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检索条件"作者=Oliver G.Schmidt"
193 条 记 录,以下是1-10 订阅
排序:
Light-Driven Ion Transport in Nanofluidic Devices:Photochemical,Photoelectric,and Photothermal Effects
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CCS Chemistry 2022年 第1期4卷 54-65页
作者: Kai Xiao Oliver G.Schmidt Department of Biomedical Engineering Southern University of Science and Technology(SUSTech)Shenzhen 518055 Center for Materials Architectures and Integration of Nanomembranes(MAIN)Chemnitz University of TechnologyChemnitz 09126 Institute for Integrative Nanosciences Leibniz IFW DresdenDresden 01069
Light-driven ion transport in nanofluidic devices is a phenomenon where ions move unidirectionally by consuming optical energy,either from low concentration to high concentration or vice versa.The light-driven unidire... 详细信息
来源: 维普期刊数据库 维普期刊数据库 评论
Nano energy for miniaturized systems
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Nano Materials Science 2021年 第2期3卷 107-112页
作者: Minshen Zhu Feng Zhu Oliver G.Schmidt Institute for Integrative Nanosciences Leibniz IFW Dresden01069DresdenGermany State Key Laboratory of Polymer Physics and Chemistry Changchun Institute of Applied ChemistryChinese Academy of Sciences130022ChangchunChina Material Systems for Nanoelectronics Chemnitz University of Technology09107ChemnitzGermany Center for Materials Architectures and Integration of Nanomembranes(MAIN)Chemnitz University of Technology09126ChemnitzGermany School of Science Dresden University of TechnologyGermany
Skin mountable electronic devices are in a high-speed development at the crossroads of materials science,electronics,and computer science.Sophisticated functions,such as sensing,actuating,and computing,are integrated ... 详细信息
来源: 维普期刊数据库 维普期刊数据库 同方期刊数据库 同方期刊数据库 评论
Editorial for a special issue“Nano energy materials and devices for miniaturized electronics and smart systems”
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Nano Materials Science 2021年 第2期3卷 105-106页
作者: Feng Zhu Oliver G.Schmidt Changchun Institute of Applied Chemistry China Leibniz IFW DresdenGermany Chemnitz Chemnitz University of Technology Germany
The Smart Era urgently demands small-size, low-energy consuming and multi-functional devices which can satisfy versatile application scenarios, including autonomous systems, wireless sensor networks,biomedical equipme... 详细信息
来源: 维普期刊数据库 维普期刊数据库 同方期刊数据库 同方期刊数据库 评论
Recent developments of stamped planar micro-supercapacitors: Materials,fabrication and perspectives
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Nano Materials Science 2021年 第2期3卷 154-169页
作者: Fei Li Yang Li Jiang Qu Jinhui Wang Vineeth Kumar Bandari Feng Zhu Oliver G.Schmidt Material Systems for Nanoelectronics Chemnitz University of Technology09107ChemnitzGermany State Key Laboratory of Polymer Physics and Chemistry Changchun Institute of Applied ChemistryChinese Academy of Sciences130022ChangchunChina Center for Materials Architectures and Integration of Nanomembranes(MAIN)Chemnitz University of Technology09126ChemnitzGermany Institute for Integrative Nanosciences Leibniz IFW Dresden01069DresdenGermany School of Science Dresden University of Technology01062DresdenGermany
The rapid development of wearable and portable electronics has dramatically increased the application for miniaturized energy storage components.Stamping micro-supercapacitors(MSCs)with planar interdigital configurati... 详细信息
来源: 维普期刊数据库 维普期刊数据库 同方期刊数据库 同方期刊数据库 评论
Advanced architecture designs towards high-performance 3D microbatteries
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Nano Materials Science 2021年 第2期3卷 140-153页
作者: Yang Li Jiang Qu Fei Li Zhe Qu Hongmei Tang Lixiang Liu Minshen Zhu Oliver G.Schmidt Material Systems for Nanoelectronics Chemnitz University of Technology09107 ChemnitzGermany Institute for Integrative Nanosciences Leibniz IFW Dresden01069 DresdenGermany Center for Materials Architectures and Integration of Nanomembranes(MAIN)Chemnitz University of Technology09126 ChemnitzGermany School of Science Dresden University of TechnologyDresden01062Germany
Rechargeable microbatteries are important power supplies for microelectronic devices.Two essential targets for rechargeable microbatteries are high output energy and minimal footprint areas.In addition to the developm... 详细信息
来源: 维普期刊数据库 维普期刊数据库 同方期刊数据库 同方期刊数据库 评论
Interfacial synthesis of crystalline quasi-two-dimensional polyaniline thin films for high-performance flexible on-chip micro-supercapacitors
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Chinese Chemical Letters 2022年 第8期33卷 3921-3924页
作者: Tao Zhang Panpan Zhang Zhongquan Liao Faxing Wang Jinhui Wang Mingchao Wang Ehrenfried Zschech Xiaodong Zhuang Oliver G.Schmidt Xinliang Feng Key Laboratory of Bio-based Polymeric Materials Technology and Application of Zhejiang Province Ningbo Institute of Material Technology and EngineeringChinese Academy of SciencesNingbo 315201China Faculty of Chemistry and Food Chemistry Technische Universität DresdenDresden 01062Germany Center for Advancing Electronics Dresden(cfaed) Technische Universität DresdenDresden 01062Germany Fraunhofer Institute for Ceramic Technologies and Systems(IKTS) Dresden 01109Germany Material Systems for Nanoelectronics Chemnitz University of TechnologyChemnitz 09107Germany Institute for Integrative Nanosciences IFW DresdenDresden 01069Germany School of Chemistry and Chemical Engineering Frontiers Science Center for Transformative MoleculesShanghai Jiao Tong UniversityShanghai 200240China Key Laboratory for Special Functional Materials of Ministry of Education Henan UniversityKaifeng 475004China
Quasi-two-dimensional(q2 D)conducting polymer thin film synergizes the advantageous features of longrange molecular ordering and high intrinsic conductivity,which are promising for flexible thin film-based micro-super... 详细信息
来源: 维普期刊数据库 维普期刊数据库 同方期刊数据库 同方期刊数据库 评论
Self-assembly as a tool to study microscale curvature and strain-dependent magnetic properties
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npj Flexible Electronics 2022年 第1期6卷 754-762页
作者: Balram Singh Jorge A.Otálora Tong H.Kang Ivan Soldatov Dmitriy D.Karnaushenko Christian Becker Rudolf Schäfer Daniil Karnaushenko Volker Neu Oliver G.Schmidt Institute for Integrative Nanosciences Leibniz IFW Dresden01069 DresdenGermany Nanophysics Faculty of PhysicsTU Dresden01062 DresdenGermany Departamento de Física Universidad Católica del NorteAvenida Angamos 0610Casilla 1280 AntofagastaChile Institute for Metallic Materials Leibniz IFW Dresden01069 DresdenGermany Center for Materials Architectures and Integration of Nanomembranes(MAIN)Chemnitz University of Technology09126 ChemnitzGermany Institute for Materials Science TU Dresden01062 DresdenGermany Material Systems for Nanoelectronics Chemnitz University of Technology09107 ChemnitzGermany
The extension of 2D ferromagnetic structures into 3D curved geometry enables to tune its magnetic properties such as uniaxial magnetic anisotropy.Tuning the anisotropy with strain and curvature has become a promising ... 详细信息
来源: 维普期刊数据库 维普期刊数据库 评论
Entangled-photons generation with quantum dots
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Chinese Physics B 2018年 第2期27卷 140-153页
作者: 李远 丁飞 Oliver G.Schmidt Institute for Integrative Nanosciences IFW Dresden HelmholtzstraBe 20. 01069 Dresden. Germany Integrative for Solid State Physics. Leibniz University of Hunnover. AppelstBe 2.30 167 Hannovel germany
Entanglement between particles is a crucial resource in quantum information processing, an important example of which is the exploitation of entangled photons in quantum communication protocols. Among the different av... 详细信息
来源: 维普期刊数据库 维普期刊数据库 同方期刊数据库 同方期刊数据库 评论
Targeted Sub-Attomole Cancer Biomarker Detection Based on Phase Singularity 2D Nanomaterial-Enhanced Plasmonic Biosensor
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Nano-Micro Letters 2021年 第6期13卷 284-294页
作者: Yuye Wang Shuwen Zeng Aurelian Crunteanu Zhenming Xie georges Humbert Libo Ma Yuanyuan Wei Aude Brunel Barbara Bessette Jean-Christophe Orlianges Fabrice Lalloué oliver gschmidt Nanfang Yu Ho-Pui Ho Department of Biomedical Engineering The Chinese University of Hong KongShatinNew TerritoriesHong KongPeople’s Republic of China CNRS XLIM Research InstituteUMR 7252University of Limoges123Avenue Albert ThomasLimogesFrance Department of Applied Physics and Applied Mathematics Columbia UniversityNew York CityNYUSA Institute for Integrative Nanosciences IFW DresdenHelmholtzstr.20DresdenGermany Faculty of Medicine University of LimogesEA3842-CAPTuRGEIST2 rue du Dr MarclandLimogesFrance
Detection of small cancer biomarkers with low molecular weight and a low concentration range has always been challenging yet urgent in many clinical applications such as diagnosing early-stage cancer,monitoring treatm... 详细信息
来源: 维普期刊数据库 维普期刊数据库 同方期刊数据库 同方期刊数据库 评论
Unleashing energy storage ability of aqueous battery electrolytes
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Materials Futures 2022年 第2期1卷 21-37页
作者: Hongmei Tang Zhe Qu Yaping Yan Wenlan Zhang Hua Zhang Minshen Zhu Oliver G.Schmidt Center for Materials Architecturesand Integration of Nanomembranes(MAIN)TU Chemnitz09126 ChemnitzGermany Material Systems for Nanoelectronics TU Chemnitz09107 ChemnitzGermany Sustainable Materials and Chemistry Department of Wood Technology and Wood-based CompositesUniversity of Goettingen37077 GöttingenGermany School of Science TU Dresden01062 DresdenGermany
Electrolytes make up a large portion of the volume of energy storage devices,but they often do not contribute to energy storage.The ability of using electrolytes to store charge would promise a significant increase in... 详细信息
来源: 维普期刊数据库 维普期刊数据库 评论