材料科学
碲
纳米技术
纳米管
薄脆饼
比例(比率)
光电子学
纳米尺度
碳纳米管
物理
量子力学
冶金
作者
Changhyeon Yoo,Chung Won Lee,Al Mahanad Sultan Said Al Kamyani,Sang Sub Han,Justin Cao,Han-Kyun Shin,Yujin Song,Jung Han Kim,Yeonwoong Jung
出处
期刊:Nano Letters
[American Chemical Society]
日期:2025-05-25
标识
DOI:10.1021/acs.nanolett.5c02443
摘要
Tellurium (Te) nanotube (NT) meshes fabricated via a scalable low-temperature chemical vapor deposition (CVD) process are being explored for flexible optoelectronic synapse applications. Centimeter-scale meshes composed of highly networked single-crystalline individual Te nanorods are directly grown on polymeric substrates at a low temperature of 350 °C. The Te NT meshes exhibit p-type semiconducting behaviors accompanied by an optical bandgap of ∼0.48 eV coupled with an excellent mechanical deformability. Flexible devices incorporating these materials yield intriguing characteristics essential for optoelectronic artificial synapses, i.e., bending-invariant photoresponsiveness, optical pulse-induced potentiation, and electrical pulse-induced depression. Such features enable the simulation of various biologically inspired synaptic functionalities, including short- and long-term plasticity and paired-pulse facilitation (PPF), as well as demonstrations of Pavlovian associative learning and visual perception emulation. This work addresses key challenges in establishing scalable manufacturing for mechanically reconfigurable and functionally versatile platforms toward emerging neuromorphic applications.
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