维普中文期刊产品整合服务
共被期刊论文引用了8次 您的检索式:您选中1篇文献正在查看引证文献汇总
    题名 作者 年代 出处 被引量
1碳材料基柔性可穿戴传感器(英文)显示文摘近年来,柔性传感器因其在可穿戴电子设备和智能系统中的广阔应用前景而备受关注.柔性可穿戴传感器具有高灵敏度、良好的机械柔性、优异的稳定性、人体友好性等特点,在人体运动与生理信号监测、环境因素检测等方面具有极大的应用潜力.一般而言,柔性传感器的性能主要取决于敏感材料的选择与器件的结构设计.得益于其优异的性能和灵活多样的组装结构与形貌,碳材料是目前应用最广泛的敏感材料之一.根据需求,纳米碳材料可组装为各类宏观结构,比如一维的纤维,二维的薄膜和三维的块体结构,从而可用于制备各种柔性传感器以适应不同的需求.此外,通过规模化、低成本的高温碳化工艺可以将天然生物质材料转化为柔性、导电碳材料,并用于高性能柔性传感器制备.本文针对碳材料在柔性器件中的应用,综述了各类碳材料的制备方法与结构特点,并重点介绍了其柔性可穿戴传感器的制备与性能.第一部分简要介绍了柔性传感器与碳材料;第二部分概述了四类典型柔性传感器的工作原理与性能特点;第三部分详细综述了一维、二维和三维碳材料的制备方法与其在柔性传感器的组装、性能与应用方面的最新研究进展;最后,总结了碳基柔性传感器领域的发展现状,讨论了该领域所面临的挑战及其未来前景.蹇木强 王春雅 王琪 王惠民 夏凯伦 訚哲 张明超 梁晓平 张莹莹 2017Science China Materials2017,60,11:7
2Superelastic wire-shaped supercapacitor sustaining 850% tensile strain based on carbon nanotube@graphene fiber显示文摘Huimin Wang Chunya Wang Muqiang Jian Qi Wang Kailun Xia Zhe Yin Mingchao Zhang Xiaoping Liang Yingying Zhang 2018Nano Research2018,11,5:6
3Recent advances in the development of nanomedicines for the treatment of ischemic stroke显示文摘Ischemic stroke is still a serious threat to human life and health,but there are few therapeutic options available to treat stroke because of limited blood-brain penetration.The development of nanotechnology may overcome some of the problems related to traditional drug development.In this review,we focus on the potential applications of nanotechnology in stroke.First,we will discuss the main molecular pathological mechanisms of ischemic stroke to develop a targeted strategy.Second,considering the important role of the blood-brain barrier in stroke treatment,we also delve mechanisms by which the blood-brain barrier protects the brain,and the reasons why the therapeutics must pass through the blood-brain barrier to achieve efficacy.Lastly,we provide a comprehensive review related to the application of nanomaterials to treat stroke,including liposomes,polymers,metal nanoparticles,carbon nanotubes,graphene,black phosphorus,hydrogels and dendrimers.To conclude,we will summarize the challenges and future prospects of nanomedicine-based stroke treatments.Xing Tian Taojian Fan Wentian Zhao Ghulam Abbas Bo Han Ke Zhang Nan Li Ning Liu Weiyuan Liang Hao Huang Wen Chen Bing Wang Zhongjian Xie 2021Bioactive Materials2021,6,9:4
4Nanoscale engineering of conducting polymers for emerging applications in soft electronics显示文摘Soft electronics featuring exceptional mechanical compliance and excellent electrical performance hold great promise for applications in soft robotics,artificial intelligence,bio-integrated electronics,and wearable electronics.Intrinsically stretchable and conductive materials are crucial for soft electronics,enabling large-area and scalable fabrication,high device density,and good mechanical compliance.Conducting polymers are inherently stretchable and conductive.They can be precisely synthesized from vastly available building blocks,and thus they provide a fruitful platform for fabricating soft electronics.However,amorphous bulk-phase conducting polymers typically exhibit poor mechanical and electrical characteristics.Consequently,it is highly desirable to develop novel engineering approaches to overcome the intrinsic limitations of conducting polymers.In recent years,numerous engineering strategies have been developed to enhance their performances in soft electronic devices via constructing various nanostructures.In this review,we first summarize several unique methodologies to fabricate conducting polymer-based nanostructures.We then discuss how nanoscale engineering approaches can improve several crucial parameters,including electrical conductivity,stretchability,sensitivity,and self-healing property of conducting polymers.Moreover,we also discuss device-level integration of conducting polymer-based nanostructures with other materials for applications in skin-inspired electronics and bio-integrated electronics.Finally,we provide perspectives on challenges and future directions in engineering nanostructured conducting polymers for soft electronics.Tao Wang Yiwen Bao Mengdi Zhuang Jiacheng Li Juncheng Chen Hangxun Xu 2021Nano Research2021,14,9:3
5Optoelectronic sensing of biophysical and biochemical signals based on photon recycling of a micro-LED显示文摘Conventional bioelectrical sensors and systems integrate multiple power harvesting,signal amplification and data transmission components for wireless biological signal detection.This paper reports the real-time biophysical and biochemical activities can be optically captured using a microscale light-emitting diode(micro-LED),eliminating the need for complicated sensing circuit.Such a thin-film diode based device simultaneously absorbs and emits photons,enabling wireless power harvesting and signal transmission.Additionally,owing to its strong photon-recycling effects,the micro-LED^photoluminescence(PL)emission exhibits a superlinear dependence on the external conductance.Taking advantage of these unique mechanisms,instantaneous biophysical signals including galvanic skin response,pressure and temperature,and biochemical signals like ascorbic acid concentration,can be optically monitored,and it demonstrates that such an optoelectronic sensing technique outperforms a traditional tethered,electrically based sensing circuit,in terms of its footprint,accuracy and sensitivity.This presented optoelectronic sensing approach could establish promising routes to advanced biological sensors.He Ding Guoqing Lv Zhao Shi Dali Cheng Yang Xie Yunxiang Huang Lan Yin Jian Yang Yongtian Wang Xing Sheng 2021Nano Research2021,14,9:2
6Oxygen-assisted preparation of mechanoluminescent ZnS:Mn for dynamic pressure mapping显示文摘变换机械刺激点亮排放的 Mechanoluminescent 材料在人机器的相互作用为潜在的应用吸引了广泛的注意。这里,我们为 ZnS 的帮助氧的准备报导一条简单、可得到的新奇途径: Mn 粒子由固态在没有相应氧化物的形成的气压的反应。O 2 的存在在 wurtzite 阶段 ZnS 在 S 空缺的形成上有积极影响,导致 Mn 2+ 离子的介绍光中心和浅施主铺平,它能改进电子洞再结合率。O 2 比率和 Mn 2+ 离子做集中在发光效率上有重要效果,它分别地在 1%-20% 和 1 at.%-2 at.% 是最佳的。另外,一台设备基于有 0.032 MPa 1 的优秀压力敏感的 piezo-photonic 效果被制作,它能印射在 situ 从 2.2 ~ 40.6 MPa 的二维的压力分发。这台设备能被用于即时压力印射,聪明的传感器网络,高级安全系统,人机器的接口,和人工的皮肤。Xiandi Wang Rui Ling Yufei Zhang Miaoling Que Yiyao Peng Caofeng Pan 2018Nano Research2018,11,4:1
7Ultrasensitive detection of Ebola matrix protein in a memristor mode显示文摘我们表明 Ebola VP40 矩阵蛋白质的直接 biosensing,用液体综合的 nanodevice 的一个 memristor 模式,基于塑造蜂房的硅 nanowires 的一个大数组。为了流更多,用 memristors 在 biodetection 的原则上点亮,我们设计了当前最小的电压差距 V 由包含第三个差距控制电极的差距 ( 门电压, V G ) 进系统。V G 是在传感器的活跃区域模仿需要的符号的控告的种类的存在。我们进一步与开始打开的控制差距显示出 biodetection 的优点(V 差距 0 ) ,它允许带任意的积极或否定的费用的 biomolecules 的最低集中的察觉;这个特征不是在以前的配置的现在。我们比较了 bio-memristor 表演,以它的察觉范围和敏感,到已经知道的地效果晶体管(联邦货物税) 的由操作一样的设备的模式。到我们的知识,这是用 nanoscaled 的 Ebola 矩阵蛋白质察觉的第一示范电的传感器。Bergoi Ibarlucea Teuku Fawzul Akbar Kihyun Kim Taiuk Rim Chang-Ki Baek Alon Ascoli Ronald Tetzlaff Larysa Baraban Gianaurelio Cuniberti 2018Nano Research2018,11,2:0
8Recent advances in flexible pressure/strain sensors using carbon nanotubes显示文摘In the context of the information society,wearable devices show broad prospects in the fields of vital signs monitoring,plant health monitoring,artificial electronic skin.As an inseparable part of wearable devices,flexible pressure/strain sensors have attracted wide attention.Structures and active materials are core factors affecting sensing performance.For the past few years,the introduction of carbon materials,especially carbon nanotubes,has provided more possibilities for improving performance.Great efforts have been devoted to researching pressure/strain sensors based on carbon nanotubes with excellent performance or unique features.Herein,the process in recent years in novel flexible pressure/strain sensors based on carbon nanotubes is reviewed.Fabrication strategies are discussed because it suggests sensing performance with significant differences and gives additional features like biodegradability and corrosion resistance to sensors.Furthermore,the scope of application has been extended to plant monitor,except for common human movement monitor.This review can help the researchers compare the influence of different fabrication strategies on the sensing performance and provide references for fabricating sensors in different applications.Chan Ma Ruiyun Zhou Lijuan Xie 2022International Journal of Agricultural and Biological Engineering2022,15,2:0
返回顶部 每页显示:
共1页 首页 上一页 第1页 下一页 末页 /1 跳转

网站首页 | 关于我们 | 联系我们 | 产品服务 | 客服中心 | 广告服务 | 版权声明 | 网站联盟 | 友情链接 | 售卡网点

版权所有© 渝B2-20050021-1 渝公网安备 50019002500403号 违法和不良信息举报中心

互联网出版许可证 新出网证(渝)字10号 全国400电话 - 免长途话费