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Journal ArticleDOI

Organic Nonvolatile Memory Transistors for Flexible Sensor Arrays

TLDR
A sensor matrix is realized that detects the spatial distribution of applied mechanical pressure and stores the analog sensor input as a two-dimensional image over long periods of time by integrating a flexible array of organic floating-gate transistors with a pressure-sensitive rubber sheet.
Abstract
Using organic transistors with a floating gate embedded in hybrid dielectrics that comprise a 2-nanometer-thick molecular self-assembled monolayer and a 4-nanometer-thick plasma-grown metal oxide, we have realized nonvolatile memory arrays on flexible plastic substrates. The small thickness of the dielectrics allows very small program and erase voltages (≤6 volts) to produce a large, nonvolatile, reversible threshold-voltage shift. The transistors endure more than 1000 program and erase cycles, which is within two orders of magnitude of silicon-based floating-gate transistors widely employed in flash memory. By integrating a flexible array of organic floating-gate transistors with a pressure-sensitive rubber sheet, we have realized a sensor matrix that detects the spatial distribution of applied mechanical pressure and stores the analog sensor input as a two-dimensional image over long periods of time.

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Citations
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Flexible neuromorphic transistors for bio-inspired perception application

TL;DR: In this article , the authors introduce the research progress of many kinds of flexible neuromorphic transistors, including device structure, working principle and basic functions, and also give a summary and simple prospect of the above research fields.
Journal ArticleDOI

Advanced Bioinspired Organic Sensors for Future‐Oriented Intelligent Applications

TL;DR: The design of advanced bio-inspired organic sensors requires a deep understanding of the interplay between the unique material property, sensing mechanism as well as intelligent functionality as discussed by the authors , and the potential challenges and prospects of bioinspired sensors are discussed, providing a promising avenue toward advanced bioinspired organic sensor for future-oriented intelligent applications.
Journal ArticleDOI

Ferroelectric field effect transistors for electronics and optoelectronics

TL;DR: In this article , representative research results of FeFETs are reviewed from the perspective of structures and applications, with a comparison of performance between FeETs and FETs without ferroelectrics, including memories and memristive devices.
References
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Journal ArticleDOI

Flexible active-matrix displays and shift registers based on solution-processed organic transistors.

TL;DR: Flexible active-matrix monochrome electrophoretic displays based on solution-processed organic transistors on 25-μm-thick polyimide substrates based on 1,888 transistors are demonstrated, which are the largest organic integrated circuits reported to date.
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Conformable, flexible, large-area networks of pressure and thermal sensors with organic transistor active matrixes

TL;DR: This work has successfully developed conformable, flexible, large-area networks of thermal and pressure sensors based on an organic semiconductor, and, by means of laminated sensor networks, the distributions of pressure and temperature are simultaneously obtained.
Journal ArticleDOI

Ultralow-power organic complementary circuits

TL;DR: This work demonstrates an organic circuit with very low power consumption that uses a self-assembled monolayer gate dielectric and two different air-stable molecular semiconductors (pentacene and hexadecafluorocopperphthalocyanine, F16CuPc) to implement transistors, circuits, displays and sensors on arbitrary substrates.
Journal ArticleDOI

Introduction to flash memory

TL;DR: The main reliability issues, such as charge retention and endurance, are discussed, together with an understanding of the basic physical mechanisms responsible and an insight into the multilevel approach, where two bits are stored in the same cell, is presented.
Journal ArticleDOI

High-performance solution-processed polymer ferroelectric field-effect transistors

TL;DR: In this paper, a non-volatile memory device with flexible plastic active layers deposited from solution is presented, and the memory device is a ferroelectric field effect transistor (FeFET) made with a Ferroelectric fluoropolymer and a bisalkoxy-substituted poly(pphenylene vinylene) semiconductor material.
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