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Advanced materials (Weinheim), ISSN 0935-9648, 10/2018, Volume 30, Issue 40, pp. e1804084 - n/a
high sulfur content | lithium ion transport path | lithium‐montmorillonite | lithium–sulfur batteries | lithium-montmorillonite | Materials Science | Materials Science, Multidisciplinary | Physics, Condensed Matter | Science & Technology - Other Topics | Chemistry, Physical | Physics | Science & Technology | Physics, Applied | Physical Sciences | Chemistry | Nanoscience & Nanotechnology | Technology | Chemistry, Multidisciplinary | Clay | Sulfur compounds | Batteries | Montmorillonite | Sulfur | Interlayers | Ion transport | Ions | Lithium | Lithium sulfur batteries | Rechargeable batteries | Electrodes | Sulfur content | Ion diffusion | Diffusion barriers | Lithium ions | Cathodes
Journal Article
Nano research, ISSN 1998-0124, 2016, Volume 9, Issue 1, pp. 240 - 248
硫含量 | 多孔结构 | 能量储存 | 锂离子电池 | 复合材料 | Condensed Matter Physics | Biotechnology | three-dimensional (3D)-network | energy storage | Materials Science, general | high loading | Atomic/Molecular Structure and Spectra | Material Science | graphene framework | lithium sulfur battery | Nanotechnology | Biomedicine general | Physical Sciences | Chemistry | Materials Science | Nanoscience & Nanotechnology | Technology | Materials Science, Multidisciplinary | Science & Technology - Other Topics | Chemistry, Physical | Physics | Science & Technology | Physics, Applied | Sulfur compounds | Mobile devices | Automobiles, Electric | Graphene | Resveratrol | Batteries | Sulfur | Computer storage devices | Electric properties | Additives | Electronic devices | Conductivity | Ion transport | Lithium | Fuel consumption | Polysulfides | Binders | Storage batteries | Lithium sulfur batteries | Lithium-ion batteries | Storage | Electrochemistry | Electric vehicles | Robustness | Specific capacity | Cathodes | Energy storage | Nanostructure | Three dimensional
Journal Article
ACS nano, ISSN 1936-0851, 06/2017, Volume 11, Issue 6, pp. 6031 - 6039
high sulfur loading | adsorb | Li-S battery | mesoporous sphere | cobalt nitride | catalyze | Physical Sciences | Chemistry | Materials Science | Nanoscience & Nanotechnology | Technology | Materials Science, Multidisciplinary | Science & Technology - Other Topics | Chemistry, Multidisciplinary | Chemistry, Physical | Science & Technology
Journal Article
Small (Weinheim an der Bergstrasse, Germany), ISSN 1613-6810, 11/2020, Volume 16, Issue 47, pp. e2004372 - n/a
stable cycling | fast charging | Li–S batteries | elastic chitosan network | lean binder content | Materials Science | Materials Science, Multidisciplinary | Physics, Condensed Matter | Science & Technology - Other Topics | Chemistry, Physical | Physics | Science & Technology | Physics, Applied | Physical Sciences | Chemistry | Nanoscience & Nanotechnology | Technology | Chemistry, Multidisciplinary | Sulfur compounds | Sulfur | Computer storage devices | Butadiene | Charging | Binders (materials) | Elastomers | Mechanical properties | Synergistic effect | Chitosan | Storage batteries | Cathodes | Lithium sulfur batteries | Energy storage | Index Medicus
Journal Article
Advanced functional materials, ISSN 1616-301X, 12/2017, Volume 27, Issue 47, p. n/a
trimerization | porous organic polymer | nucleophilic aromatic substitution | elemental sulfur | lithium–sulfur battery | Materials Science | Materials Science, Multidisciplinary | Physics, Condensed Matter | Science & Technology - Other Topics | Chemistry, Physical | Physics | Science & Technology | Physics, Applied | Physical Sciences | Chemistry | Nanoscience & Nanotechnology | Technology | Chemistry, Multidisciplinary | Sulfur | Sulfur compounds | Batteries | Sulfur content | Nitrogen atoms | Lithium | Separators | Chemical synthesis | Lithium sulfur batteries
Journal Article
Earth and planetary science letters, ISSN 0012-821X, 03/2014, Volume 389, pp. 209 - 220
oxygenation proxy | ocean chemistry | sedimentary pyrite | trace elements | selenium | palaeo-oceanography | Ocean chemistry | Palaeo-oceanography | Trace elements | Selenium | Oxygenation proxy | Sedimentary pyrite | Physical Sciences | Science & Technology | Geochemistry & Geophysics | Sulfur compounds | Diagenesis | Proxy | Analysis | Mines and mineral resources | Glacial epoch | Sea-water | Marine | Uranium | Pyrite | Oceans | Evolution | Nickel | Oxygenation | Sea water
Journal Article
Progress in polymer science, ISSN 0079-6700, 07/2016, Volume 58, pp. 90 - 125
Sulfur polymerization | Sulfur polymers | Inverse vulcanization | Polymer Science | Physical Sciences | Science & Technology | Sulfur compounds | Crosslinked polymers | Refining | Optical properties | Imaging systems | Batteries | Polymer industry | Sulfur | Sustainable development | Petroleum | Copolymers | Vulcanizing | Reagents | Polymerization | Inverse | Polymers
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