Simultaneous resistance switching and rectifying effects in a single hybrid perovskite

Author:

Song Xuefen1,Zhang Junran1ORCID,Qian Yuchi1,Xia Zhongjing1,Chen Jinlian1,Yin Hao1,Liu Jing1,Feng Linbo1,Liu Tianyu1,Zhu Zihong1,Hua Yuyang1,Liu You1ORCID,Yuan Jiaxiao1,Ge Feixiang1,Zhou Dawei1,Li Mubai1,Hang Yang1,Wang Fangfang1,Qin Tianshi1,Wang Lin1ORCID

Affiliation:

1. School of Flexible Electronics (Future Technologies) & Institute of Advanced Materials (IAM), Key Laboratory of Flexible Electronics (KLOFE), Jiangsu National Synergetic Innovation Center for Advanced Materials (SICAM) Nanjing Tech University (Nanjing Tech) Nanjing China

Abstract

AbstractHalide perovskites with naturally coupled electron‐ion dynamics hold great potential for nonvolatile memory applications. Self‐rectifying memristors are promising as they can avoid sneak currents and simplify device configuration. Here we report a self‐rectifying memristor firstly achieved in a single perovskite (NHCINH3)3PbI5 (abbreviated as (IFA)3PbI5), which is sandwiched by Ag and ITO electrodes as the simplest cell in a crossbar array device configuration. The iodide ions of (IFA)3PbI5 can be easily activated, of which the migration in the bulk contributes to the resistance hysteresis and the reaction with Ag at the interface contributes to the spontaneous formation of AgI. The perfect combination of n‐type AgI and p‐type (IFA)3PbI5 gives rise to the rectification function like a p–n diode. Such a self‐rectifying memristor exhibits the record‐low set power consumption and voltage. This work emphasizes that the multifunction of ions in perovskites can simplify the fabrication procedure, decrease the programming power, and increase the integration density of future memory devices.image

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Publisher

Wiley

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