1.
Stabilized lithium metal anode by an efficient coating for high-pe..
[2688]
|
2.
High-Performance Three-Dimensional Li Anode Scaffold Enabled by Ho..
[1125]
|
3.
High-Rate and Large-Capacity Lithium Metal Anode Enabled by Volume..
[1029]
|
4.
Unravelling the room-temperature atomic structure and growth kinet..
[1016]
|
5.
Biofilm Nanofiber-Coated Separators for Dendrite-Free Lithium Meta..
[959]
|
6.
High-Performance, Low-Cost, and Dense-Structure Electrodes with Hi..
[825]
|
7.
Solvent-Free and Long-Cycling Garnet-Based Lithium-Metal Batteries
[770]
|
8.
Aligned graphene array anodes with dendrite-free behavior for high..
[718]
|
9.
Improved Electrochemical Performance of Li-Rich Layered Oxide Cath..
[714]
|
10.
Cation/Anion Codoped and Cobalt-Free Li-Rich Layered Cathode for ..
[693]
|
11.
LaNiO3 As A Novel Anode For Lithium-ion battery
[685]
|
12.
Practical Challenges and Future Perspectives of All-Solid-State Li..
[588]
|
13.
High-Performance Aqueous Zn2+/Al3+ Electrochromic Batteries based ..
[581]
|
14.
Electrocatalytic NiCo(2)O(4 )Nanofiber Arrays on Carbon Cloth for ..
[576]
|
15.
LaNiO3 as a Novel Anode for Lithium-Ion Batteries
[560]
|
16.
Microstructure of Lithium Dendrites Revealed by Room-Temperature E..
[560]
|
17.
Ultrafast sintering for ceramic-based all-solid-state lithium-meta..
[546]
|
18.
Double Perovskite La2MnNiO6 as a High-Performance Anode for Lithiu..
[538]
|
19.
High-performance Ta-doped Li7La3Zr2O12 garnet oxides with AlN addi..
[533]
|
20.
High-quality TEM specimen preparation for lithium-ion conducting s..
[527]
|
21.
Microstructure of the Li-Al-O Second Phases in Garnet Solid Electr..
[518]
|
22.
Ultrafast Carbonized Wood of Electrode-Scaled Aligned-Porous Struc..
[517]
|
23.
Dynamic salt capsulated synthesis of carbon materials in air
[512]
|
24.
The Influence of Surface Chemistry on Critical Current Density for..
[499]
|
25.
Kinetic Resolution of 1,2-Diamines via Organocatalyzed Asymmetric ..
[498]
|
26.
Enhanced ionic conductivity in phase stabilized yttria-doped zirco..
[470]
|
27.
Catalytic Enantioselective Synthesis of Axially Chiral Diaryl Ethe..
[468]
|
28.
Grain-Boundary-Rich Triphasic Artificial Hybrid Interphase Toward ..
[459]
|
29.
Circumferential Li metal deposition at high rates enabled by the s..
[443]
|
30.
Niobium Tungsten Oxides for Electrochromic Devices with Long-Term ..
[442]
|
31.
Pitfalls in Electrochemical Liquid Cell Transmission Electron Micr..
[433]
|
32.
An electron-blocking interface for garnet-based quasi-solid-state ..
[433]
|
33.
Application of Auger electron spectroscopy in lithium-ion conducti..
[431]
|
34.
一种氧化铝坩埚及其制备方法和用途
[425]
|
35.
Low-sintering-temperature garnet oxides by conformal sintering-aid..
[420]
|
36.
In Situ Probing the Kinetics of Gold Nanoparticle Thermal Sinterin..
[410]
|
37.
Recycling of garnet solid electrolytes with lithium-dendrite penet..
[405]
|
38.
Conformable and self-healing solid state electrolytes for stable l..
[402]
|
39.
Synthesis of Oligosaccharides Relevant to the Substrates of Hepara..
[401]
|
40.
Mechanism of lithium electrodeposition in a magnetic field
[400]
|
41.
Two-Dimensional Sulfonate-Functionalized Metal-Organic Framework M..
[395]
|
42.
A two-dimensional superlattice membrane enables high-performance d..
[390]
|
43.
Water-Stable Lithium Metal Anodes with Ultrahigh-Rate Capability E..
[387]
|
44.
The effects of local strain on the cubic Li7La3Zr2O12(001)/Li(001)..
[385]
|
45.
High-safety composite solid electrolyte based on inorganic matrix ..
[381]
|
46.
Thick electrode with thickness-independent capacity enabled by ass..
[378]
|
47.
Unlocking the concentration polarization for Solid-State lithium m..
[375]
|
48.
4-(2'-Phenylethynylphenyl)phenyl glycosides as glycosylation donor..
[374]
|
49.
Improving performances of oxide solid electrolytes by a magnetic f..
[369]
|
50.
Large-scale synthesis of transition metal dichalcogenides at atmos..
[367]
|
51.
Challenges and strategies of lithium-rich layered oxides for Li-io..
[353]
|
52.
一种新型有机醇盐团聚物的应用及固体电解质组合物
[351]
|
53.
Machine Learning on Microstructure-Property Relationship of Lithiu..
[350]
|
54.
Building vertically-structured, high-performance electrodes by int..
[346]
|
55.
Tailoring Monovalent Ion Sieving in Graphene-Oxide Membranes with ..
[339]
|
56.
Quantifying the Growth Kinetics of Lithium Metal Reduced from Soli..
[336]
|
57.
一种具有提锂功能的定向导液复合膜、制备方法及应用
[335]
|
58.
Electrochemical sintering of lithium metal constrained by buffer l..
[333]
|
59.
电致变色材料及其制备方法和用途、电池
[330]
|
60.
Dendrite-Free Lithium Deposition and Stripping Regulated by Aligne..
[328]
|
61.
In Situ Formed Magnesiophilic Sites Guiding Uniform Deposition for..
[326]
|
62.
一种具有光热辅助提锂功能的非织造材料、制备方法及应用
[322]
|
63.
Solar-Driven Lithium Extraction by a Floating Felt
[322]
|
64.
Self-driven lithium extraction by directional liquid transport non..
[320]
|
65.
Ultrathin Layered Double Hydroxide Nanosheets Enabling Composite P..
[316]
|
66.
MXene-Based Anode-Free Magnesium Metal Battery
[311]
|
67.
Unveiling Cu Nanoparticles Formed During Li Deposition in Anode-Fr..
[309]
|
68.
Enhanced Critical Current Density in the Garnet Oxide Electrolyte ..
[308]
|
69.
High Utilization of Composite Magnesium Metal Anodes Enabled by a ..
[306]
|
70.
An in-situ polymerized interphase engineering for high-voltage all..
[306]
|
71.
High-Performance Complementary Electrochromic Batteries using Nb
[305]
|
72.
一种固态聚合物电解质及其制备方法和用途
[303]
|
73.
High-Performance Flexible Polymer Memristor Based on Stable Filame..
[301]
|
74.
An RLS Based Battery Modeling Method to Compensate for Recovery Ef..
[297]
|
75.
全固态锂金属电池多物理场耦合下的电化学过程仿真模拟
[290]
|
76.
一种潮解分离提纯方法
[283]
|
77.
Challenges, fabrications and horizons of oxide solid electrolytes ..
[282]
|
78.
Simulation of the Electrochemistry Process with the Coupling of Mu..
[277]
|
79.
一种空气中制备裂解碳的方法及应用
[265]
|
80.
一种互补电致变色储能器件及其制备方法和用途
[264]
|
81.
陶瓷、制备方法及其应用
[261]
|
82.
Single Lithium-Ion Conductor Decorated LiMn2O4
[260]
|
83.
一种富锂层状正极材料、其制备方法及由其形成的电池正极和电池
[255]
|
84.
Low-Temperature Synthesis of Lithium Lanthanum Titanate/Carbon Nan..
[255]
|
85.
一种自修复复合固态电解质、准固态电解质及锂电池
[252]
|
86.
Fast-Charging Solid-State Lithium Metal Batteries: A Review
[243]
|
87.
一种用于快充锂离子电池负极的三维石墨烯及其制备方法
[240]
|
88.
Inorganic lithium-ion conductors for fast-charging lithium batteri..
[237]
|
89.
Chloride-Free Electrolyte Based on Tetrabutylammonium Triflate Add..
[235]
|
90.
Interfacial Manipulation via In Situ Constructed Fast Ion Transpor..
[232]
|
91.
Hybrid Polymer-Alloy-Fluoride Interphase Enabling Fast Ion Transpo..
[231]
|
92.
Composite flat-sheet membrane adsorbent of Li2TiO3-Ethylene-co-vin..
[230]
|
93.
一种一体化电极-电解质结构及其制备方法与全固态电池
[226]
|
94.
All-in-One Structured Lithium-Metal Battery
[221]
|
95.
Grain-Boundary-Rich Triphasic Artificial Hybrid Interphase Towards..
[216]
|
96.
Integration of a low-tortuous electrode and an in-situ-polymeri..
[215]
|
97.
一种电极、制备方法及锂离子电池
[211]
|
98.
一种固态电解质及全固态锂金属电池的快速烧结制备方法
[207]
|
99.
Recent Advances in Kinetic Resolution of Tertiary Alcohols
[204]
|
100.
Realizing horizontal magnesium platelet deposition and suppressed ..
[197]
|