hocheon Yoo
标识
DOI:10.1002/admt.202201028
摘要
Abstract Negative differential resistance (NDR) has received considerable attention owing to the unique switching property, which exhibits an n ‐shaped current–voltage curve without a monolithic increase in current as of the applied voltage bias increases. Nevertheless, various issues in previously reported NDR devices need to be addressed, such as complex manufacturing processes, operational instability, and difficulties in large‐area processing. In addition, methods for generating and controlling NDR have not yet been developed. This paper presents the findings of morphology‐dependent NDR in which three types of zinc oxide (ZnO) build a junction with p ‐Si in the form of small nanoparticles, large nanoparticles, and films. The principle of NDR behaviors is elucidated through a comprehensive study, including an analysis of the energy band structure, morphological investigation, and electrical characterization, offering control of the peak‐to‐valley current ratio (PVCR). The highest PVCR = 4.96 A A −1 is obtained in the quantum dot ZnO/ p ‐Si structure and the NDR characteristics occur without external stimuli, such as irradiating light, cryogenic temperatures, or controlled atmospheres.
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