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Composites. Part A, Applied science and manufacturing, ISSN 1359-835X, 09/2018, Volume 112, pp. 111 - 118
Evolution of microstructure and electrical property in the conversion of high strength carbon fiber (HSCF) to high modulus carbon fiber (HMCF) and ultrahigh... 
Interlayer spacing | High modulus | Electrical resistivity | Carbon fiber | MESOPHASE PITCH | SURFACE STRUCTURAL EVOLVEMENT | RAMAN-SPECTROSCOPY | HIGH-TEMPERATURE | MATERIALS SCIENCE, COMPOSITES | MECHANICAL-PROPERTIES | GRAPHITE FIBERS | GRAPHITIZATION | EPOXY COMPOSITES | ENGINEERING, MANUFACTURING | SPECTRA | INTERFACIAL PROPERTIES
Journal Article
Materials, ISSN 1996-1944, 2009, Volume 2, Issue 4, pp. 2369 - 2403
This paper reviews the research and development activities conducted over the past few decades on carbon fibers. The two most important precursors in the... 
Composite | Light weighting | High strength | High modulus | Carbon fiber | OXIDATION | carbon fiber | light weighting | STABILIZATION | MATERIALS SCIENCE, MULTIDISCIPLINARY | MESOPHASE-PITCH | MECHANICAL-PROPERTIES | CARBONIZATION | composite | HIGH-MODULUS | TENSILE-STRENGTH | high modulus | high strength | PAN | POLYACRYLONITRILE | LIGNIN
Journal Article
Journal of the American Chemical Society, ISSN 0002-7863, 01/2018, Volume 140, Issue 1, pp. 82 - 85
The key bottleneck troubling the application of solid electrolyte is the contradictory requirements from Li-metal and cathode, which need high modulus to block... 
STORAGE | RECHARGEABLE BATTERIES | CURRENT COLLECTORS | INTERFACE | FILM | POLYMER ELECTROLYTE | ANODE | LITHIUM | CHEMISTRY, MULTIDISCIPLINARY | CHALLENGES | Dendrites | Lithium compounds | Electric properties
Journal Article
Macromolecular materials and engineering, ISSN 1438-7492, 2012, Volume 297, Issue 6, pp. 493 - 501
The properties, structure, and processing of carbon fibers are reviewed. Carbon fibers are made from several precursors, with PAN being the dominating... 
alternative precursors | carbon fiber processing | lignin | polyacrylonitrile | carbonization | OXIDATION | POLYMER SCIENCE | STABILIZATION | MATERIALS SCIENCE, MULTIDISCIPLINARY | MICROTEXTURE | TENSILE-STRENGTH | HIGH-MODULUS | FABRICATION | PAN
Journal Article
Macromolecules, ISSN 0024-9297, 05/2018, Volume 51, Issue 9, pp. 3405 - 3414
Healable and remoldable polyurethane networks having poly­(ε-caprolactone) soft segments were prepared in a one-pot procedure using a thermoreversible... 
POLYMERS | DESIGN | POLYMER SCIENCE | VITRIMERS | CLICK CHEMISTRY | COMPOSITES | NETWORKS
Journal Article
Journal of polymer science. Part B, Polymer physics, ISSN 0887-6266, 2018, Volume 56, Issue 19, pp. 1281 - 1286
Journal Article
Carbohydrate polymers, ISSN 0144-8617, 02/2019, Volume 205, pp. 488 - 491
•Ball-milling in a NaOH solution gave a 8% suspension of cellulose nanofibers.•The prepared nanofiber was transformed into a stable hydrogel upon... 
NaOH treatment | Ball milling | Hydrogel | High modulus | Cellulose nanofiber | HYDROGELS | POLYMER SCIENCE | CHEMISTRY, ORGANIC | STRENGTH | PULP | CELL-WALL | ELASTIC-MODULUS | CHEMISTRY, APPLIED | CRYSTALLINE REGIONS | Thin films | Cellulose | Dielectric films
Journal Article
Fibers and polymers, ISSN 1229-9197, 2018, Volume 19, Issue 6, pp. 1309 - 1317
High-modulus PET filaments and thermal bonding are used to reinforce the puncture resistance stability of the insole composite. This study aims to discuss the... 
Polymer Sciences | High-modulus fiber | Chemistry | Puncture resistant insole | Needle punching | Thermal bonding | POLYMER SCIENCE | PROCESSING TECHNIQUE | MATERIALS SCIENCE, TEXTILES | BEHAVIOR | WOVEN FABRICS | PARAMETERS | Textile fabrics | Mechanical properties | Textile fibers | Energy conservation | Analysis | Fibers | Bonding strength | Gloves | Melting points | Filaments | Insoles | 섬유공학
Journal Article
Composites. Part B, Engineering, ISSN 1359-8368, 2018, Volume 142, pp. 241 - 250
Journal Article
Angewandte Chemie (International ed.), ISSN 1433-7851, 2018, Volume 57, Issue 5, pp. 1361 - 1365
The growth of lithium dendrites and low coulombic efficiency restrict the development of Li metal anodes. Polymer electrolytes are expected to be promising... 
metal anodes | lithium | gel electrolytes | double polymer networks | ION BATTERIES | HYDROGELS | ENERGY | DENDRITE GROWTH | PERFORMANCE | STRENGTH | CHEMISTRY, MULTIDISCIPLINARY | SOLID-STATE | Polyelectrolytes | Polymer industry | Carbonates | Electric properties | Design | Metals | Conductivity | Ion currents | Electrolytes | Lithium | Dendrites | Polymers | Anodes | Fracture toughness
Journal Article
Journal Article
Reactive & functional polymers, ISSN 1381-5148, 08/2019, Volume 141, pp. 112 - 122
Journal Article
Advanced functional materials, ISSN 1616-301X, 2018, Volume 28, Issue 9, pp. 1705962 - n/a
Journal Article