TY - JOUR
T1 - A magnetic field controlled memristor towards the design of an implantable detector
AU - Mao, Shuangsuo
AU - Sun, Bai
AU - Zhou, Guangdong
AU - Qin, Jiajia
AU - Yang, Yusheng
AU - Rao, Zhaowei
AU - Liu, Mingnan
AU - Ke, Chuan
AU - Zhao, Yong
N1 - Publisher Copyright:
© 2023 Elsevier Inc.
PY - 2023/8
Y1 - 2023/8
N2 - Memristors, which combine the behaviors of memory and resistive switching (RS), have a wide application prospect in information processing and artificial neural networks. The RS memory behaviors of memristors are primarily determined by the functional layer materials, device structure, and working conditions. Herein, a CuMnO2 nanomaterial with the manganese copper ore structure was prepared on a Ti substrate by hydrothermal method, and a memristor with the Ag/CuMnO2/Ti sandwich structure was developed. The RS memory behavior of the as-prepared memristor can be regulated through a low magnetic field (MF), and thus the resistance value of device shows a multi-level resistance states. Compared with other regulation factors, the MF can remotely adjust and control the RS characteristics of memristor, which is a non-invasive and non-destructive regulatory means. The MF regulated memristor can not only be used for multi-level high-density information storage, but also it can protect the health of special populations by identifying the MF intensity of the surrounding environment. When the device is operated in an MF environment, the change of resistance value of the device in both high resistance state (HRS) and low resistance state (LRS) is mainly attributed to the influence of Loren magnetic force on conductive ions.
AB - Memristors, which combine the behaviors of memory and resistive switching (RS), have a wide application prospect in information processing and artificial neural networks. The RS memory behaviors of memristors are primarily determined by the functional layer materials, device structure, and working conditions. Herein, a CuMnO2 nanomaterial with the manganese copper ore structure was prepared on a Ti substrate by hydrothermal method, and a memristor with the Ag/CuMnO2/Ti sandwich structure was developed. The RS memory behavior of the as-prepared memristor can be regulated through a low magnetic field (MF), and thus the resistance value of device shows a multi-level resistance states. Compared with other regulation factors, the MF can remotely adjust and control the RS characteristics of memristor, which is a non-invasive and non-destructive regulatory means. The MF regulated memristor can not only be used for multi-level high-density information storage, but also it can protect the health of special populations by identifying the MF intensity of the surrounding environment. When the device is operated in an MF environment, the change of resistance value of the device in both high resistance state (HRS) and low resistance state (LRS) is mainly attributed to the influence of Loren magnetic force on conductive ions.
KW - Hydrothermal method
KW - Loren magnetic force
KW - Magnetic field
KW - Memristor
KW - Resistive switching
UR - https://www.scopus.com/pages/publications/85151780565
U2 - 10.1016/j.jcis.2023.04.027
DO - 10.1016/j.jcis.2023.04.027
M3 - 文章
C2 - 37044012
AN - SCOPUS:85151780565
SN - 0021-9797
VL - 643
SP - 38
EP - 46
JO - Journal of Colloid and Interface Science
JF - Journal of Colloid and Interface Science
ER -