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1996, Di 1 ban., Zhongguo di yu wen hua da xi, ISBN 9620751914, 242
Book
Angewandte Chemie International Edition, ISSN 1433-7851, 03/2014, Volume 53, Issue 12, pp. 3134 - 3137
The synthesis of mesoporous Prussian blue analogues through a template‐free methodology and the application of these mesoporous materials as high‐performance... 
aggregation | Prussian blue | nanoparticles | sodium‐ion batteries | mesoporous materials | sodium-ion batteries | ENERGY | CATHODE MATERIALS | COMPOSITES | INTERCALATION | CHEMISTRY, MULTIDISCIPLINARY | SINGLE-CRYSTAL | LOW-COST | FRAMEWORK | IN-SITU | Iron compounds | Batteries | Nanocrystals | Sodium | Solar energy | Silicas | Low currents | Synthesis | Stability | Methodology | Electric batteries | Cathodes | Crystal structure
Journal Article
Advanced Energy Materials, ISSN 1614-6832, 03/2016, Volume 6, Issue 5, pp. 1502059 - n/a
To increase the sulfur content/loading, trap the soluble Li2Sx intermediates, and improve the cycling stability of Li/S batteries, 3D‐interlaced,... 
membranes | cathode materials | carbon fibers | batteries | sulfer cathodes | POROSITY | PHYSICS, CONDENSED MATTER | PHYSICS, APPLIED | ENERGY & FUELS | PERFORMANCE | MATERIALS SCIENCE, MULTIDISCIPLINARY | GRAPHENE | CHEMISTRY, PHYSICAL | CARBON NANOFIBERS | LITHIUM | POLYSULFIDES | LIFE | Sulfur compounds | Batteries | Cycles | Multilayers | Carbon fibers | Stability | Stacking | Sulfur | Diffusion | Cathodes
Journal Article
Electrochemistry Communications, ISSN 1388-2481, 02/2018, Volume 87, p. 71
Room-temperature sodium-ion batteries offer an alternative solution for large-scale energy storage system because of the huge abundant, and low cost of sodium... 
Diffraction | Analysis | X-rays | Batteries
Journal Article
Journal of Materials Chemistry A, ISSN 2050-7488, 10/2014, Volume 2, Issue 38, pp. 16116 - 16123
Journal Article
Electrochemistry Communications, ISSN 1388-2481, 02/2018, Volume 87, pp. 71 - 75
Room-temperature sodium-ion batteries offer an alternative solution for large-scale energy storage system because of the huge abundant, and low cost of sodium... 
Structure evolution | O3-type cathode materials | Sodium-ion batteries | In-situ X-ray diffraction | ELECTROCHEMISTRY | OXIDE | P2-TYPE | VOLTAGE FADE | PERFORMANCE | REDOX CHEMISTRY | ELECTRODE | DIFFUSION
Journal Article
Journal of Colloid and Interface Science, ISSN 0021-9797, 11/2019
Journal Article
Lab on a Chip, ISSN 1473-0197, 01/2018, Volume 18, Issue 3, pp. 486 - 495
Organ-on-a-chip technology can simulate the physiological and pathological microenvironment of tissues and organs in vitro, thus offering the potential of... 
Computer simulation | Tissue engineering | Toxicity | Organs | Dispensing | Substrates | Endothelial cells | Glycolic acid | Fibroblasts | Biocompatibility | Nanofibers | Apoptosis | Cancer | Index Medicus
Journal Article
Journal of Power Sources, ISSN 0378-7753, 05/2012, Volume 205, pp. 495 - 499
Mesoporous carbon-Cr O (M-C-Cr O ) composite was prepared by co-assembly of in situ formed phenolic resin, chromium precursor, and Pluronic block copolymer... 
Lithium ion battery | Conversion reaction | Chromium oxide | Mesoporous carbon
Journal Article
Journal of Alloys and Compounds, ISSN 0925-8388, 06/2019, Volume 791, pp. 364 - 370
Lithium metal anode is of great interest for advanced lithium rechargeable batteries such as lithium-air and lithium-sulfur batteries, owing to its high... 
Solid electrolyte interface | 3D conductive scaffold | Lithium batteries | Lithium dendrite | Lithium metal anode | Electrolyte additives
Journal Article
Electrochemistry Communications, ISSN 1388-2481, 12/2008, Volume 10, Issue 12, pp. 1876 - 1878
A composite of silica (SiO ) and hard carbon was prepared by hydrothermal reaction. Special attention was paid to the characterization of the possible... 
Anode material | Lithium ion batteries | SiO | Composite | Carbon | ELECTROCHEMISTRY | SILICON | SiO2
Journal Article
Chemistry of Materials, ISSN 0897-4756, 02/2012, Volume 24, Issue 3, pp. 457 - 463
Journal Article
Electrochimica Acta, ISSN 0013-4686, 02/2019, Volume 295, pp. 778 - 786
Partial lithiation strategies for silicon composite electrodes are experimentally investigated in this article. Two types of partial lithiation, i.e. voltage-... 
Degradation | Lithium-ion battery | Cycling | Partial lithiation | Silicon composite electrode | ELECTROCHEMISTRY | ANODE MATERIALS | CYCLE-LIFE | PERFORMANCE | SIZE | POLYMERIC BINDERS | NANOPARTICLES | THIN-FILM ELECTRODES | NEGATIVE ELECTRODES | LITHIUM-ION BATTERIES | HIGH-CAPACITY | Electrodes | Electron microscopes | Silicon | Decay rate
Journal Article
ACS Applied Materials and Interfaces, ISSN 1944-8244, 05/2012, Volume 4, Issue 5, pp. 2672 - 2679
Journal Article
Journal of the American Chemical Society, ISSN 0002-7863, 02/2015, Volume 137, Issue 7, pp. 2658 - 2664
Journal Article
Journal Article
Chemistry – A European Journal, ISSN 0947-6539, 10/2010, Volume 16, Issue 38, pp. 11543 - 11548
Protective coating: Carbon–SnO2 core–sheath composite nanofibers are synthesized through the creative combination of electrospinning and electrodeposition... 
tin oxide | lithium | sustainable chemistry | energy storage | carbon nanofibers | Carbon nanofibers | Lithium | Sustainable chemistry | Tin oxide | Energy storage | ION BATTERIES | ANODE MATERIAL | SHELL NANOWIRES | PERFORMANCE | SILICON NANOWIRES | NANOSTRUCTURED ELECTRODE MATERIALS | CHEMISTRY, MULTIDISCIPLINARY | SNO2 NANOTUBES | TEMPLATE | ELECTROCHEMICAL ENERGY-STORAGE | HIGH-CAPACITY
Journal Article
Energy and Environmental Science, ISSN 1754-5692, 2014, Volume 7, Issue 7, pp. 2220 - 2226
Journal Article
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