期刊文献+
共找到31,672篇文章
< 1 2 250 >
每页显示 20 50 100
Flexible Graphene Field‑Effect Transistors and Their Application in Flexible Biomedical Sensing
1
作者 Mingyuan Sun Shuai Wang +5 位作者 Yanbo Liang Chao Wang Yunhong Zhang Hong Liu Yu Zhang Lin Han 《Nano-Micro Letters》 SCIE EI CAS 2025年第2期252-313,共62页
Flexible electronics are transforming our lives by making daily activities more convenient.Central to this innovation are field-effect transistors(FETs),valued for their efficient signal processing,nanoscale fabricati... Flexible electronics are transforming our lives by making daily activities more convenient.Central to this innovation are field-effect transistors(FETs),valued for their efficient signal processing,nanoscale fabrication,low-power consumption,fast response times,and versatility.Graphene,known for its exceptional mechanical properties,high electron mobility,and biocompatibility,is an ideal material for FET channels and sensors.The combination of graphene and FETs has given rise to flexible graphene field-effect transistors(FGFETs),driving significant advances in flexible electronics and sparked a strong interest in flexible biomedical sensors.Here,we first provide a brief overview of the basic structure,operating mechanism,and evaluation parameters of FGFETs,and delve into their material selection and patterning techniques.The ability of FGFETs to sense strains and biomolecular charges opens up diverse application possibilities.We specifically analyze the latest strategies for integrating FGFETs into wearable and implantable flexible biomedical sensors,focusing on the key aspects of constructing high-quality flexible biomedical sensors.Finally,we discuss the current challenges and prospects of FGFETs and their applications in biomedical sensors.This review will provide valuable insights and inspiration for ongoing research to improve the quality of FGFETs and broaden their application prospects in flexible biomedical sensing. 展开更多
关键词 FLEXIBLE GRAPHENE Field-effect transistor Wearable IMPLANTABLE BIOSENSOR
下载PDF
Force and impulse multi-sensor based on flexible gate dielectric field effect transistor
2
作者 Chao Tan Junling Lü +3 位作者 Chunchi Zhang Dong Liang Lei Yang Zegao Wang 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS 2025年第1期214-220,共7页
Nowadays,force sensors play an important role in industrial production,electronic information,medical health,and many other fields.Two-dimensional material-based filed effect transistor(2D-FET)sensors are competitive ... Nowadays,force sensors play an important role in industrial production,electronic information,medical health,and many other fields.Two-dimensional material-based filed effect transistor(2D-FET)sensors are competitive with nano-level size,lower power consumption,and accurate response.However,few of them has the capability of impulse detection which is a path function,expressing the cumulative effect of the force on the particle over a period of time.Herein we fabricated the flexible polymethyl methacrylate(PMMA)gate dielectric MoS_(2)-FET for force and impulse sensor application.We systematically investigated the responses of the sensor to constant force and varying forces,and achieved the conversion factors of the drain current signals(I_(ds))to the detected impulse(I).The applied force was detected and recorded by I_(ds)with a low power consumption of~30 nW.The sensitivity of the device can reach~8000%and the 4×1 sensor array is able to detect and locate the normal force applied on it.Moreover,there was almost no performance loss for the device as left in the air for two months. 展开更多
关键词 flexible gate dielectric transistor force sensor impulse sensor force sensor array
下载PDF
Neurotransmitter-mediated artificial synapses based on organic electrochemical transistors for future biomimic and bioinspired neuromorphic systems
3
作者 Miao Cheng Yifan Xie +6 位作者 Jinyao Wang Qingqing Jin Yue Tian Changrui Liu Jingyun Chu Mengmeng Li Ling Li 《Journal of Semiconductors》 2025年第1期78-89,共12页
Organic electrochemical transistors have emerged as a solution for artificial synapses that mimic the neural functions of the brain structure,holding great potentials to break the bottleneck of von Neumann architectur... Organic electrochemical transistors have emerged as a solution for artificial synapses that mimic the neural functions of the brain structure,holding great potentials to break the bottleneck of von Neumann architectures.However,current artificial synapses rely primarily on electrical signals,and little attention has been paid to the vital role of neurotransmitter-mediated artificial synapses.Dopamine is a key neurotransmitter associated with emotion regulation and cognitive processes that needs to be monitored in real time to advance the development of disease diagnostics and neuroscience.To provide insights into the development of artificial synapses with neurotransmitter involvement,this review proposes three steps towards future biomimic and bioinspired neuromorphic systems.We first summarize OECT-based dopamine detection devices,and then review advances in neurotransmitter-mediated artificial synapses and resultant advanced neuromorphic systems.Finally,by exploring the challenges and opportunities related to such neuromorphic systems,we provide a perspective on the future development of biomimetic and bioinspired neuromorphic systems. 展开更多
关键词 artificial synapses organic electrochemical transistors NEUROTRANSMITTERS neuromorphic systems
下载PDF
Graphene/F_(16)CuPc synaptic transistor for the emulation of multiplexed neurotransmission
4
作者 Zhipeng Xu Yao Ni +3 位作者 Mingxin Sun Yiming Yuan Ning Wu Wentao Xu 《Journal of Semiconductors》 2025年第1期215-223,共9页
We demonstrate a bipolar graphene/F_(16)CuPc synaptic transistor(GFST)with matched p-type and n-type bipolar properties,which emulates multiplexed neurotransmission of the release of two excitatory neurotransmitters i... We demonstrate a bipolar graphene/F_(16)CuPc synaptic transistor(GFST)with matched p-type and n-type bipolar properties,which emulates multiplexed neurotransmission of the release of two excitatory neurotransmitters in graphene and F_(16)CuPc channels,separately.This process facilitates fast-switching plasticity by altering charge carriers in the separated channels.The complementary neural network for image recognition of Fashion-MNIST dataset was constructed using the matched relative amplitude and plasticity properties of the GFST dominated by holes or electrons to improve the weight regulation and recognition accuracy,achieving a pattern recognition accuracy of 83.23%.These results provide new insights to the construction of future neuromorphic systems. 展开更多
关键词 synaptic transistor dual excitatory channels fast-switching plasticity multiplexed neurotransmission
下载PDF
基于SiIGBT与SiCFET并联的新型混合器件特性解析及对比研究
5
作者 朱梓贤 涂春鸣 +3 位作者 肖标 郭祺 肖凡 龙柳 《太阳能学报》 北大核心 2025年第1期251-260,共10页
对由SiC FET与Si IGBT并联组成的新型混合器件(HY_F)开展研究。首先,分析HY_F的基本结构与工作原理,并搭建HY_F的导通损耗模型、开通损耗模型以及关断损耗模型。其次,基于混合器件的仿真模型,分析HY_F与传统Si IGBT/SiC MOSFET混合器件(... 对由SiC FET与Si IGBT并联组成的新型混合器件(HY_F)开展研究。首先,分析HY_F的基本结构与工作原理,并搭建HY_F的导通损耗模型、开通损耗模型以及关断损耗模型。其次,基于混合器件的仿真模型,分析HY_F与传统Si IGBT/SiC MOSFET混合器件(HY_M)在不同额定电流等级下损耗与成本的优劣势。仿真结果表明,当额定电流为较小(15 A)时,HY_M能以较低的成本实现更低的损耗;混合器件在额定电流较大(25 A、40 A)时,HY_F能以更低的成本实现更低的损耗。最后,通过实验验证结论的正确性。 展开更多
关键词 si/siC混合器件 siCMOSFET siIGBT siCFET 损耗模型
下载PDF
基于第一性原理研究CO在C_(21)Si上的吸附
6
作者 张玲 尹成斌 +4 位作者 杨蕾 雷声 马贝贝 赵德永 王远 《原子与分子物理学报》 CAS 北大核心 2025年第5期22-26,共5页
通过密度泛函理论(DFT)计算研究了单个CO分子分别在C_(21)Si上的吸附.由于结构中含有21个C原子以及引入一个Si原子,命名为(C_(21)Si).计算了体系中最稳定的几何结构、吸附能、吸附高度和态密度,研究了吸附的CO分子与基底之间的相互作用... 通过密度泛函理论(DFT)计算研究了单个CO分子分别在C_(21)Si上的吸附.由于结构中含有21个C原子以及引入一个Si原子,命名为(C_(21)Si).计算了体系中最稳定的几何结构、吸附能、吸附高度和态密度,研究了吸附的CO分子与基底之间的相互作用.研究发现,当CO放置在C_(21)Si上吸附时,C原子靠近吸附优于O原子靠近时的吸附,吸附能分别为-0.86 eV和-0.36 eV,当O原子靠近吸时二者之间的吸附反应较弱,为物理吸附.C原子靠近时的吸附高度小,吸附反应更强,为化学吸附.根据态密度轨道之间的杂化程度,说明二者之间存在吸附反应,相较于O原子靠近吸附,基底对C原子靠近时的吸附能力更强,敏感度更高. 展开更多
关键词 C_(21)si 第一性原理 CO 吸附
下载PDF
Ca/Si对复合胶凝材料力学性能的影响及复合凝胶材料的水化机理
7
作者 罗文彬 许晔 +4 位作者 李中林 彭彪 王露森 王胜杰 李义兵 《有色金属(冶炼部分)》 CAS 北大核心 2025年第1期141-152,共12页
C-S-H等胶凝产物是胶凝材料力学性能的主要来源,胶凝产物主要由钙、硅和铝元素组成,钙、硅元素的比例直接影响胶凝产物的组成和结构。以脱硫石膏、粉煤灰和高炉矿粉为主要原料,制备三元复合胶凝材料,探究不同Ca/Si(0.9~1.3)对脱硫石膏-... C-S-H等胶凝产物是胶凝材料力学性能的主要来源,胶凝产物主要由钙、硅和铝元素组成,钙、硅元素的比例直接影响胶凝产物的组成和结构。以脱硫石膏、粉煤灰和高炉矿粉为主要原料,制备三元复合胶凝材料,探究不同Ca/Si(0.9~1.3)对脱硫石膏-粉煤灰-高炉矿粉三元胶凝材料力学性能的影响,而后采用XRD、SEM、EDS、FTIR、TG等微观结构表征,测试分析了不同Ca/Si胶凝材料的水化机理。结果表明,最佳Ca/Si=1.1的条件下,采用SiO_(2)/Na_(2)O=1、水玻璃用量10%、水胶比0.5时,固化28 d后抗压强度达到62.2 MPa,且胶凝材料中As、Pb、Cd、Cr、Ni、Zn的浸出浓度均符合国家Ⅳ类地表水环境质量标准;合适的Ca/Si可充分促进内部钙、硅、铝元素的水化反应,可在一定程度上提高凝结时间,提高流动度,给予足够时间以促进硅酸盐、铝硅酸盐与钙的充分反应,生成足够足量的胶凝产物,提高材料致密度。 展开更多
关键词 Ca/si 复合胶凝材料 碱激发 水化机理 毒性浸出
下载PDF
Recent advances in fabrication and functions of neuromorphic system based on organic field effect transistor
8
作者 Yaqian Liu Minrui Lian +1 位作者 Wei Chen Huipeng Chen 《International Journal of Extreme Manufacturing》 SCIE EI CAS CSCD 2024年第2期273-295,共23页
The development of various artificial electronics and machines would explosively increase the amount of information and data,which need to be processed via in-situ remediation.Bioinspired synapse devices can store and... The development of various artificial electronics and machines would explosively increase the amount of information and data,which need to be processed via in-situ remediation.Bioinspired synapse devices can store and process signals in a parallel way,thus improving fault tolerance and decreasing the power consumption of artificial systems.The organic field effect transistor(OFET)is a promising component for bioinspired neuromorphic systems because it is suitable for large-scale integrated circuits and flexible devices.In this review,the organic semiconductor materials,structures and fabrication,and different artificial sensory perception systems functions based on neuromorphic OFET devices are summarized.Subsequently,a summary and challenges of neuromorphic OFET devices are provided.This review presents a detailed introduction to the recent progress of neuromorphic OFET devices from semiconductor materials to perception systems,which would serve as a reference for the development of neuromorphic systems in future bioinspired electronics. 展开更多
关键词 organic field effect transistor neuromorphic systems synaptic transistor sensory perception systems device fabrication
下载PDF
High-Performance Organic Field-Effect Transistors Based on Two-Dimensional Vat Orange 3 Crystals
9
作者 闫宁 熊志仁 +1 位作者 秦成兵 李小茜 《Chinese Physics Letters》 SCIE EI CAS CSCD 2024年第2期122-128,共7页
The exploration and research of low-cost,environmentally friendly,and sustainable organic semiconductor materials are of immense significance in various fields,including electronics,optoelectronics,and energy conversi... The exploration and research of low-cost,environmentally friendly,and sustainable organic semiconductor materials are of immense significance in various fields,including electronics,optoelectronics,and energy conversion.Unfortunately,these semiconductors have almost poor charge transport properties,which range from∼10^(−4) cm^(2)·V^(−1)·s^(−1) to∼10^(−2) cm^(2)·V^(−1)·s^(−1).Vat orange 3,as one of these organic semiconductors,has great potential due to its highly conjugated structure.We obtain high-quality multilayered Vat orange 3 crystals with two-dimensional(2D)growth on h-BN surfaces with thickness of 10–100 nm using physical vapor transport.Raman’s results confirm the stability of the chemical structure of Vat orange 3 during growth.Furthermore,by leveraging the structural advantages of 2D materials,an organic field-effect transistor with a 2D vdW vertical heterostructure is further realized with h-BN encapsulation and multilayered graphene contact electrodes,resulting in an excellent transistor performance with On/Off ratio of 104 and high field-effect mobility of 0.14 cm^(2)·V^(−1)·s^(−1).Our results show the great potential of Vat orange 3 with 2D structures in future nano-electronic applications.Furthermore,we showcase an approach that integrates organic semiconductors with 2D materials,aiming to offer new insights into the study of organic semiconductors. 展开更多
关键词 transistor ORANGE SEMICONDUCTORS
下载PDF
Dynamic response of a thermal transistor to time-varying signals
10
作者 阮琴丽 刘文君 王雷 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第5期13-19,共7页
Thermal transistor,the thermal analog of an electronic transistor,is one of the most important thermal devices for microscopic-scale heat manipulating.It is a three-terminal device,and the heat current flowing through... Thermal transistor,the thermal analog of an electronic transistor,is one of the most important thermal devices for microscopic-scale heat manipulating.It is a three-terminal device,and the heat current flowing through two terminals can be largely controlled by the temperature of the third one.Dynamic response plays an important role in the application of electric devices and also thermal devices,which represents the devices’ability to treat fast varying inputs.In this paper,we systematically study two typical dynamic responses of a thermal transistor,i.e.,the response to a step-function input(a switching process)and the response to a square-wave input.The role of the length L of the control segment is carefully studied.It is revealed that when L is increased,the performance of the thermal transistor worsens badly.Both the relaxation time for the former process and the cutoff frequency for the latter one follow the power-law dependence on L quite well,which agrees with our analytical expectation.However,the detailed power exponents deviate from the expected values noticeably.This implies the violation of the conventional assumptions that we adopt. 展开更多
关键词 PHONON phononics thermal transistor dynamic response heat conduction
下载PDF
Heterojunction-engineered carrier transport in elevated-metal metal-oxide thin-film transistors
11
作者 Xiao Li Zhikang Ma +6 位作者 Jinxiong Li Wengao Pan Congwei Liao Shengdong Zhang Zhuo Gao Dong Fu Lei Lu 《Journal of Semiconductors》 EI CAS CSCD 2024年第10期54-59,共6页
This study investigates the carrier transport of heterojunction channel in oxide semiconductor thin-film transistor(TFT)using the elevated-metal metal-oxide(EMMO)architecture and indium−zinc oxide(InZnO).The heterojun... This study investigates the carrier transport of heterojunction channel in oxide semiconductor thin-film transistor(TFT)using the elevated-metal metal-oxide(EMMO)architecture and indium−zinc oxide(InZnO).The heterojunction band diagram of InZnO bilayer was modified by the cation composition to form the two-dimensional electron gas(2DEG)at the interface quantum well,as verified using a metal−insulator−semiconductor(MIS)device.Although the 2DEG indeed contributes to a higher mobility than the monolayer channel,the competition and cooperation between the gate field and the built-in field strongly affect such mobility-boosting effect,originating from the carrier inelastic collision at the heterojunction interface and the gate field-induced suppression of quantum well.Benefited from the proper energy-band engineering,a high mobility of 84.3 cm2·V^(−1)·s^(−1),a decent threshold voltage(V_(th))of−6.5 V,and a steep subthreshold swing(SS)of 0.29 V/dec were obtained in InZnO-based heterojunction TFT. 展开更多
关键词 oxide semiconductor thin-film transistors two-dimensional electron gas HETEROJUNCTION high mobility
下载PDF
Performance Limits and Advancements in Single 2D Transition Metal Dichalcogenide Transistor
12
作者 Jing Chen Ming-Yuan Sun +8 位作者 Zhen-Hua Wang Zheng Zhang Kai Zhang Shuai Wang Yu Zhang Xiaoming Wu Tian-Ling Ren Hong Liu Lin Han 《Nano-Micro Letters》 SCIE EI CAS CSCD 2024年第12期134-188,共55页
Two-dimensional(2D)transition metal dichalcogenides(TMDs)allow for atomic-scale manipulation,challenging the conventional limitations of semiconductor materials.This capability may overcome the short-channel effect,sp... Two-dimensional(2D)transition metal dichalcogenides(TMDs)allow for atomic-scale manipulation,challenging the conventional limitations of semiconductor materials.This capability may overcome the short-channel effect,sparking significant advancements in electronic devices that utilize 2D TMDs.Exploring the dimension and performance limits of transistors based on 2D TMDs has gained substantial importance.This review provides a comprehensive investigation into these limits of the single 2D-TMD transistor.It delves into the impacts of miniaturization,including the reduction of channel length,gate length,source/drain contact length,and dielectric thickness on transistor operation and performance.In addition,this review provides a detailed analysis of performance parameters such as source/drain contact resistance,subthreshold swing,hysteresis loop,carrier mobility,on/off ratio,and the development of p-type and single logic transistors.This review details the two logical expressions of the single 2D-TMD logic transistor,including current and voltage.It also emphasizes the role of 2D TMD-based transistors as memory devices,focusing on enhancing memory operation speed,endurance,data retention,and extinction ratio,as well as reducing energy consumption in memory devices functioning as artificial synapses.This review demonstrates the two calculating methods for dynamic energy consumption of 2D synaptic devices.This review not only summarizes the current state of the art in this field but also highlights potential future research directions and applications.It underscores the anticipated challenges,opportunities,and potential solutions in navigating the dimension and performance boundaries of 2D transistors. 展开更多
关键词 Two-dimensional transistors Dimension limits Performance limits Memory devices Artificial synapses
下载PDF
One memristor–one electrolyte-gated transistor-based high energy-efficient dropout neuronal units
13
作者 李亚霖 时凯璐 +4 位作者 朱一新 方晓 崔航源 万青 万昌锦 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第6期569-573,共5页
Artificial neural networks(ANN) have been extensively researched due to their significant energy-saving benefits.Hardware implementations of ANN with dropout function would be able to avoid the overfitting problem. Th... Artificial neural networks(ANN) have been extensively researched due to their significant energy-saving benefits.Hardware implementations of ANN with dropout function would be able to avoid the overfitting problem. This letter reports a dropout neuronal unit(1R1T-DNU) based on one memristor–one electrolyte-gated transistor with an ultralow energy consumption of 25 p J/spike. A dropout neural network is constructed based on such a device and has been verified by MNIST dataset, demonstrating high recognition accuracies(> 90%) within a large range of dropout probabilities up to40%. The running time can be reduced by increasing dropout probability without a significant loss in accuracy. Our results indicate the great potential of introducing such 1R1T-DNUs in full-hardware neural networks to enhance energy efficiency and to solve the overfitting problem. 展开更多
关键词 dropout neuronal unit synaptic transistors MEMRISTOR artificial neural network
下载PDF
Effect of external magnetic field on the instability of THz plasma waves in nanoscale graphene field-effect transistors
14
作者 张丽萍 孙宗耀 +1 位作者 李佳妮 苏俊燕 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第4期683-689,共7页
The instability of plasma waves in the channel of field-effect transistors will cause the electromagnetic waves with THz frequency.Based on a self-consistent quantum hydrodynamic model,the instability of THz plasmas w... The instability of plasma waves in the channel of field-effect transistors will cause the electromagnetic waves with THz frequency.Based on a self-consistent quantum hydrodynamic model,the instability of THz plasmas waves in the channel of graphene field-effect transistors has been investigated with external magnetic field and quantum effects.We analyzed the influence of weak magnetic fields,quantum effects,device size,and temperature on the instability of plasma waves under asymmetric boundary conditions numerically.The results show that the magnetic fields,quantum effects,and the thickness of the dielectric layer between the gate and the channel can increase the radiation frequency.Additionally,we observed that increase in temperature leads to a decrease in both oscillation frequency and instability increment.The numerical results and accompanying images obtained from our simulations provide support for the above conclusions. 展开更多
关键词 graphene field-effect transistors external magnetic field radiation frequency instability increment
下载PDF
Device design principles and bioelectronic applications for flexible organic electrochemical transistors
15
作者 Lin Gao Mengge Wu +1 位作者 Xinge Yu Junsheng Yu 《International Journal of Extreme Manufacturing》 SCIE EI CAS CSCD 2024年第1期126-153,共28页
Organic electrochemical transistors(OECTs) exhibit significant potential for applications in healthcare and human-machine interfaces, due to their tunable synthesis, facile deposition, and excellent biocompatibility. ... Organic electrochemical transistors(OECTs) exhibit significant potential for applications in healthcare and human-machine interfaces, due to their tunable synthesis, facile deposition, and excellent biocompatibility. Expanding OECTs to the fexible devices will significantly facilitate stable contact with the skin and enable more possible bioelectronic applications. In this work,we summarize the device physics of fexible OECTs, aiming to offer a foundational understanding and guidelines for material selection and device architecture. Particular attention is paid to the advanced manufacturing approaches, including photolithography and printing techniques, which establish a robust foundation for the commercialization and large-scale fabrication. And abundantly demonstrated examples ranging from biosensors, artificial synapses/neurons, to bioinspired nervous systems are summarized to highlight the considerable prospects of smart healthcare. In the end, the challenges and opportunities are proposed for fexible OECTs. The purpose of this review is not only to elaborate on the basic design principles of fexible OECTs, but also to act as a roadmap for further exploration of wearable OECTs in advanced bio-applications. 展开更多
关键词 flexible organic electrochemical transistors wearable bioelectronics manufacturing approaches device physics neuromorphic applications
下载PDF
Implementation of sub-100 nm vertical channel-all-around(CAA) thin-film transistor using thermal atomic layer deposited IGZO channel
16
作者 Yuting Chen Xinlv Duan +9 位作者 Xueli Ma Peng Yuan Zhengying Jiao Yongqing Shen Liguo Chai Qingjie Luan Jinjuan Xiang Di Geng Guilei Wang Chao Zhao 《Journal of Semiconductors》 EI CAS CSCD 2024年第7期40-44,共5页
In-Ga-Zn-O(IGZO) channel based thin-film transistors(TFT), which exhibit high on-off current ratio and relatively high mobility, has been widely researched due to its back end of line(BEOL)-compatible potential for th... In-Ga-Zn-O(IGZO) channel based thin-film transistors(TFT), which exhibit high on-off current ratio and relatively high mobility, has been widely researched due to its back end of line(BEOL)-compatible potential for the next generation dynamic random access memory(DRAM) application. In this work, thermal atomic layer deposition(TALD) indium gallium zinc oxide(IGZO) technology was explored. It was found that the atomic composition and the physical properties of the IGZO films can be modulated by changing the sub-cycles number during atomic layer deposition(ALD) process. In addition, thin-film transistors(TFTs) with vertical channel-all-around(CAA) structure were realized to explore the influence of different IGZO films as channel layers on the performance of transistors. Our research demonstrates that TALD is crucial for high density integration technology, and the proposed vertical IGZO CAA-TFT provides a feasible path to break through the technical problems for the continuous scale of electronic equipment. 展开更多
关键词 In-Ga-Zn-O(IGZO) thermal atomic layer deposition vertical channel thin-film transistor
下载PDF
Transient Response and Ionic Dynamics in Organic Electrochemical Transistors
17
作者 Chao Zhao Jintao Yang Wei Ma 《Nano-Micro Letters》 SCIE EI CAS CSCD 2024年第11期191-223,共33页
The rapid development of organic electrochemical transistors(OECTs)has ushered in a new era in organic electronics,distinguishing itself through its application in a variety of domains,from high-speed logic circuits t... The rapid development of organic electrochemical transistors(OECTs)has ushered in a new era in organic electronics,distinguishing itself through its application in a variety of domains,from high-speed logic circuits to sensitive biosensors,and neuromorphic devices like artificial synapses and organic electrochemical random-access memories.Despite recent strides in enhancing OECT performance,driven by the demand for superior transient response capabilities,a comprehensive understanding of the complex interplay between charge and ion transport,alongside electron–ion interactions,as well as the optimization strategies,remains elusive.This review aims to bridge this gap by providing a systematic overview on the fundamental working principles of OECT transient responses,emphasizing advancements in device physics and optimization approaches.We review the critical aspect of transient ion dynamics in both volatile and non-volatile applications,as well as the impact of materials,morphology,device structure strategies on optimizing transient responses.This paper not only offers a detailed overview of the current state of the art,but also identifies promising avenues for future research,aiming to drive future performance advancements in diversified applications. 展开更多
关键词 Organic electrochemical transistors Transient response Ion dynamics Electronic dynamics Volatility and non-volatility
下载PDF
Photo-driven fin field-effect transistors
18
作者 Jintao Fu Chongqian Leng +4 位作者 Rui Ma Changbin Nie Feiying Sun Genglin Li Xingzhan Wei 《Opto-Electronic Science》 2024年第5期12-20,共9页
The integration between infrared detection and modern microelectronics offers unique opportunities for compact and high-resolution infrared imaging.However,silicon,the cornerstone of modern microelectronics,can only d... The integration between infrared detection and modern microelectronics offers unique opportunities for compact and high-resolution infrared imaging.However,silicon,the cornerstone of modern microelectronics,can only detect light within a limited wavelength range(<1100 nm)due to its bandgap of 1.12 eV,which restricts its utility in the infrared detection realm.Herein,a photo-driven fin field-effect transistor is presented,which breaks the spectral response constraint of conventional silicon detectors while achieving sensitive infrared detection.This device comprises a fin-shaped silicon channel for charge transport and a lead sulfide film for infrared light harvesting.The lead sulfide film wraps the silicon channel to form a“three-dimensional”infrared-sensitive gate,enabling the photovoltage generated at the lead sulfide-silicon junction to effectively modulate the channel conductance.At room temperature,this device realizes a broadband photodetection from visible(635 nm)to short-wave infrared regions(2700 nm),surpassing the working range of the regular indium gallium arsenide and germanium detectors.Furthermore,it exhibits low equivalent noise powers of 3.2×10^(-12) W·Hz^(-1/2) and 2.3×10^(-11) W·Hz^(-1/2) under 1550 nm and 2700 nm illumination,respectively.These results highlight the significant potential of photo-driven fin field-effect transistors in advancing uncooled silicon-based infrared detection. 展开更多
关键词 PHOTODETECTION siLICON-ON-INSULATOR lead sulfide HETEROSTRUCTURE field-effect transistors
下载PDF
Layer by Layer Self-assembly Fiber-based Flexible Electrochemical Transistor
19
作者 谭艳 HAO Panpan +2 位作者 HE Yang ZHU Rufeng 王跃丹 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS CSCD 2024年第4期937-944,共8页
Poly(3,4-ethylenedioxyethiophene)-polystyrene sulfonic acid(PEDOT:PSS)/polyallyl dimethyl ammonium chloride modified reduced graphene oxide(PDDA-rGO)was layer by layer self-assembled on the cotton fiber.The surface mo... Poly(3,4-ethylenedioxyethiophene)-polystyrene sulfonic acid(PEDOT:PSS)/polyallyl dimethyl ammonium chloride modified reduced graphene oxide(PDDA-rGO)was layer by layer self-assembled on the cotton fiber.The surface morphology and electric property was investigated.The results confirmed the dense membrane of PEDOT:PSS and the lamellar structure of PDDA-rGO on the fibers.It has excellent electrical conductivity and mechanical properties.The fiber based electrochemical transistor(FECTs)prepared by the composite conductive fiber has a maximum output current of 8.7 mA,a transconductance peak of 10 mS,an on time of 1.37 s,an off time of 1.6 s and excellent switching stability.Most importantly,the devices by layer by layer self-assembly technology opens a path for the true integration of organic electronics with traditional textile technologies and materials,laying the foundation for their later widespread application. 展开更多
关键词 layer by layer SELF-ASSEMBLY fiber based organic electrochemical transistor reduced graphene oxide PEDOT:PSS
下载PDF
一种对SIS系统紧急切断装置的性能检验的方法及装置的研究
20
作者 李锋 卞清泉 +1 位作者 郑超 朱利阳 《信息系统工程》 2025年第1期70-73,共4页
SIS系统是一种专门用于保护工业过程和设施安全的自动化系统。由于其长期处于在线状态,对其性能监测,特别是紧急切断装置性能监测的方法及设备目前尚待探索。就SIS系统的在线运行时传感器数据的无侵入采集、切断装置状态捕获、切断时间... SIS系统是一种专门用于保护工业过程和设施安全的自动化系统。由于其长期处于在线状态,对其性能监测,特别是紧急切断装置性能监测的方法及设备目前尚待探索。就SIS系统的在线运行时传感器数据的无侵入采集、切断装置状态捕获、切断时间监测方法等进行研究,并开发了一种用于SIS系统切断装置在线监测的装置,为后续数据开发应用打下基础。 展开更多
关键词 siS系统 紧急切断装置 性能检验 方法及装置
下载PDF
上一页 1 2 250 下一页 到第
使用帮助 返回顶部