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A Ge/Carbon Atomic‐Scale Hybrid Anode Material: A Micro–Nano Gradient Porous Structure with High Cycling Stability.
- Published in:
- Angewandte Chemie, 2021, v. 133, n. 22, p. 12647, doi. 10.1002/ange.202102048
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- Publication type:
- Article
Thermal studies on Li(CH<sub>3</sub>CN)<sub>4</sub>PF<sub>6</sub> and Li(C<sub>4</sub>H<sub>10</sub>O<sub>2</sub>)<sub>2</sub>PF<sub>6</sub> complexes by the TG–DTA–MS and DSC.
- Published in:
- Journal of Thermal Analysis & Calorimetry, 2018, v. 131, n. 2, p. 1287, doi. 10.1007/s10973-017-6640-6
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- Article
Effect of SiO on the melting characteristics of reaction between phosphogypsum and calcium sulfide.
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- Journal of Thermal Analysis & Calorimetry, 2016, v. 123, n. 2, p. 1601, doi. 10.1007/s10973-015-5032-z
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- Article
Fire retardant synergism of hydroquinone bis(diphenyl phosphate) and novolac phenol in acrylonitrile-butadiene-styrene copolymer.
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- Fire & Materials, 2015, v. 39, n. 6, p. 557, doi. 10.1002/fam.2255
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- Publication type:
- Article
Synthesis of Core-Shell Structured LiFe<sub>0.5</sub>Mn<sub>0.3</sub>Co<sub>0.2</sub>PO<sub>4</sub>@C with Remarkable Electrochemical Performance as the Cathode of a Lithium-Ion Battery.
- Published in:
- ChemElectroChem, 2015, v. 2, n. 6, p. 896, doi. 10.1002/celc.201402414
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- Article
Efficient Chemical Prelithiation with Modificatory Li<sup>+</sup> Solvation Structure Enabling Spatially Homogeneous SEI toward High Performance SiO<sub>x</sub> Anode<sup>†</sup>.
- Published in:
- Chinese Journal of Chemistry, 2024, v. 42, n. 17, p. 2056, doi. 10.1002/cjoc.202400226
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- Article
Preparation and Electrochemical Performance of Li[Ni<sub>1/3</sub>Co<sub>1/3</sub>Mn<sub>1/3</sub>]O<sub>2</sub> Synthesized Using Li<sub>2</sub>CO<sub>3</sub> as Template.
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- Chinese Journal of Chemistry, 2015, v. 33, n. 11, p. 1303, doi. 10.1002/cjoc.201500455
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- Article
An Approach towards Synthesis of Nanoarchitectured LiNi<sub>1/3</sub>Co<sub>1/3</sub>Mn<sub>1/3</sub>O<sub>2</sub> Cathode Material for Lithium Ion Batteries.
- Published in:
- Chinese Journal of Chemistry, 2015, v. 33, n. 2, p. 261, doi. 10.1002/cjoc.201400551
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- Article
Preparation of carbon aerogel by ambient pressure drying and its application in lithium/sulfur battery.
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- Journal of Applied Electrochemistry, 2013, v. 43, n. 1, p. 65, doi. 10.1007/s10800-012-0505-2
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- Article
Self‐Adaptive and Electric Field‐Driven Protective Layer with Anchored Lithium Deposition Enable Stable Lithium Metal Anode.
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- Energy & Environmental Materials, 2024, v. 7, n. 3, p. 1, doi. 10.1002/eem2.12599
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- Article
Effect of NaS treatment on the structural and electrochemical properties of LiMnNiCoO cathode material.
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- Journal of Solid State Electrochemistry, 2018, v. 22, n. 2, p. 547, doi. 10.1007/s10008-017-3783-0
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- Article
The design and preparation of the composite with layered spherical structure for Li-S battery.
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- Journal of Solid State Electrochemistry, 2018, v. 22, n. 2, p. 591, doi. 10.1007/s10008-017-3787-9
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- Article
Facile synthesis of LiV(Po)/C nano-flakes with high-rate performance as cathode material for Li-ion battery.
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- Journal of Solid State Electrochemistry, 2014, v. 18, n. 1, p. 215, doi. 10.1007/s10008-013-2249-2
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- Article
A Unique Structure of Highly Stable Interphase and Self‐Consistent Stress Distribution Radial‐Gradient Porous for Silicon Anode.
- Published in:
- Advanced Functional Materials, 2022, v. 32, n. 13, p. 1, doi. 10.1002/adfm.202107897
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- Article
Oxygen Uptake: Lithium/Oxygen Incorporation and Microstructural Evolution during Synthesis of Li‐Rich Layered Li[Li<sub>0.2</sub>Ni<sub>0.2</sub>Mn<sub>0.6</sub>]O<sub>2</sub> Oxides (Adv. Energy Mater. 8/2019).
- Published in:
- Advanced Energy Materials, 2019, v. 9, n. 8, p. N.PAG, doi. 10.1002/aenm.201803094
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- Article
Lithium/Oxygen Incorporation and Microstructural Evolution during Synthesis of Li‐Rich Layered Li[Li<sub>0.2</sub>Ni<sub>0.2</sub>Mn<sub>0.6</sub>]O<sub>2</sub> Oxides.
- Published in:
- Advanced Energy Materials, 2019, v. 9, n. 8, p. N.PAG, doi. 10.1002/aenm.201803094
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- Article
GO‐CoNiP New Composite Material Modified Separator for Long Cycle Lithium–Sulfur Batteries.
- Published in:
- Small, 2024, v. 20, n. 17, p. 1, doi. 10.1002/smll.202307912
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- Publication type:
- Article
High Value-Added Utilization of Waste Hydrodesulfurization Catalysts: Low-Cost Synthesis of Cathode Materials for Lithium-Ion Batteries.
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- Separations (2297-8739), 2022, v. 9, n. 12, p. 449, doi. 10.3390/separations9120449
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- Article
Three‐Dimensional SnS<sub>2</sub> Nanoarrays with Enhanced Lithium‐Ion Storage Properties.
- Published in:
- ChemElectroChem, 2020, v. 7, n. 21, p. 4484, doi. 10.1002/celc.202001175
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- Article
Simultaneous Component Ratio and Particle Size Optimization for High‐Performance and High Tap Density P2/P3 Composite Cathode of Sodium‐Ion Batteries.
- Published in:
- ChemElectroChem, 2019, v. 6, n. 19, p. 5155, doi. 10.1002/celc.201901211
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- Article
Ultra‐Low Concentration Electrolyte Enabling LiF‐Rich SEI and Dense Plating/Stripping Processes for Lithium Metal Batteries.
- Published in:
- Advanced Science, 2022, v. 9, n. 28, p. 1, doi. 10.1002/advs.202203216
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- Article
Design and Synthesis of Layered Na<sub>2</sub>Ti<sub>3</sub>O<sub>7</sub> and Tunnel Na<sub>2</sub>Ti<sub>6</sub>O<sub>13</sub> Hybrid Structures with Enhanced Electrochemical Behavior for Sodium‐Ion Batteries.
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- Advanced Science, 2018, v. 5, n. 9, p. 1, doi. 10.1002/advs.201800519
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- Article
How to Promote the Industrial Application of SiO<sub>x</sub> Anode Prelithiation: Capability, Accuracy, Stability, Uniformity, Cost, and Safety.
- Published in:
- Advanced Energy Materials, 2022, v. 12, n. 48, p. 1, doi. 10.1002/aenm.202202342
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- Article
Reversible Activation of V<sup>4+</sup>/V<sup>5+</sup> Redox Couples in NASICON Phosphate Cathodes.
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- Advanced Energy Materials, 2022, v. 12, n. 25, p. 1, doi. 10.1002/aenm.202200966
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- Article
Revisiting the Preparation Progress of Nano‐Structured Si Anodes toward Industrial Application from the Perspective of Cost and Scalability.
- Published in:
- Advanced Energy Materials, 2022, v. 12, n. 7, p. 1, doi. 10.1002/aenm.202102181
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- Article
A Novel NASICON‐Typed Na<sub>4</sub>VMn<sub>0.5</sub>Fe<sub>0.5</sub>(PO<sub>4</sub>)<sub>3</sub> Cathode for High‐Performance Na‐Ion Batteries.
- Published in:
- Advanced Energy Materials, 2021, v. 11, n. 22, p. 1, doi. 10.1002/aenm.202100729
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- Article
SiO<sub>x</sub> Anode: From Fundamental Mechanism toward Industrial Application.
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- Small, 2021, v. 17, n. 51, p. 1, doi. 10.1002/smll.202102641
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- Article
Nanowire of WP as a High‐Performance Anode Material for Sodium‐Ion Batteries.
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- Chemistry - A European Journal, 2019, v. 25, n. 4, p. 971, doi. 10.1002/chem.201804943
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- Article
Improving Low‐temperature Performance and Stability of Na<sub>2</sub>Ti<sub>6</sub>O<sub>13</sub> Anodes by the Ti−O Spring Effect through Nb‐doping.
- Published in:
- Angewandte Chemie, 2023, v. 135, n. 46, p. 1, doi. 10.1002/ange.202312310
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- Article
Improving Low‐temperature Performance and Stability of Na<sub>2</sub>Ti<sub>6</sub>O<sub>13</sub> Anodes by the Ti−O Spring Effect through Nb‐doping.
- Published in:
- Angewandte Chemie International Edition, 2023, v. 62, n. 46, p. 1, doi. 10.1002/anie.202312310
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- Publication type:
- Article
A Ge/Carbon Atomic‐Scale Hybrid Anode Material: A Micro–Nano Gradient Porous Structure with High Cycling Stability.
- Published in:
- Angewandte Chemie International Edition, 2021, v. 60, n. 22, p. 12539, doi. 10.1002/anie.202102048
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- Publication type:
- Article
Synthesis Strategies and Structural Design of Porous Carbon‐Incorporated Anodes for Sodium‐Ion Batteries.
- Published in:
- Small Methods, 2020, v. 4, n. 6, p. 1, doi. 10.1002/smtd.201900163
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- Article
Organic Cross‐Linker Enabling a 3D Porous Skeleton–Supported Na<sub>3</sub>V<sub>2</sub>(PO<sub>4</sub>)<sub>3</sub>/Carbon Composite for High Power Sodium‐Ion Battery Cathode.
- Published in:
- Small Methods, 2019, v. 3, n. 4, p. N.PAG, doi. 10.1002/smtd.201800169
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- Article
Preparation of PVDF/CaCO<sub>3</sub> hybrid hollow fiber membranes for direct contact membrane distillation through TIPS method.
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- Journal of Applied Polymer Science, 2016, v. 133, n. 18, p. n/a, doi. 10.1002/app.43372
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- Article
Nickel‐Rich Layered Cathode Materials for Lithium‐Ion Batteries.
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- Chemistry - A European Journal, 2021, v. 27, n. 13, p. 4249, doi. 10.1002/chem.202003987
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- Article
Formulating Local Environment of Oxygen Mitigates Voltage Hysteresis in Li‐Rich Materials.
- Published in:
- Advanced Materials, 2024, v. 36, n. 16, p. 1, doi. 10.1002/adma.202311814
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- Article
Improving the intrinsic electronic conductivity of NiMoO<sub>4</sub> anodes by phosphorous doping for high lithium storage.
- Published in:
- Nano Research, 2022, v. 15, n. 1, p. 186, doi. 10.1007/s12274-021-3455-3
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- Publication type:
- Article