scholarly article | Q13442814 |
P356 | DOI | 10.1002/ADMA.201601186 |
P698 | PubMed publication ID | 27432521 |
P2093 | author name string | Ru Li | |
Da Li | |||
Xiaohua Zhang | |||
Qingwen Li | |||
Yongyi Zhang | |||
Jiangtao Di | |||
Zhenzhong Yong | |||
P2860 | cites work | Super-tough carbon-nanotube fibres | Q28178602 |
Direct spinning of carbon nanotube fibers from chemical vapor deposition synthesis | Q28250052 | ||
High-performance carbon nanotube fiber | Q28257535 | ||
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Stretchable, porous, and conductive energy textiles | Q28269411 | ||
High Performance Fibres from ‘Dog Bone’ Carbon Nanotubes | Q29011841 | ||
Structure-Dependent Electrical Properties of Carbon Nanotube Fibers | Q29305617 | ||
Cotton-Textile-Enabled, Flexible Lithium-Ion Batteries with Enhanced Capacity and Extended Lifespan | Q30278056 | ||
Direct synthesis of long single-walled carbon nanotube strands | Q30835401 | ||
Mechanochromic photonic-crystal fibers based on continuous sheets of aligned carbon nanotubes | Q30902100 | ||
Biscrolling nanotube sheets and functional guests into yarns. | Q33787834 | ||
Reinforcement of single-walled carbon nanotube bundles by intertube bridging | Q34302007 | ||
Electrically, chemically, and photonically powered torsional and tensile actuation of hybrid carbon nanotube yarn muscles. | Q34312509 | ||
Strong, light, multifunctional fibers of carbon nanotubes with ultrahigh conductivity. | Q34322061 | ||
Materials for electrochemical capacitors. | Q34867154 | ||
Emergence of fiber supercapacitors. | Q35446802 | ||
Bacterial flagellar motor | Q37277358 | ||
State of the art of carbon nanotube fibers: opportunities and challenges | Q37995972 | ||
Novel solar cells in a wire format. | Q38087234 | ||
Fiber-based wearable electronics: a review of materials, fabrication, devices, and applications | Q38221443 | ||
Nanomaterial-enabled stretchable conductors: strategies, materials and devices | Q38331522 | ||
Wearable double-twisted fibrous perovskite solar cell | Q39005010 | ||
Iodine doped carbon nanotube cables exceeding specific electrical conductivity of metals | Q39121112 | ||
Meter-Long Spiral Carbon Nanotube Fibers Show Ultrauniformity and Flexibility | Q39287677 | ||
Carbon nanotube wires and cables: near-term applications and future perspectives | Q39699477 | ||
Graphene Oxide Thin Films for Flexible Nonvolatile Memory Applications | Q39831094 | ||
Contraction dynamics and power output of skeletal muscle | Q40893593 | ||
Spontaneous dissolution of ultralong single- and multiwalled carbon nanotubes | Q41618573 | ||
Scratch-Resistant, Highly Conductive, and High-Strength Carbon Nanotube-Based Composite Yarns | Q42911053 | ||
Carbon nanotube yarns with high tensile strength made by a twisting and shrinking method. | Q43222533 | ||
Flexible supercapacitor made of carbon nanotube yarn with internal pores. | Q43411235 | ||
Flexible and weaveable capacitor wire based on a carbon nanocomposite fiber | Q44287988 | ||
High-performance two-ply yarn supercapacitors based on carbon nanotubes and polyaniline nanowire arrays. | Q44325052 | ||
Strong and Conductive Dry Carbon Nanotube Films by Microcombing | Q44857357 | ||
Mechanical properties of continuously spun fibers of carbon nanotubes | Q46642356 | ||
Multifunctional carbon nanotube yarns by downsizing an ancient technology. | Q47308386 | ||
Double-peak mechanical properties of carbon-nanotube fibers. | Q47352974 | ||
Flexible, light-weight, ultrastrong, and semiconductive carbon nanotube fibers for a highly efficient solar cell | Q47390612 | ||
True solutions of single-walled carbon nanotubes for assembly into macroscopic materials. | Q50578468 | ||
Preparation of weavable, all-carbon fibers for non-volatile memory devices. | Q50874095 | ||
Torsional carbon nanotube artificial muscles. | Q51545294 | ||
High-Strength Carbon Nanotube Film from Improving Alignment and Densification. | Q51565669 | ||
Hierarchically arranged helical fibre actuators driven by solvents and vapours. | Q51721241 | ||
Winding aligned carbon nanotube composite yarns into coaxial fiber full batteries with high performances. | Q51735098 | ||
STRETCHY ELECTRONICS. Hierarchically buckled sheath-core fibers for superelastic electronics, sensors, and muscles. | Q51835884 | ||
Electromechanical Actuator Ribbons Driven by Electrically Conducting Spring-Like Fibers. | Q51840391 | ||
Highly twisted double-helix carbon nanotube yarns. | Q53125873 | ||
Stretchable Wire-Shaped Asymmetric Supercapacitors Based on Pristine and MnO2 Coated Carbon Nanotube Fibers. | Q53239901 | ||
Direct Insulation-to-Conduction Transformation of Adhesive Catecholamine for Simultaneous Increases of Electrical Conductivity and Mechanical Strength of CNT Fibers. | Q53256203 | ||
Efficient, Absorption-Powered Artificial Muscles Based on Carbon Nanotube Hybrid Yarns. | Q53296063 | ||
Hybrid fibers made of molybdenum disulfide, reduced graphene oxide, and multi-walled carbon nanotubes for solid-state, flexible, asymmetric supercapacitors. | Q53310142 | ||
Superelastic supercapacitors with high performances during stretching. | Q53385638 | ||
High-performance two-ply yarn supercapacitors based on carbon nanotube yarns dotted with Co3 O4 and NiO nanoparticles. | Q53426747 | ||
Integrating perovskite solar cells into a flexible fiber. | Q53495527 | ||
Elastic and wearable wire-shaped lithium-ion battery with high electrochemical performance. | Q53533427 | ||
All-solid-state carbon nanotube torsional and tensile artificial muscles. | Q53571841 | ||
A highly stretchable, fiber-shaped supercapacitor. | Q53674022 | ||
Core-sheath carbon nanostructured fibers for efficient wire-shaped dye-sensitized solar cells. | Q54427232 | ||
Flexible, ultralight, porous superconducting yarns containing shell-core magnesium diboride-carbon nanotube nanofibers. | Q55058610 | ||
High-Strength Composite Fibers: Realizing True Potential of Carbon Nanotubes in Polymer Matrix through Continuous Reticulate Architecture and Molecular Level Couplings | Q57590060 | ||
Monitoring a Micromechanical Process in Macroscale Carbon Nanotube Films and Fibers | Q57590062 | ||
Ultrastrong, Stiff, and Lightweight Carbon-Nanotube Fibers | Q57915527 | ||
Strong Carbon-Nanotube Fibers Spun from Long Carbon-Nanotube Arrays | Q57917789 | ||
Electrical Properties of Carbon Nanotube Based Fibers and Their Future Use in Electrical Wiring | Q58005680 | ||
Enhancement of the Mechanical Properties of Directly Spun CNT Fibers by Chemical Treatment | Q58005845 | ||
Carbon coated textiles for flexible energy storage | Q58892703 | ||
Spinning continuous carbon nanotube yarns | Q59063801 | ||
P433 | issue | 47 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | wearable technology | Q4845080 |
P304 | page(s) | 10529-10538 | |
P577 | publication date | 2016-07-19 | |
P1433 | published in | Advanced Materials | Q1085159 |
P1476 | title | Carbon-Nanotube Fibers for Wearable Devices and Smart Textiles | |
P478 | volume | 28 |
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Q92980219 | Conductive Cotton Fabrics for Motion Sensing and Heating Applications |
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Q47324582 | Recent Advances in Flexible/Stretchable Supercapacitors for Wearable Electronics |
Q39332194 | Review of Flexible Temperature Sensing Networks for Wearable Physiological Monitoring |
Q91761266 | Scalable Fabrication of Highly Flexible Porous Polymer-Based Capacitive Humidity Sensor Using Convergence Fiber Drawing |
Q92810100 | Spun Carbon Nanotube Fibres and Films as an Alternative to Printed Electronic Components |
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Q50148129 | Transparent Displays Utilizing Nanopatterned Quantum Dot Films |
Q64882464 | Wet-Spinning Assembly of Continuous, Highly Stable Hyaluronic/Multiwalled Carbon Nanotube Hybrid Microfibers. |