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国家自然科学基金(11222220)

作品数:6 被引量:35H指数:5
相关作者:李海成张迎超陈颖冯雪陆炳卫更多>>
相关机构:清华大学更多>>
发文基金:国家自然科学基金国家重点基础研究发展计划更多>>
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Flexible inorganic bioelectronics被引量:6
2020年
Flexible inorganic bioelectronics represent a newly emerging and rapid developing research area.With its great power in enhancing the acquisition,management and utilization of health information,it is expected that these flexible and stretchable devices could underlie the new solutions to human health problems.Recent advances in this area including materials,devices,integrated systems and their biomedical applications indicate that through conformal and seamless contact with human body,the measurement becomes continuous and convenient with yields of higher quality data.This review covers recent progresses in flexible inorganic bio-electronics for human physiological parameters’monitoring in a wearable and continuous way.Strategies including materials,structures and device design are introduced with highlights toward the ability to solve remaining challenges in the measurement process.Advances in measuring bioelectrical signals,i.e.,the electrophysiological signals(including EEG,ECoG,ECG,and EMG),biophysical signals(including body temperature,strain,pressure,and acoustic signals)and biochemical signals(including sweat,glucose,and interstitial fluid)have been summarized.In the end,given the application property of this topic,the future research directions are outlooked.
Ying ChenYingchao ZhangZiwei LiangYu CaoZhiyuan HanXue Feng
关键词:INORGANICELECTRONICS
Mechanics of flexible and stretchable piezoelectrics for energy harvesting被引量:5
2015年
As rapid development in wearable/implantable electronic devices benefit human life in daily health monitoring and disease treatment medically, all kinds of flexible and/or stretchable electronic devices are booming, together with which is the demanding of energy supply with similar mechanical property. Due to its ability in converting mechanical energy lying in human body into electric energy, energy harvesters based on piezoelectric materials are promising for applications in wearable/implantable device's energy supply in a renewable, clean and life-long way. Here the mechanics of traditional piezoelectrics in energy harvesting is reviewed, including why piezoelectricity is the choice for minor energy harvesting to power the implantable/wearable electronics and how. Different kinds of up to date flexible piezoelectric devices for energy harvesting are introduced, such as nanogenerators based on Zn O and thin and conformal energy harvester based on PZT. A detailed theoretical model of the flexible thin film energy harvester based on PZT nanoribbons is summarized, together with the in vivo demonstration of energy harvesting by integrating it with swine heart. Then the initial researches on stretchable energy harvesters based on piezoelectric material in wavy or serpentine configuration are introduced as well.
CHEN YingLU BingWeiOU DaPengFENG Xue
一种基于形状记忆聚合物的可编程转印方法
可延展柔性无机电子突破了传统半导体材料不可变形的限制,在具备高性能的同时可与人体曲面环境实现完美贴合,在健康医疗和脑机融合等领域产生了巨大影响。转印是制备可延展柔性无机电子的关键技术环节,然而,如何实现高度可控且大规模的...
黄银郑宁程志强陈颖陆炳卫谢涛冯雪
关键词:激光直写形状记忆聚合物微结构
软衬底表面微结构对硬薄膜失稳构型的调控研究
软衬底/硬薄膜系统失稳在许多领域有着重要的应用,如表面光栅,微纳结构制造,及可延展柔性电子器件设计。然而,传统的一维失稳构型可调节性差,波长幅值等仅依赖有限的材料选择,可延展性能有限。软物质表面的微纳米结构可以带来宏观性...
张迎超马寅佶冯雪
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可延展柔性光子/电子集成器件及转印技术被引量:9
2016年
基于无机半导体材料的光子/电子集成器件,是现代信息系统的重要组成部分和基础支撑.人与信息的交互融合是信息技术的主要发展方向,这种新的信息交互手段对电子集成器件提出了可延展柔性化的需求,以实现物理世界、信息数据和人类社会资源的综合利用.可延展柔性化的集成器件,可突破传统刚性无机集成器件不可变形、无法与人体曲面环境集成的瓶颈,极大拓展了传统半导体器件的物理形态及应用范围,也必将在健康医疗、脑机融合、物联网等领域产生巨大影响.本文对可延展柔性光子/电子集成器件的基本原理和设计方法进行了详细介绍,并以大脑、心脏和皮肤可集成的可延展柔性无机电子集成器件为例展示了其在生物医疗方面的应用价值,然后介绍了可延展柔性光子/电子集成器件的转印制备技术,最后展望了其未来发展方向.
黄银李海成陈颖蔡世生张迎超陆炳卫冯雪
关键词:转印
Improving the thermal shock resistance of ceramics by crack arrest blocks
2016年
Ceramics used in the high temperature environment are inevitably subjected to sudden temperature change, which may lead to catastrophic thermal shock failure due to the intrinsic brittleness of ceramics. In this paper, an experimental platform is designed to realize the in-situ observation during the thermal shock experiments. Experimental results show that all the cracks initiate from one of the edge midpoints and propagate to another one for square specimens. Such experimental observation is consistent with the maximum tensile stress zone with the maximum temperature gradient given by the finite element method(FEM). The different crack modes resulting from different heating rates after thermal shock experiments are observed and analyzed. Comparison between different clamping methods is conducted to study the effects of boundary conditions on the thermal shock experiments. Furthermore, in order to improve the thermal shock performance of alumina ceramics, crack arrest blocks are added near the edge midpoint. The thickness, shape and arrangement of the blocks are systematically investigated to understand the mechanism of improvement of thermal shock resistance.
WANG Yan WeiXIA BiaoSU Hong HongCHEN HangFENG Xue
基于攀爬仿生的3D螺旋形缠绕电极与神经调控
外周神经电刺激与信号采集在治疗一些药物难治性疾病如癫痫,抑郁,心衰,假肢等方面具有十分重要的临床意义。而现有的神经电极与外周神经束软组织力学性质及几何结构极度不匹配,且需要复杂的手术植入过程。由此引起的神经束极大损伤,如...
张迎超冯雪
关键词:形状记忆
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