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anode materials (11) 11
electrochemistry (10) 10
materials science, multidisciplinary (10) 10
chemistry, physical (9) 9
li-sn alloy (9) 9
lithium (9) 9
anode (8) 8
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sn (7) 7
alloys (6) 6
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li (6) 6
lithium-ion batteries (6) 6
energy & fuels (5) 5
li-ion batteries (5) 5
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lithium ion batteries (5) 5
metallurgy & metallurgical engineering (5) 5
system (5) 5
composites (4) 4
deposition (4) 4
high-capacity (4) 4
li-ion battery (4) 4
lithiumbatterie (4) 4
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negative electrodes (4) 4
tin (4) 4
anode material (3) 3
behavior (3) 3
chemistry, multidisciplinary (3) 3
copper (3) 3
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li ion battery (3) 3
li-sn alloys (3) 3
nanoscience & nanotechnology (3) 3
negative electrode materials (3) 3
röntgenbeugung (3) 3
anodes (2) 2
battery (2) 2
calphad (2) 2
capacity fade (2) 2
charge-discharge properties (2) 2
chemistry (2) 2
composite anode materials (2) 2
crystallite growth (2) 2
cu6sn5 (2) 2
elektrochemische eigenschaft (2) 2
elektrochemische elektrode (2) 2
eta'-cu6sn5 (2) 2
fabrication (2) 2
films (2) 2
first-principles study (2) 2
industrial chemistry/chemical engineering (2) 2
inert second phase (2) 2
intermetallic phases (2) 2
ion batteries (2) 2
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li-sn system (2) 2
lithium chemical diffusion coefficient (2) 2
lithium insertion/extraction (2) 2
lithium secondary battery (2) 2
lithium-batteries (2) 2
lithium-ionen-akkumulator (2) 2
lithium-sulfur batteries (2) 2
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mechanical alloying (2) 2
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nucleation (2) 2
oxide (2) 2
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powders (2) 2
rechargeable batteries (2) 2
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sekundärbatterie (2) 2
situ x-ray (2) 2
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solid electrolyte interphase (2) 2
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thermodynamics (2) 2
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tin oxide composite (2) 2
total-energy calculations (2) 2
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アロイ (2) 2
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Journal Article
Electrochimica Acta, ISSN 0013-4686, 12/2017, Volume 258, pp. 1201 - 1207
Adhesion of Li plating to electrode substrate and chemical stability of plated Li against electrolyte components are two essential factors affecting the... 
Lithium battery | Coulombic efficiency | Li-Sn alloy | Electroless tin plating | Li plating | ELECTROCHEMISTRY | ELECTROLYTE | DEPOSITION | HIGH-AREAL-CAPACITY | GROWTH | NUCLEATION | Electrochemistry | Electrochemical reactions | Electrolytes | Carbonates | Batteries | Alloys
Journal Article
Journal of Power Sources, ISSN 0378-7753, 07/2001, Volume 97-98, pp. 198 - 200
SnS powder made by sonochemistry was applied and examined for anode material of Li ion battery. The annealed SnS at 400°C showed a higher capacity of 600 mAh g... 
Li-Sn alloy | SnS | Anode | Li ion battery
Journal Article
ACS Applied Materials and Interfaces, ISSN 1944-8244, 01/2019, Volume 11, Issue 2, pp. 2479 - 2489
Lithium-tin (Li-Sn) alloys are perfect substrate materials for anodes in high-energy density lithium metal secondary batteries. A new approach is proposed to... 
DOL | Li-Sn alloy | lithium metal anode | solid electrolyte interphase | lithium-sulfur batteries | SULFUR BATTERIES | DEPOSITION | MATERIALS SCIENCE, MULTIDISCIPLINARY | ION | NANOSCIENCE & NANOTECHNOLOGY | SUBSTRATE | PROGRESS | SURFACE | ENHANCED CYCLEABILITY | LAYER | MORPHOLOGY
Journal Article
Journal of the Electrochemical Society, ISSN 0013-4651, 2011, Volume 158, Issue 6, pp. A644 - A652
The Ni and Sn-embedded carbon nanofiber (Ni-Sn/CNF) nanocomposites as anode materials were prepared by using electrospinning technique and optimum thermal... 
ALLOY ELECTRODES | ELECTROCHEMISTRY | ELECTROCHEMICAL PROPERTIES | RECHARGEABLE BATTERIES | NEGATIVE ELECTRODE MATERIALS | DEPOSITION | FABRICATION | XPS | LI-SN | THIN-FILM ANODE | MATERIALS SCIENCE, COATINGS & FILMS
Journal Article
Journal of Solid State Chemistry, ISSN 0022-4596, 12/2014, Volume 220, pp. 198 - 205
The stannides CuLi2Sn (CSD-427095) and Cu2LiSn (CSD-427096) were synthesized by induction melting of the pure elements and annealing at 400°C. The phases were... 
Lithium | Single-crystal XRD | Stannide | Li-ion battery | Cu–Li–Sn | Crystal structure | Cu-Li-Sn | XRD | Single-crystal | SN PHASE-DIAGRAM | NEUTRON-DIFFRACTION | CHEMISTRY, PHYSICAL | X-RAY-DIFFRACTION | CU6SN5 | CHEMISTRY, INORGANIC & NUCLEAR | ELECTRODE | LITHIATION
Journal Article
Journal of Power Sources, ISSN 0378-7753, 06/2005, Volume 144, Issue 1, pp. 197 - 203
Anodes derived from oxides of tin have, of late, been of considerable interest because, in principle, they can store over twice as much lithium as graphite. A... 
Li-Sn alloy anode | Sn-SnO | Capacity fade | mixtures | Irreversible capacity | ELECTROCHEMISTRY | POWDERS | FILMS | ENERGY & FUELS | Sn-SnO2 mixtures | TIN OXIDE | SNO2 | COMPOSITES | capacity fade | irreversible capacity | CRYSTALLITE GROWTH
Journal Article
Journal of Power Sources, ISSN 0378-7753, 1999, Volume 81-82, pp. 362 - 367
Fine powders of tin oxide doped with traces of silicon in combination with highly dispersed amorphous silicon oxide have been synthesized by an advanced... 
Lithium chemical diffusion coefficient | Li-Sn alloy | Tin oxide composite | Inert second phase | ELECTROCHEMISTRY | ALLOYS | ENERGY & FUELS | tin oxide composite | NEGATIVE ELECTRODES | inert second phase | lithium chemical diffusion coefficient
Journal Article
Wuli Xuebao/Acta Physica Sinica, ISSN 1000-3290, 04/2008, Volume 57, Issue 4, pp. 2374 - 2379
An ab initio method with the first-principles plane-wave pseudopotentials based on the density functional theory has been used to calculate the physical... 
Lithium-ion battery | Li-Sn alloy | First-principle | Volume expansion ratio | STORAGE | volume expansion ratio | 1ST-PRINCIPLES | PHYSICS, MULTIDISCIPLINARY | SI | ELECTRODES | HIGH-CAPACITY | lithium-ion battery | first-principle | AB-INITIO CALCULATION
Journal Article
Journal of Applied Electrochemistry, ISSN 0021-891X, 11/2005, Volume 35, Issue 11, pp. 1045 - 1050
SnO2 was synthesized by precipitation from an aqueous solution of SnCl4 and NH4OH, followed by a heat treatment. The product was characterized by XRD, SEM,... 
Li–Sn alloy | tin oxide anode | Chemistry | Physical Chemistry | Electrochemistry | lithium battery anode | Industrial Chemistry/Chemical Engineering | irreversible capacity | Li-Sn alloy | Lithium battery anode | Tin oxide anode | Irreversible capacity | ELECTROCHEMISTRY | ELECTRODES | ION-BATTERIES | COMPOSITES | CRYSTALLITE GROWTH | GEL | POWDERS | FILMS | SNO2 | Oxides | Batteries
Journal Article
by Zhang, PP and Wang, Y and Lei, WX and Zou, YL and Jiang, WJ and Ma, ZS and Lu, CS
ACS APPLIED MATERIALS & INTERFACES, ISSN 1944-8244, 07/2019, Volume 11, Issue 27, pp. 24648 - 24658
The Co doping effects on the interfacial strength of Sn electrode-collector interface for lithium-ion batteries are investigated by using first-principles... 
LITHIUM ION BATTERIES | ANODE MATERIALS | DOPED SNO2 | PERFORMANCE | MATERIALS SCIENCE, MULTIDISCIPLINARY | NANOSCIENCE & NANOTECHNOLOGY | lithiation | TOTAL-ENERGY CALCULATIONS | SEGREGATION | electrode-collector | ALLOY ANODES | lithium-ion batteries | Co doping interfacial strength | first-principles study | LI-SN | PLANE-WAVE
Journal Article
Solid State Ionics, ISSN 0167-2738, 02/1998, Volume 106, Issue 1-2, pp. 33 - 38
The inorganic salt, SnSO4 was proposed as a new anode active material for a lithium secondary battery. For the first discharge, a capacity of 500 mA h g(-1)... 
Anode material | Snso | Lithium secondary battery | Li-Sn alloy | lithium secondary battery | CHEMISTRY, PHYSICAL | PHYSICS, CONDENSED MATTER | anode material | SnSO4
Journal Article
Journal of Power Sources, ISSN 0378-7753, 2005, Volume 144, Issue 1, pp. 197 - 203
Anodes derived from oxides of tin have, of late, been of considerable interest because, in principle, they can store over twice as much lithium as graphite. A... 
Li–Sn alloy anode | Sn–SnO 2 mixtures | Capacity fade | Irreversible capacity
Journal Article
JOURNAL OF POWER SOURCES, ISSN 0378-7753, 07/2001, Volume 97-8, pp. 198 - 200
SnS2 powder made by sonochemistry was applied and examined for anode material of Li ion battery. The annealed SnS2 at 400 degreesC showed a higher capacity of... 
ELECTROCHEMISTRY | ENERGY & FUELS | SONOCHEMICAL SYNTHESIS | anode | Li-Sn alloy | Li ion battery | CRYSTALLINE | SnS2
Journal Article
Journal of Power Sources, ISSN 0378-7753, 2001, Volume 97, pp. 198 - 200
SnS 2 powder made by sonochemistry was applied and examined for anode material of Li ion battery. The annealed SnS 2 at 400°C showed a higher capacity of 600... 
Li–Sn alloy | Anode | Sn | Li ion battery | SnS 2
Journal Article
Journal of Alloys and Compounds, ISSN 0925-8388, 10/2016, Volume 682, pp. 713 - 722
Four isothermal sections in the Cu-Li-Sn phase diagram at 300 °C, 400 °C, 500 °C and 600 °C have been investigated by powder XRD of 108 samples, which are... 
Isotherm | Cu-Li-Sn | Powder XRD | Phase diagram | Li-ion battery | SYSTEM | ANODE MATERIALS | CRYSTAL-STRUCTURE | MATERIALS SCIENCE, MULTIDISCIPLINARY | METALLURGY & METALLURGICAL ENGINEERING | CHEMISTRY, PHYSICAL | X-RAY-DIFFRACTION | INTERMETALLIC PHASES | SUPERSTRUCTURE | LITHIUM | LITHIATION | THERMODYNAMIC ASSESSMENT | Alloys
Journal Article
Journal of Alloys and Compounds, ISSN 0925-8388, 12/2016, Volume 687, pp. 306 - 311
Journal Article
Journal of Power Sources, ISSN 0378-7753, 2009, Volume 189, Issue 1, pp. 297 - 302
Reductive precipitation of Sn(II) chloride by NaBH 4 is assisted by electrospraying in order to achieve a fine dispersion of the liquid precursor solution into... 
Reductive precipitation | Sn oxides | Electrospraying | Li–Sn alloys | Li-ion batteries | Li-Sn alloys | THIN-FILMS | ELECTROCHEMISTRY | OXIDE | ANODE MATERIALS | ENERGY & FUELS | BEHAVIOR | MATERIALS SCIENCE, MULTIDISCIPLINARY | CHEMISTRY, PHYSICAL | COMPOSITES | NEGATIVE ELECTRODES | LITHIUM | Electrodes | Batteries | Rain and rainfall | Nanotechnology | Alloys | Precursors | Chlorides | Battery | Tin | Droplets | Nanostructure | Dispersions
Journal Article
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