期刊文献+
共找到7篇文章
< 1 >
每页显示 20 50 100
High-Porosity Foam-Based Iontronic Pressure Sensor with Superhigh Sensitivity of 9280 kPa^(-1) 被引量:2
1
作者 Qingxian Liu Yuan Liu +3 位作者 Junli Shi Zhiguang Liu Quan Wang chuan fei guo 《Nano-Micro Letters》 SCIE EI CAS CSCD 2022年第2期12-23,共12页
Flexible pressure sensors with high sensitivity are desired in the fields of electronic skins,human-machine interfaces,and health monitoring.Employing ionic soft materials with microstructured architectures in the fun... Flexible pressure sensors with high sensitivity are desired in the fields of electronic skins,human-machine interfaces,and health monitoring.Employing ionic soft materials with microstructured architectures in the functional layer is an effective way that can enhance the amplitude of capacitance signal due to generated electron double layer and thus improve the sensitivity of capacitive-type pressure sensors.However,the requirement of specific apparatus and the complex fabrication process to build such microstructures lead to high cost and low productivity.Here,we report a simple strategy that uses open-cell polyurethane foams with high porosity as a continuous three-dimensional network skeleton to load with ionic liquid in a one-step soak process,serving as the ionic layer in iontronic pressure sensors.The high porosity(95.4%) of PU-IL composite foam shows a pretty low Young's modulus of 3.4 kPa and good compressibility.A superhigh maximum sensitivity of 9,280 kPa^(-1) in the pressure regime and a high pressure resolution of 0.125% are observed in this foam-based pressure sensor.The device also exhibits remarkable mechanical stability over 5,000 compression-release or bending-release cycles.Such high porosity of composite structure provides a simple,cost-effective and scalable way to fabricate super sensitive pressure sensor,which has prominent capability in applications of water wave detection,underwater vibration sensing,and mechanical fault monitoring. 展开更多
关键词 High porosity Elastic modulus Compression deformation Iontronic pressure sensor Superhigh sensitivity
下载PDF
Silver nanowires for anti-counterfeiting
2
作者 Yan Wang Ningning Bai +9 位作者 Junlong Yang Zhiguang Liu Gang Li Minkun Cai Lingyu Zhao Yuan Zhang Jianming Zhang Chunhua Li Yunlong Zhou chuan fei guo 《Journal of Materiomics》 SCIE EI 2020年第1期152-157,共6页
Silver nanowire(AgNW)films have been widely used as flexible transparent electrodes due to the high electrical conductance and high transmittance in the visible range.The infrared(IR)properties of AgNW films,however,a... Silver nanowire(AgNW)films have been widely used as flexible transparent electrodes due to the high electrical conductance and high transmittance in the visible range.The infrared(IR)properties of AgNW films,however,are seldom discussed.Here,we show that ultrathin AgNWs present high transmittance in the visible range(~95%)and high reflectance(60-70%)in the IR range of 8e14 mm.Such a significant difference makes AgNW films invisible to naked eyes but visible under an IR camera,being an ideal selection for anti-counterfeit technologies,while no excitation is required.We have demonstrated that AgNW films can be spray-coated on either flat or microstructured surfaces with high conformability and high scratch-resistance,and thus these anti-counterfeiting materials can be applied to a variety of applications.The AgNW-based anti-counterfeiting may be helpful for combating counterfeiting crimes in the fields of medicines,artwork,banknotes,brand luxuries,industrial parts,and so on. 展开更多
关键词 Silver nanowires ANTI-COUNTERFEITING Infrared light Excitation-free Conformability
原文传递
Metallic nanostructures for light trapping in energy-harvesting devices 被引量:14
3
作者 chuan fei guo Tianyi Sun +2 位作者 Feng Cao Qian Liu Zhifeng Ren 《Light(Science & Applications)》 SCIE EI CAS 2014年第1期231-242,共12页
Solar energy is abundant and environmentally friendly.Light trapping in solar-energy-harvesting devices or structures is of critical importance.This article reviews light trapping with metallic nanostructures for thin... Solar energy is abundant and environmentally friendly.Light trapping in solar-energy-harvesting devices or structures is of critical importance.This article reviews light trapping with metallic nanostructures for thin film solar cells and selective solar absorbers.The metallic nanostructures can either be used in reducing material thickness and device cost or in improving light absorbance and thereby improving conversion efficiency.The metallic nanostructures can contribute to light trapping by scattering and increasing the path length of light,by generating strong electromagnetic field in the active layer,or by multiple reflections/absorptions.We have also discussed the adverse effect of metallic nanostructures and how to solve these problems and take full advantage of the light-trapping effect. 展开更多
关键词 conversion efficiency light trapping photovoltaics PLASMONICS solar absorber
原文传递
A stretchable and adhesive ionic conductor based on polyacrylic acid and deep eutectic solvents 被引量:2
4
作者 Gang Li Zhihao Deng +9 位作者 Minkun Cai Kaixi Huang Mengxue guo Ping Zhang Xingyu Hou Yuan Zhang Yueji Wang Yan Wang Xiang Wu chuan fei guo 《npj Flexible Electronics》 SCIE 2021年第1期175-182,共8页
Hydrogels are a widely used ionic conductor in on-skin electronic and iontronic devices.However,hydrogels dehydrate in the open air and freeze at low temperatures,limiting their real applications when they are attache... Hydrogels are a widely used ionic conductor in on-skin electronic and iontronic devices.However,hydrogels dehydrate in the open air and freeze at low temperatures,limiting their real applications when they are attached on skin or exposed to low temperatures.Polymer-ionic liquid gels can overcome these two obstacles,but synthetic ionic liquids are expensive and toxic.In this work,we present an ionic conductor based on polyacrylic acid(PAAc)and deep eutectic solvents(DESs)that well addresses the aforementioned challenges.We polymerize acrylic acid in DESs to get the PAAc–DES gel,which exhibits excellent stretchability(>1000%),high electrical conductivity(1.26 mS cm^(−1)),high adhesion to the skin(~100 Nm^(−1)),as well as good anti-drying and anti-freezing properties.We also demonstrate that the PAAc-DES gel can be used as an on-skin electrode to record the surface electromyographic signal with high signal quality,or as a transparent stretchable electrode in iontronic devices that can work at–20℃.We believe that the PAAc–DES gels are an ideal candidate as epidermal electrodes or transparent stretchable electrodes. 展开更多
关键词 PROPERTIES IONIC conductor
原文传递
Sugar transfer of nanomaterials and flexible electrodes 被引量:1
5
作者 Tianzeng Hong Tianze Shen +8 位作者 Junlong Yang Yichen Sun Jianming Zhang Haiyang Pan Ying Hong Yan Wang Shuo Chen Yue Zhao chuan fei guo 《International Journal of Smart and Nano Materials》 SCIE EI 2020年第1期1-10,共10页
Nanomaterials with various dimensionalities(e.g.,nanowires,nanofilms,two-dimensional materials,and three-dimensional nanostructures)have shown great potential in the recent development of flexible electronics.Conventi... Nanomaterials with various dimensionalities(e.g.,nanowires,nanofilms,two-dimensional materials,and three-dimensional nanostructures)have shown great potential in the recent development of flexible electronics.Conventionally,organic solvents are inevitable while integrating nanomaterials onto flexible substrates,where polymer mediator-assisted transfer techniques are involved.This often damages the flexible substrate and thus hamper the large-scale application of nanomaterials.Here we report a method using watersoluble sugar as a mediator to facilely transfer nanomaterials onto rigid or flexible substrates.This method requires no organic solvent during transfer.More importantly,the morphology and properties of transferred nanomaterials,such as shape,microstructure,resistivity,and transmittance are well preserved on the target substrate.We believe that this universal and rapid transfer method can greatly advance the applications of nanomaterials in the field of flexible devices and beyond. 展开更多
关键词 Sugar transfer graphene flexible electrode NANOMATERIALS
原文传递
Integration of Soft Electronics and Biotissues 被引量:3
6
作者 chuan fei guo Liming Ding 《The Innovation》 2021年第1期100-101,共2页
The collection of physiological signals as well as the electrical stimulation to the biotissues are significant but challenging.There is a huge gap between the living systems and electronics.Biotissues are wet and sof... The collection of physiological signals as well as the electrical stimulation to the biotissues are significant but challenging.There is a huge gap between the living systems and electronics.Biotissues are wet and soft,while electronics are dry and relatively stiff;biotissues conduct ions,while electronic materials often conduct electrons.As a result,forming a stable interface for bidirectional electrical communications between electronics and the living systems is difficult.In this perspective,we review recent landmark progresses made in this field,and propose a few future directions that scientists may further work on. 展开更多
关键词 INTEGRATION DIRECTIONS ELECTRONICS
原文传递
Atomic origin of the traps in memristive interface
7
作者 Ye Tian Lida Pan +1 位作者 chuan fei guo Qian Liu 《Nano Research》 SCIE EI CAS CSCD 2017年第6期1924-1931,共8页
In recent years, trap-related interfacial transport phenomena have received great attention owing to their potential applications in resistive switching devices and photo detectors. Not long ago, one new type of memri... In recent years, trap-related interfacial transport phenomena have received great attention owing to their potential applications in resistive switching devices and photo detectors. Not long ago, one new type of memristive interface that is composed of F-doped SnO2 and Bi2S3 nano-network layers has demonstrated a bivariate-continuous-tunable resistance with a swift response comparable to the one in neuron synapses and with a brain-like memorizing capability. However, the resistive mechanism is still not clearly understood because of lack of evidence, and the limited improvement in the development of the interfacial device. By combining I-V characterization, electron energy-loss spectroscopy, and first- principle calculation, we studied in detail the macro/micro features of the memristive interface using experimental and theoretical methods, and confirmed that its atomic origin is attributed to the traps induced by O-doping. This implies that impurity-doping might be an effective strategy for improving switching features and building new interfacial memristors. 展开更多
关键词 memristance interface trap state first principle calculation
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部