材料科学
铁电性
大气温度范围
温度系数
光电子学
纳米线
分析化学(期刊)
纳米技术
物理
化学
复合材料
电介质
热力学
有机化学
作者
Wenping Geng,Jinlong He,Xiaojun Qiao,Liya Niu,Caiqin Zhao,Gang Xue,Kaixi Bi,Linyu Mei,Xiangjian Wang,Xiujian Chou
标识
DOI:10.1109/led.2021.3118384
摘要
Domain wall current (DWC) plays a key role in storage devices, logic devices and sensors due to its high on-off ratio and nano structure size in the era of nanoelectronics technology. In this work, the DWC of single crystal LiNbO 3 thin film was studied by piezoresponse force microscope (PFM) and conducting atomic force microscope (c-AFM). We mainly focus on voltage and temperature dependence of DWC which increases with the voltage and temperatures. Based on this research, the packaged DWC temperature sensor is fabricated and applied in wide temperature range. The existence of domain walls makes the current on-off ratio as high as 10 3 at the voltage of 15 V. Our study shows that DWC has a negative temperature coefficient (NTC) from 140 K to 500 K. The current increases from 3 pA to $57 ~\mu \text{A}$ , which is attributed to the conductivity of switched domain. This work proposes a new type temperature sensor with wide temperature range and high compatibility and sensitivity. In addition, it provides support for harsh environment applications of ferroelectric domain engineering devices.
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