신축성 전자소자를 위한 신축성 전극 및 스트레인 센서 개발 동향

논문상세정보
    • 저자 박진영 이원재 남현진 좌성훈
    • 제어번호 105976407
    • 학술지명 마이크로전자 및 패키징학회지
    • 권호사항 Vol. 25 No. 4 [ 2018 ]
    • 발행처 한국마이크로전자및패키징학회
    • 자료유형 학술저널
    • 수록면 25-34
    • 언어 Korean
    • 출판년도 2018
    • 등재정보 KCI등재
    • 판매처
    유사주제 논문( 0)

' 신축성 전자소자를 위한 신축성 전극 및 스트레인 센서 개발 동향' 의 참고문헌

  • Zigzag-Shaped Silver Nanoplates: Synthesis via Ostwald Ripening and Their Application in Highly Sensitive Strain Sensors
    J. Kim [2018]
  • Ultrasensitive and Stretchable Strain Sensors Based on Mazelike Vertical Graphene Network
    S. Wu [2018]
  • Tunneling resistance and its effect on the electrical conductivity of carbon nanotube nanocomposites
    W. S. Bao [2012]
  • Three-Dimensional Continuous Conductive Nanostructure for Highly Sensitive and Stretchable Strain Sensor
    D. Cho [2017]
  • Three-Dimensional Compressible and Stretchable Conductive Composites
    Y. Yu [2014]
  • Surface Micro-Structured Stretchable Strain Sensor toward Biaxial Sensitivity and Performance Enhancement
    M. S. Kim [2017]
  • Stretching and twisting sensing with liquid-metal strain gauges printed on silicone elastomers
    S. Kim [2015]
  • Stretchable, Transparent, Tough, Ultrathin, and Self-limiting Skinlike Substrate for Stretchable Electronics
    A. Hanif [2018]
  • Stretchable and self-healing polymers and devices for electronic skin
  • Stretchable and foldable silicon-based electronics
  • Stretchable Conductors with Ultrahigh Tensile Strain and Stable Metallic Conductance Enabled by Prestrained Polyelectrolyte Nanoplatforms
    X. Wang [2011]
  • Strain response of stretchable micro-electrodes: Controlling sensitivity with serpentine designs and encapsulation
    P. Gutruf [2014]
  • Solderable and electroplatable flexible electronic circuit on a porous stretchable elastomer
    G. S. Jeong [2012]
  • SkinGest: artificial skin for gesture recognition via filmy stretchable strain sensors
    L. Li [2018]
  • Secondary Sensitivity Control of Silver-Nanowire-Based Resistive-Type Strain Sensors by Geometric Modulation of the Elastomer Substrate
    Y. Heo [2017]
  • Scientific Importance of Water-Processable PEDOT-PSS and Preparation, Challenge and New Application in Sensors of Its Film Electrode: A Review
    Y. Wen [2017]
  • Rapid Fabrication of Flexible and Stretchable Strain Sensor by Chitosan-Based Water Ink for Plants Growth Monitoring
    W. Tang [2017]
  • Pursuing prosthetic electronic skin
    A. Chortos [2016]
  • Printable stretchable interconnects
    W. Dang [2013]
  • Printable elastic conductors with a high conductivity for electronic textile applications
  • Polymer-Embedded Carbon Nanotube Ribbons for Stretchable Conductors
    Y. Zhang [2010]
  • Percolating conduction in finite nanotube networks
    S. Kumar [2005]
  • Omni-Purpose Stretchable Strain Sensor Based on a Highly Dense Nanocracking Structure for Whole-Body Motion Monitoring
    H. Jeon [2017]
  • Mogul-Patterned Elastomeric Substrate for Stretchable Electronics
    H.-B. Lee [2016]
  • Mechanical Behaviour of Skin: A Review
    A. Kalra [2016]
  • Measurement of nonlinear mechanical properties of PDMS elastomer
    T. K. Kim [2011]
  • Materials for semiconductor devices that can bend, fold, twist, and stretch
  • Materials and Devices for Transparent Stretchable Electronics
    T. Q. Trung [2017]
  • MWCNTs based flexible and stretchable strain sensors
    S. A. Khan [2017]
  • Lowering Internal Friction of 0D-1D-2D Ternary Nanocomposite-Based Strain Sensor by Fullerene to Boost the Sensing Performance
    X. Shi [2018]
  • Large-Area Compliant, Low-Cost, and Versatile Pressure Sensing Platform Based on Microcrack-Designed Carbon Black@Polyurethane Sponge for Human-Machine Interfacing
    X. D. Wu [2016]
  • Implementation and wireless readout of passive UHF RFID strain sensor tags based on electro-textile antennas
    F. Long [2015]
  • Highly stretchable strain sensor based on polyurethane substrate using hydrogen bond-assisted laminated structure for monitoring of tiny human motions
    Y. Huang [2018]
  • Highly stretchable strain sensor based on SWCNTs/CB synergistic conductive network for wearable human-activity monitoring and recognition
    X. Guo [2017]
  • Highly stretchable and wearable graphene strain sensors with controllable sensitivity for human motion monitoring
    J. J. Park [2015]
  • Highly stretchable and transparent nanomesh electrodes made by grain boundary lithography
    C. F. Guo [2014]
  • Highly stretchable and sensitive strain sensor based on silver nanowire-elastomer nanocomposite
    M. Amjadi [2014]
  • Highly Stretchable and Wearable Strain Sensor Based on Printable Carbon Nanotube Layers/Polydimethylsiloxane Composites with Adjustable Sensitivity
    X. Wang [2018]
  • Highly Stretchable Strain Sensors with Reduced Graphene Oxide Sensing Liquids for Wearable Electronics
    M. Xu [2018]
  • Highly Stretchable Piezoresistive Graphene-Nanocellulose Nanopaper for Strain Sensors
    C. Y. Yan [2014]
  • Highly Sensitive and Stretchable Strain Sensor Based on Ag@CNTs
    Q. Zhang [2017]
  • Flexible, Stretchable Sensors for Wearable Health Monitoring: Sensing Mechanisms, Materials, Fabrication Strategies and Features
    Y. Liu [2018]
  • Flexible and Stretchable Electronics Paving the Way for Soft Robotics
    N. Lu [2013]
  • Fabrication of Metallic Nanomesh: Pt Nano-Mesh as a Proof of Concept for Stretchable and Transparent Electrodes
    H. Y. Jang [2013]
  • Environmentally sustainable organic field effect transistors
  • Elastic substrates for stretchable devices
    D. Qi [2017]
  • Development of a Waterproof Crack-Based Stretchable Strain Sensor Based on PDMS Shielding
    S. K. Hong [2018]
  • Cross-buckled structures for stretchable and compressible thin film silicon solar cells
    J. Nam [2017]
  • Buckled andWavy Ribbons of GaAs for High-Performance Electronics on Elastomeric Substrates
    Y. Sun [2006]
  • Bendability optimization of flexible optical nanoelectronics via neutral axis engineering
    S. Lee [2012]
  • An Elastomeric Transparent Composite Electrode Based on Copper Nanowires and Polyurethane
    W. L. Hu [2014]
  • Ag Nanowire Reinforced Highly Stretchable Conductive Fibers for Wearable Electronics
    S. Lee [2015]
  • A well-organized graphene nanostructure for versatile strain-sensing application constructed by a covalently bonded graphene/rubber interface
    Q. Guo [2018]
  • A skin-integrated transparent and stretchable strain sensor with interactive color-changing electrochromic displays
    H. Park [2017]
  • A photonic sintering derived Ag flake/nanoparticle-based highly sensitive stretchable strain sensor for human motion monitoring
    I. Kim [2018]
  • A low-cost, printable, and stretchable strain sensor based on highly conductive elastic composites with tunable sensitivity for human motion monitoring
    Y. Hu [2018]
  • A Self-Healing Electronic Sensor Based on Thermal-Sensitive Fluids
    Y. He [2015]