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  • Highly stretchable fiber transistors with all stretchable

    Highly stretchable fiber transistors with all stretchable

    Highly conductive and stretchable electrodes strain level of 70 were fabricated by simple prestraining then buckling of graphene/Ag hybrid fibers on the elastic polymer monofilament. The highly stretchable strain level of 120 active channel was preparedbining a semiconducting polymer with a viscoelastic polymer.

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  • Highly stretchabledocapacitors based on buckled

    Highly stretchabledocapacitors based on buckled

    Aug 28, 2014· In order to develop an excellentdocapacitor with both high specific capacitance and outstanding stretchability to match with other devices applicable in future wearable and bio implantable systems, we focus our studies on three vital aspects: Stretchability of hybrid film electrodes, the interface betweenponents, and the integrated performance in stretchability and

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  • Single walled carbon nanotube/siliconeposites

    Single walled carbon nanotube/siliconeposites

    Single walled carbon nanotube/siliconepositespliant electrodes Y. Oh, J. Rho, J.H. Ahn, Y.J. Kim, H.R. Choi, et al.Highly conductive, printable andposite films of carbon nanotubes and W.H. JoFabrication of highly conductive and transparent thin films from single walled carbon nanotubes using a new non

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  • Jonghyun Rho's research works  Sungkyunkwan University

    Jonghyun Rho's research works Sungkyunkwan University

    Highly conductive, printable andposite films of carbon nanotubes and silver Jonghyun Rho Seunghyun Baik. Conductive films that are both stretchable and flexible could

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  • Highly conductive 1Dposite film for skin mountable

    Highly conductive 1Dposite film for skin mountable

    Here, we fabricated a sandwich structured stretchable device, whereposite film is encapsulated in two layers of polydimethylsiloxane PDMS. The highlyposite filmposed of one dimensional 1D silver nanowireswork wrapped with two dimensional 2D metallic MoS 2 nanosheets.

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  • Highly conductive, printable andposite

    Highly conductive, printable andposite

    Nov 28, 2010· Conductive films that are both stretchable and flexible could have applications in electronic devices1,2, sensors3,4, actuators5 and speakers6. A

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  • Inkjet Printed Graphene/PEDOT:PSS Temperature Sensors on a

    Inkjet Printed Graphene/PEDOT:PSS Temperature Sensors on a

    Oct 18, 2016· Similar to the role of the CNTs, the graphene flakes in the PEDOT:PSS matrix provides a means for printable, bendable, conductive films 34. Highly conductive, printable andposite films of carbon nanotubes and silver. Nat. Transparent graphene/PEDOTPSS composite films as counter electrodes of dye sensitized solar cells.

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  • Inkjet Printed Graphene/PEDOT:PSS Temperature Sensors on a

    Inkjet Printed Graphene/PEDOT:PSS Temperature Sensors on a

    Oct 18, 2016· Similar to the role of the CNTs, the graphene flakes in the PEDOT:PSS matrix provides a means for printable, bendable, conductive films 34. Highly conductive, printable andposite films of carbon nanotubes and silver. Nat. Transparent graphene/PEDOTPSS composite films as counter electrodes of dye sensitized solar cells.

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  • Highly conductive, printable andposite

    Highly conductive, printable andposite

    Highly conductive, printable andposite films of carbon nanotubes and silver. Chun KY1, Oh Y, Rho J, Ahn JH, Kim YJ, Choi HR, Baik S. Author information: 1School of Mechanical Engineering, Sungkyunkwan University, Suwon 440 746, Korea.

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  • Highly Air/Water Permeable Hierarchical Mesh Architectures

    Highly Air/Water Permeable Hierarchical Mesh Architectures

    5 hours ago· The development of an electronic skin patch that can be used in underwater environments can be considered essential for fabricating long term wearable devices and biomedical applications. Herein, we report a stretchable conductiveposite CPC patch on which an octopus sucker inspired structure is formed to conformally contact with biological skin that may be rough and

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  • Frontiers  Stretchable Conductive Networks of Carbon

    Frontiers Stretchable Conductive Networks of Carbon

    We present a study of the behavior of highly ordered, segregated single wall carbon nanotubeworks under applied strain. Polymer latex templates induce self assembly of CNTs into hexagonal 2D andbworks within the matrix. Using mechanical and spectroscopic analysis, we have studied the strain transfer mechanisms between thework and the polymer matrix. Axial

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  • Highly conductive and stretchable conductors fabricated

    Highly conductive and stretchable conductors fabricated

    Jun 01, 2012· Someyas group developed highly conductive, printable andposite films using ionic liquid, fluorinated copolymer and ultralong single walled carbon nanotubes SWNTs. 1,

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  • A low cost, printable, and stretchable strain sensor based

    A low cost, printable, and stretchable strain sensor based

    Mar 19, 2018· Strain sensors with high stretchability, broad strain range, high sensitivity, and good reliability are desirable, owing to their promising applications in electronic skins and human motion monitoring systems. In this paper, we report a high performance strain sensor based on printable and stretchable electrically conductiveposites.

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  • Fully Elastic Conductive Films from Viscoelastic

    Fully Elastic Conductive Films from Viscoelastic

    We investigated, for the first time, the conditions where a thermoplasticposite canpletely reversible stretchability at high elongational strains ε = 1.8. We studiedposite of Au nanosheets and a polystyrene block polybutadiene block polystyrene block copolymer as an example.posite had an outstandingly low sheet resistance 0.45 Ω/sq.

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  • Highly sensitive electronic whiskers based on patterned

    Highly sensitive electronic whiskers based on patterned

    Recently, Kim et al. also obtained highly conductive and stretchable nanoparticle/polymer composite electrodes through a layer by layer assembly process . In this work, weposite thin films of carbon nanotube CNT paste and silver nanoparticles AgNPs as highly sensitive and mechanically robust sensors for e whisker applications.

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  • Stretchable, highly conductive film promising for wearable

    Stretchable, highly conductive film promising for wearable

    Nov 29, 2019· Strong bonds between metal nanowires and polymer nanofibers enableposite film to realize good electrical conductivity and high stretchability Stretchable, highly conductive film

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  • Stretchable and Highly Conductive Polymer Films

    Stretchable and Highly Conductive Polymer Films

    Stretchable and Highly Conductive Polymer Films Yuechen Li, Yuka Masuda, Yu Iriyama and Hidenori Okuzaki University of Yamanashi, 4 4 37 Takeda, Kofu 400 8511, Japan Fax: 81 55 220 8554, e mail: [email protected] Stretchable and highly conductive films made of poly3,4 ethylenedioxythiophene doped with

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  • Highly conductive, printable andposite

    Highly conductive, printable andposite

    Nov 28, 2010· Conductive films that are both stretchable and flexible could have applications in electronic devices, sensors, actuators and speakers. A substantial amount of research has been carried out on conductiveposites, metal electrode integrated rubber substrates and materials based on carbon nanotubes and graphene.

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  • Printable elastic conductors by in situ formation of

    Printable elastic conductors by in situ formation of

    May 15, 2017· Printable elastic conductors promise large area stretchable sensor/actuator networks for healthcare, wearables and robotics. Elastomers with metal

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  • Stretchable and Highly Conductive Polymer Films

    Stretchable and Highly Conductive Polymer Films

    Stretchable and Highly Conductive Polymer Films Yuechen Li, Yuka Masuda, Yu Iriyama and Hidenori Okuzaki University of Yamanashi, 4 4 37 Takeda, Kofu 400 8511, Japan Fax: 81 55 220 8554, e mail: [email protected] Stretchable and highly conductive films made of poly3,4 ethylenedioxythiophene doped with

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  • Ultratransparent and stretchable graphene electrodes

    Ultratransparent and stretchable graphene electrodes

    A stretchable all carbon transistor fabricated using MGGs as electrodes exhibited a transmittance of 90 and retained 60 of its original current output at 120 strain parallel to the direction of charge transport. These highly stretchable and transparent all carbon transistors could enable sophisticated stretchable optoelectronics.

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  • Stretchable, highly conductive film promising for wearable

    Stretchable, highly conductive film promising for wearable

    Dec 02, 2019· News Stretchable, highly conductive film promising for wearable electronics Strong bonds between metal nanowires and polymer nanofibers enableposite film to realize good electrical conductivity and high stretchability

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  • Biaxially stretchable transparent conductors that use

    Biaxially stretchable transparent conductors that use

    Stretchable transparent conductors are required for flexible and wearable electronics. This study demonstrates biaxially stretchable transparent conductors that use silverworks. The use of buckledworks has previously been reported to lend stretchability to the transparent conductor in a single axis.

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  • Frontiers  Stretchable Conductive Networks of Carbon

    Frontiers Stretchable Conductive Networks of Carbon

    We present a study of the behavior of highly ordered, segregated single wall carbon nanotubeworks under applied strain. Polymer latex templates induce self assembly of CNTs into hexagonal 2D andbworks within the matrix. Using mechanical and spectroscopic analysis, we have studied the strain transfer mechanisms between thework and the polymer matrix. Axial

    learn more

  • Biaxially stretchable transparent conductors that use

    Biaxially stretchable transparent conductors that use

    Stretchable transparent conductors are required for flexible and wearable electronics. This study demonstrates biaxially stretchable transparent conductors that use silverworks. The use of buckledworks has previously been reported to lend stretchability to the transparent conductor in a single axis.

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  • Highly Stretchableposite with Strain Enhanced

    Highly Stretchableposite with Strain Enhanced

    Here, a highly stretchableposite embedded with a three dimensional 3D liquid metalwork exhibiting substantial increases of EMI SE when stretched is reported, which matches

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  • Hierarchically buckled sheath core fibers for superelastic

    Hierarchically buckled sheath core fibers for superelastic

    Jul 24, 2015· Composite stretchable conducting wires. Think how useful a stretchable electronic skin could be. For example you could place it over an aircraft fuselage or a body to creatework of sensors, processors, energy stores, or artificial muscles. Movies S1 and S2. Highly conductive, printable andposite films of

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  • PDF Highly Conductive and Ultra Stretchable Electric

    PDF Highly Conductive and Ultra Stretchable Electric

    Mar 25, 2015· Highly Conductive and Ultra Stretchable Electric Circuits from Covered Yarns and Silver Nanowires. S. Highly Conductive, Printable and Stretchable. the CNT fiber/PDMS composite film shows

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  • Highly sensitive electronic whiskers based on patterned

    Highly sensitive electronic whiskers based on patterned

    Feb 04, 2014· Recently, Kim et al. also obtained highly conductive and stretchable nanoparticle/polymer composite electrodes through a layer by layer assembly process . In this work, weposite thin films of carbon nanotube CNT paste and silver nanoparticles AgNPs as highly sensitive and mechanically robust sensors for e whisker applications.

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  • Highly conductive, printable andposite

    Highly conductive, printable andposite

    Highly conductive, printable andposite films of carbon nanotubes and silver Article in Nature Nanotechnology 512:853 7 · December 2010 with 2,273 Reads How we measure 'reads'

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  • Highly Stretchable, Elastic, and Ionic Conductive Hydrogel

    Highly Stretchable, Elastic, and Ionic Conductive Hydrogel

    Nov 14, 2018· Highly Stretchable, Elastic, and Ionic Conductive Hydrogel for Artificial Soft Electronics the mechanical strengthposite hydrogels increases with increase in x, while HPC/PVA 16 ionic conductive hydrogel provides the highest strain and toughness Figure 3 One ionic conductive hydrogel film 5.5 cm × 1.2 cm × 0.2 cm was

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  • Excellent dispersibility of single walled carbon nanotubes

    Excellent dispersibility of single walled carbon nanotubes

    Herein, we demonstrate that highly concentrated lithium salt electrolytes HCEs can disperse SWCNTs without using any other dispersing agents. Incorporating SWCNT dispersed HCEs into a polymer matrix allows the fabrication of mechanically stable, electronically and ionically Li +posite gels. Due to its high electronic

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  • Excellent dispersibility of single walled carbon nanotubes

    Excellent dispersibility of single walled carbon nanotubes

    Herein, we demonstrate that highly concentrated lithium salt electrolytes HCEs can disperse SWCNTs without using any other dispersing agents. Incorporating SWCNT dispersed HCEs into a polymer matrix allows the fabrication of mechanically stable, electronically and ionically Li +posite gels. Due to its high electronic

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  • PDF Highly Conductive and Ultra Stretchable Electric

    PDF Highly Conductive and Ultra Stretchable Electric

    Mar 25, 2015· Highly Conductive and Ultra Stretchable Electric Circuits from Covered Yarns and Silver Nanowires. S. Highly Conductive, Printable and Stretchable. the CNT fiber/PDMS composite film shows

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  • Highly conductive, printable andposite

    Highly conductive, printable andposite

    Abstract Conductive films that are both stretchable and flexible could have applications in electronic devices, sensors, actuators and speakers. A substantial amount of research has been carried out on conductiveposites, metal electrode integrated rubber substrates and materials based on carbon nanotubes and graphene.

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  • Highly conductive, printable andposite

    Highly conductive, printable andposite

    Highly conductive, printable andposite films of carbon nanotubes and silver. Conductive films that are both stretchable and flexible could have applications in electronic devices1,2, sensors3,4, actuators5 and speakers6.

    learn more

  • Highly conductive 1Dposite film for skin mountable

    Highly conductive 1Dposite film for skin mountable

    Here, we fabricated a sandwich structured stretchable device, whereposite film is encapsulated in two layers of polydimethylsiloxane PDMS. The highlyposite filmposed of one dimensional 1D silver nanowireswork wrapped with two dimensional 2D metallic MoS 2 nanosheets.

    learn more

  • Highly conductive, printable andposite

    Highly conductive, printable andposite

    Conductive films that are both stretchable and flexible could have applications in electronic devices, sensors, actuators and speakers. A substantial amount of research has been carried out on conductiveposites, metal electrode integrated rubber substrates and materials based on carbon nanotubes and graphene. Here we present highly conductive, printable and stretchable hybrid

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  • Facile Fabrication of Stretchable Electrodes by

    Facile Fabrication of Stretchable Electrodes by

    The surface resistance of theposite films with 60 wt Ag nanoparticles was 0.910 0.509 /sq. The minimum surface resistance was measured to be 0.431 /sq. Using a simple sedimentation process, highlyposite films could be obtained using 0D nanomaterials as a conductive filler.

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  • Mechanically Stretchable and Electrically Insulating

    Mechanically Stretchable and Electrically Insulating

    Dec 16, 2015· Here, a mechanically stretchable and electrically insulating thermalposite is demonstrated, which can be easily processed for device fabrication. A liquid alloy is embedded as liquid droplet fillers in an elastomer matrix to achieve softness and stretchability.

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  • Stretchable batteries with gradient multilayer conductors

    Stretchable batteries with gradient multilayer conductors

    Stretchable conductors areponents in next generation deformable and wearable electronic devices. The ability of stretchable conductors to achieve sufficient electrical conductivity, however, remains limited under high strain, which is particularly detrimental for charge storage devices. In this study, we present stretchable conductors made from multiple layers of gradient

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  • Printable and Stretchable Conductiveprising

    Printable and Stretchable Conductiveprising

    Here, we introduce a facile, fast, and one step methodology for the fabrication of highly conductive and stretchable AgNW/polyurethaneposite electrodes based on a high intensity pulsed

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  • Highly conductive, printable andposite

    Highly conductive, printable andposite

    Conductive films that are both stretchable and flexible could have applications in electronic devices, sensors, actuators and speakers. A substantial amount of research has been carried out on conductiveposites, metal electrode integrated rubber substrates and materials based on carbon nanotubes and graphene. Here we present highly conductive, printable and stretchable hybrid

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  • Highly conductive, printable andposite

    Highly conductive, printable andposite

    Highly conductive, printable andposite films of carbon nanotubes and silver Kyoung Yong Chun1, Youngseok Oh2, Jonghyun Rho3,Jong HyunAhn2,3, Young Jin Kim1,2, Hyouk Ryeol Choi1 and Seunghyun Baik1,2,4* Conductive films that are both stretchable and flexible could

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  • Hierarchically structured silver nanoflowers for highly

    Hierarchically structured silver nanoflowers for highly

    Oct 07, 2016· Hierarchically structured silver nanoflowers for highly conductive metallic inks with dramatically reduced filler concentration. Highly conductive, printable andposite films of carbon nanotubes and silver.

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  • Fully Elastic Conductive Films from Viscoelastic

    Fully Elastic Conductive Films from Viscoelastic

    We investigated, for the first time, the conditions where a thermoplasticposite canpletely reversible stretchability at high elongational strains ε = 1.8. We studiedposite of Au nanosheets and a polystyrene block polybutadiene block polystyrene block copolymer as an example.posite had an outstandingly low sheet resistance 0.45 Ω/sq.

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  • Stretchable and Conductive Polymer Films Prepared by

    Stretchable and Conductive Polymer Films Prepared by

    Stretchable and conductive materials can have important application in many areas, such as wearable electronics and healthcare devices. Conducting polymers have very limited elasticity because of their rigid conjugated backbone. In this work, highly stretchable and conductive polymer films are prepared by coating or casting aqueous solution of poly3,4 ethylenedioxythiophene

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  • 1555427 File000003 24058058

    1555427 File000003 24058058

    S4 Chun, K. Y. et al. Highly conductive, printable andposite films of carbon nanotubes and silver. Nat Nanotechnol 5, 853 857 2010. S5 Park, M. et al. Highly stretchable electric circuits fromposite material of silver nanoparticles and elastomeric fibres. Nat

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  • Electronic Properties of Transparent Conductive Films of

    Electronic Properties of Transparent Conductive Films of

    Highly stretchable and contact responsive light emitting diodes based on MAPbBr3PEO composite film. Journal of Alloyspounds 2020, 819, 153360. DOI: 10.1016/j.jallcom.2019.153360. A Review of Printable Flexible and Stretchable Tactile Sensors. Research 2019, 2019, 1 32. DOI: 10.34133/2019/3018568. Highly Conductive Stretchable

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  • A highly stretchable, transparent, and conductive polymer

    A highly stretchable, transparent, and conductive polymer

    Mar 01, 2017· Highly conductive and stretchable PEDOT film supported on elastic substrates. Stretchable PEDOT is characterized using thin films directly coated onto SEBS elastic substrates to evaluate their electrical behavior as transparent, thin filmponents. Highly conductive, printable andposite films of carbon nanotubes

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  • Highly stretchable fiber transistors with all stretchable

    Highly stretchable fiber transistors with all stretchable

    Highly conductive and stretchable electrodes strain level of 70 were fabricated by simple prestraining then buckling of graphene/Ag hybrid fibers on the elastic polymer monofilament. The highly stretchable strain level of 120 active channel was preparedbining a semiconducting polymer with a viscoelastic polymer.

    learn more

  • Highly conductive 1Dposite film for skin mountable

    Highly conductive 1Dposite film for skin mountable

    Here, we fabricated a sandwich structured stretchable device, whereposite film is encapsulated in two layers of polydimethylsiloxane PDMS. The highlyposite filmposed of one dimensional 1D silver nanowireswork wrapped with two dimensional 2D metallic MoS 2 nanosheets.

    learn more

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