분기 논문 동향 — 2026-W23~W30
이번 분기 핵심 변화
- 총 106→576편 (+443%)
- ↑ 액체전해질 11%→25% (+14%p)
- ↑ 기타 13%→24% (+11%p)
- ↓ 음극 29%→9% (-20%p)
- ↓ 전고체(ASSB) 30%→23% (-7%p)
- IF tier: ⭐⭐⭐ 4%→5%, ⭐⭐ 8%→7%
⚠️ 이 리포트는 내 Google Scholar 피드 슬라이스에 대한 분석이며, 해당 분야 문헌 전체를 대표하지 않습니다.
한눈에
논문 576편
토픽(tag) 분포
Si-LIB52
ASSB132
Cathode109
IF tier(star) 분포
⭐⭐⭐29
⭐⭐40
⭐183
(IF<10/미상)324
주요 venue
Journal of Power Sources38
Journal of Energy Storage34
Nature Communications33
Energy storage materials25
Advanced Functional Materials20
Advanced Materials18
Advanced Energy Materials17
Chemical Engineering Journal15
Electrochimica Acta12
ACS Applied Materials & Interfaces11
📊 직전 대비 (2026-W15~W22 → 2026-W23~W30)
전체: 106편(8주) → 576편(8주)
섹션 증감
음극+21
양극+92
전고체(ASSB)+100
액체전해질+131
기타+126
음극 31
52
양극 17
109
전고체(ASSB) 32
132
액체전해질 12
143
기타 14
140
섹션 점유율(이번)
음극 9%양극 19%전고체(ASSB) 23%액체전해질 25%기타 24%
IF tier 증감
⭐⭐⭐+25
⭐⭐+32
⭐+142
(IF<10/미상)+271
IF tier 믹스(이번)
⭐⭐⭐ 5%⭐⭐ 7%⭐ 32%(IF<10/미상) 56%
⭐ 주목 논문 (IF≥20)
- Scaling vanadium flow battery for long-duration energy storage — Nature Energy ⭐⭐⭐ · [액체전해질] 🔗
- The interplay between stack pressure, mechanical expansion and degradation pathways in lithium-ion batteries — Nature Energy ⭐⭐⭐ · [기타] 🔗
- Challenges and trends in automotive battery recycling — Nature Energy ⭐⭐⭐ · [액체전해질] 🔗
- Interfaces in All-Solid-State Li Metal Batteries: From Fundamental Research to Practical Applications — Chemical Reviews ⭐⭐⭐ · [전고체(ASSB)] 🔗
- Fast formation to reinforce lithium-rich cathodes — Nature ⭐⭐⭐ · [양극] 🔗
- Revealing competitive interfacial reactions in high-energy Li–S batteries — Nature ⭐⭐⭐ · [액체전해질] 🔗
- Dendrite initiation and deflection in biaxially stressed solid electrolytes — Nature ⭐⭐⭐ · [기타] 🔗
- Single-phase gradient-solvation-electrolyte-stabilized Li metal batteries — Nature ⭐⭐⭐ · [액체전해질] 🔗
- Quantitative elucidation of in situ lithium metal anode modification on NCM811 cathode failure mechanisms in high-nickel solid-state lithium metal batteries — eScience ⭐⭐⭐ · [양극] 🔗
- Nano-framework electroplating enabled by chloride electrolyte engineering for long-life and high-reversibility aqueous zinc-ion batteries — eScience ⭐⭐⭐ · [액체전해질] 🔗
- Anion–Diluent Decoupled Solvation Chemistry in Ionic Liquid-Based Localized High-Concentration Electrolytes Toward High-Voltage Lithium Metal Batteries — Nano-Micro Letters ⭐⭐⭐ · [액체전해질] 🔗
- Multifunctional Conductive and Elastic Matrices-Engineered Si Nanocomposite Anodes for Liquid and Solid-State Lithium Batteries — Nano-Micro Letters ⭐⭐⭐ · [전고체(ASSB)] 🔗
- Recent Advances of Atomic/Molecular Layer Deposition Engineering Silicon Interface for Lithium-Ion Batteries — Nano-Micro Letters ⭐⭐⭐ · [음극] 🔗
- Coordination–Entropy Regulation: Toward Unified Design of Hydrogel Electrolytes for Practical Wide-Temperature Zinc-Ion Batteries — Nano-Micro Letters ⭐⭐⭐ · [액체전해질] 🔗
- Inhibition of Surface-Originated Degradations in Lithium-Rich Layered Cathode via a Pre-Constructed Carbon/Fluorine-Rich Artificial CEI Layer — Nano-Micro Letters ⭐⭐⭐ · [양극] 🔗
🗺️ 토픽 지도
액체전해질 (143편)
11%→25%로 증가. 고분자 초고속 충전(28)과 음이온 농축 에테르 전해질(21)이 주류이며, VFB 효율 >80% 달성(Scaling vanadium flow battery)과 자동차 배터리 재활용 규모 3배 확대(Challenges and trends in automotive battery recycling)를 제시한다.
하위토픽 14개
- 고분자 초고속 충전 전해질 · 28편 · Tailoring electrolyte phase separation for high-rate solid-state lithium metal batteries — Nature Communications ⭐ 🔗 / Interface-compatible and flame-retardant gel polymer electrolytes for high-voltage lithium metal batteries — Journal of Power Sources 🔗
- 음이온 농축 에테르 전해질 · 21편 · Regulating Li-Ion Transport via Solvent and Ion Clustering Using Ternary Salts in Nonfluorinated Solvents for Extended Cyclability of Zero-Excess Lithium-Metal Batteries — Journal of the American Chemical Society ⭐ 🔗 / Thermal-Activated Interphase Enables High-Temperature Stable Lithium Metal Batteries — Energy storage materials ⭐ 🔗
- 극저온 나트륨 에너지 전해질 · 15편 · Reversibility‐Driven Degradation Mechanisms and Targeted Modulation Strategies for Anode‐Free Sodium Metal Batteries — Advanced Energy Materials ⭐⭐ 🔗 / Fluorine-free acetonitrile-based electrolytes with anion-reinforced solvation chemistry for sustainable sodium-ion full batteries — Nature Communications ⭐ 🔗
- 고황 황화물 촉매 시스템 · 11편 · Electrolyte-coupled interfacial and catalytic design for practical lithium-sulfur batteries — Journal of Energy Chemistry ⭐ 🔗 / Revealing competitive interfacial reactions in high-energy Li–S batteries — Nature ⭐⭐⭐ 🔗
- MXene 폴리머 복합 전극 · 9편 · Recent advances in MXene-based composite electrodes and solid-state electrolytes for enhanced mechanical, physical, and electrochemical properties for energy storage devices — Journal of Energy Storage ⭐ 🔗 / Tailoring Mn-ion batteries through a nonaqueous electrolyte — Materials Science and Engineering R Reports 🔗
- 생분해 젤 바이오고분자 · 9편 · Constructing a Flexible-Rigid Integrated Network within Hydrogel Electrolyte to Achieve High-Stability Zinc-Iodine Batteries — ACS Sustainable Chemistry & Engineering 🔗 / Interfacial engineering and electrolyte design toward highly-stable flexible zinc-iodine batteries — Journal of Energy Storage ⭐ 🔗
- 강성 고분자 단일이온 · 9편 · Siloxane-polycarbonate electrolyte with fast ion transport for solid lithium batteries — Journal of Energy Storage ⭐ 🔗 / Single-Ion Conducting Polymer Electrolytes for Lithium Metal Batteries — Progress in Polymer Science 🔗
- 저온 하이드로겔 아연 · 8편 · Coordination–Entropy Regulation: Toward Unified Design of Hydrogel Electrolytes for Practical Wide-Temperature Zinc-Ion Batteries — Nano-Micro Letters ⭐⭐⭐ 🔗 / Tetravalent organic cation-enabled dual interfacial regulation for durable aqueous zinc–iodine batteries — Nature Communications ⭐ 🔗
- 나노섬유 첨가 아연 전해질 · 7편 · Electrolyte-Dependent Assembly of Silk Nanofibrils Rewrites Interfacial Regulation of Zinc Anodes — ACS Applied Energy Materials 🔗 / A Natural Solvent‐Based Gel Electrolyte for Stable and Sustainable Zinc‐Ion Batteries — Advanced Sustainable Systems 🔗
- 음이온 농축 나트륨 전해액 · 7편 · Tailoring Carbonate Electrolytes toward Fast-Charging and Wide-Temperature Sodium-Ion Full Batteries — ACS Energy Letters ⭐ 🔗 / Advancements in vanadium redox flow battery electrolytes: Additive effects and future research directions — Renewable and Sustainable Energy Reviews 🔗
- 고점도 덴드라이트 억제 · 6편 · Guiding Uniform Nucleation and Growth by Engineered Electrolyte‐Philic and Sodiophilic Interface for Dendrite‐Free Sodium Metal Batteries — Advanced Energy Materials ⭐⭐ 🔗 / Enhanced ion transport and mechanical strength in hydroxylated BN-filled gel polymer electrolytes for durable lithium metal batteries — Materials Today Energy 🔗
- 저온 구동 전해질 · 6편 · Rational Design of Electrolyte Additives for Low-Temperature Lithium Metal Batteries — Nano Letters 🔗 / Low-temperature electrolyte via hydrogen-bonding coordination competition for 4.8 V lithium metal batteries — Energy storage materials ⭐ 🔗
- 음이온 농축 용매화 구조 · 4편 · Advanced Electrolyte Materials Design for High‐Energy Lithium Metal Batteries Beyond 500 Wh Kg −¹ — Advanced Materials ⭐⭐ 🔗 / Ionic liquids in aqueous zinc metal batteries using mild electrolytes: from electrolyte engineering to interfacial chemistry — Science China Chemistry 🔗
- 나트륨 배터리 전해질 공학 · 3편 · Innovation of Electrolyte and Electrode Materials and Interface Construction Strategies in Sodium-Ion Batteries — Coatings 🔗 / Chemical pre-sodiation of pitch-derived hard carbon anode via electrolyte additive and its sodium storage performance — Materials Science and Engineering B 🔗
기타 (140편)
13%→24%로 증가. 고로딩 초고속 리튬 전해질(28)과 인산염 코팅 산화규소(22)가 중심이며, 스택 압력 4배로 수명 2배 연장(The interplay between stack pressure)과 쌍축 압축 330 MPa에서 5000 mAh cm⁻²(Dendrite initiation and deflection)을 달성한다.
하위토픽 12개
- 고로딩 초고속 리튬 전해질 · 28편 · Tailoring Interfaces With Poly(Ionic Liquid)‐Grafted Porous Hybrid Molecular Brushes in Quasi‐Solid‐State Composite Electrolytes Enables Ultrahigh‐Rate and High‐Voltage Lithium Metal Batteries — Angewandte Chemie ⭐ 🔗 / Polarization‐Induced Effect Potentiated In Situ Polymerized Electrolyte for Solid‐State Lithium Metal Batteries — Advanced Functional Materials ⭐ 🔗
- 인산염 코팅 산화규소 · 22편 · Synergistic Li3PO4/carbon coating on SiOx anodes enables rapid ion/electron transport and stable solid electrolyte interphase — Journal of Electroanalytical Chemistry 🔗 / nSi@MIL−53(Al) anode for lithium-ion batteries with incessantly improved capacity enabled by its structure-activation, and Li+-enriching characteristics — Journal of Alloys and Compounds 🔗
- 나노 입자 강화 PEO · 13편 · Physical/Chemical Mismatch Elimination Enabling Ultra‐Uniform Composite Solid Electrolyte for High Performance Solid‐State Lithium Metal Batteries — Advanced Functional Materials ⭐ 🔗 / Highly fluorinated carbon dot-constructed electrolyte membranes with high conductivity and a LiF-rich SEI toward dendrite-free solid-state lithium metal batteries — Journal of Membrane Science 🔗
- 심층학습 SEI 예측 · 13편 · Quantitative analysis of LiF in solid electrolyte interphases using AMDG-1D CNN combined with far-infrared spectroscopy — Journal of Energy Chemistry ⭐ 🔗 / Electrolyte‐Dependent Aging Analysis in SiO ₓ ‐Based Li‐Ion Batteries via Composite Electrode Model — Batteries & Supercaps 🔗
- 생체 고분자 나트륨 전해질 · 10편 · Biopolymer electrolytes for sodium-ion batteries: An informative concise and up-to-date review on the future of solid-state electrochemical devices — Next Materials 🔗 / Application of bacterial cellulose-based nanomaterials in solid electrolytes for high-performance lithium metal batteries — Nanotechnology 🔗
- 할라이드 음이온 도핑 전도 · 9편 · Crystal and amorphous structure engineering of Li3MCl6-related chloride solid electrolytes: From structural regulation to electrochemical performance — Journal of Energy Storage ⭐ 🔗 / Recycled Lithium and Silicon Precursors for High-Yield Synthesis of Lithium Metasilicate: Optimizing Process Conditions for a Sustainable Route — Research Square 🔗
- 철 질소 고황 배터리 · 8편 · Synergistic Enhancement to Polysulfide Catalytic Conversion and Lithium Dendrite Resistant by 3D Cross‐Linked Fe‐N ₄ ‐GCs for Stable Lithium‐Sulfur Batteries of Low‐N/P‐Ratio — Advanced Energy Materials ⭐⭐ 🔗 / Lattice Matching Theory in Advanced Batteries — Fundamental Research 🔗
- 업사이클 흑연 고로딩 · 8편 · Upcycling battery scrap into commercial-grade graphite anode materials via coal tar-assisted granulation — Chemical Engineering Journal ⭐ 🔗 / Exploring the potential of graphite recycling and reuse for more sustainable lithium-ion batteries — Journal of Power Sources 🔗
- 삼원 금속산화물 음극 · 8편 · Modified graphite oxide as an anode material for sodium ion battery — Chemical Physics Letters 🔗 / Correction: Tang et al. A Hollow Silicon Nanosphere/Carbon Nanotube Composite as an Anode Material for Lithium-Ion Batteries. Coatings 2022, 12, 1515 — Coatings 🔗
- 바나듐 흐름전지 전해질 · 7편 · Electrolyte Engineering in Aqueous Zinc‐Ion Batteries: From Solvation Chemistry to Interface Stabilization — ChemElectroChem 🔗 / Rechargeable Aqueous Zinc‐Vanadium Batteries With Synergistically Enhanced Performance Enabled by 3D Printing Structure and Electrolyte Additive Engineering — Advanced Functional Materials ⭐ 🔗
- 용융염 하드카본 나트륨 · 7편 · Soft-hard carbon composite anode with enhanced potassium storage via molten salt-assisted cross-linking and hybridization — Journal of Energy Storage ⭐ 🔗 / Application of Magnesium Metal as Anode in Batteries — MetalMat 🔗
- 무음극 리튬금속 · 7편 · Solvent-gradient coordination design of LiNO3-based electrolytes for anode-free lithium metal batteries — Chemical Engineering Journal ⭐ 🔗 / Self-evolving solid electrolyte interphase from Bi2O2CO3 current collector enabling dense electrodeposition for anode-free lithium metal batteries — Energy storage materials ⭐ 🔗
전고체(ASSB) (132편)
30%→23%로 감소. 황화물 고체전해질(25)과 공유유기골격 나트륨 전해질(21)이 주도하며, β-phase Li3N SE로 4000h 안정 사이클링(Interfaces in All-Solid-State Li Metal Batteries)과 Si 나노복합체 434.4 Wh kg⁻¹ LIB / 300+ Wh kg⁻¹ ASSLB(Multifunctional Conductive and Elastic Matrices)를 달성한다.
하위토픽 13개
- 황화물 고체전해질 · 25편 · Argyrodite Sulfide Electrolytes with Dry Atmospheric Stability for All‐Solid‐State Lithium Batteries — Advanced Materials ⭐⭐ 🔗 / Dendrite-tolerant fast-kinetics design for all-solid-state lithium-metal batteries via site-specific customized sulfide electrolytes — Energy storage materials ⭐ 🔗
- 공유유기골격 나트륨 전해질 · 21편 · Engineering ion migration and interface chemistry via covalent organic framework-enhanced polymer electrolytes for fast-charging sodium solid-state batteries — Unknown 🔗 / Enhanced Kinetics of Lithium-Ion Charge Storage on Si Anode through Ultrasmall Magnesium Nitride Nanoparticles toward Fast and Durable All-Solid-State Lithium-Ion Batteries — ACS Applied Materials & Interfaces 🔗
- 고강도 리튬 고체전해질 · 19편 · Polyetherimide-based composite solid-state electrolyte with high thermal stability — Journal of Power Sources 🔗 / A High‐Performance, Low‐Cost and Recyclable Solid Electrolyte for Practical All‐Solid‐State Lithium‐Based Batteries — Angewandte Chemie International Edition ⭐ 🔗
- 비스무스 코팅 고전압 · 11편 · Synergistic Regulation of Interfacial Potential and Anionic Covalency for High‐Voltage Cobalt‐Free All‐Solid‐State Batteries — Angewandte Chemie ⭐ 🔗 / Synergistic Regulation of Interfacial Potential and Anionic Covalency for High‐Voltage Cobalt‐Free All‐Solid‐State Batteries — Angewandte Chemie International Edition ⭐ 🔗
- 할라이드 고체전해질 · 11편 · Multi-Anion/Cation Engineering Enables Fast Ion Transport and Stable Interfaces in Zr-Based Halide Electrolytes for All-Solid-State Batteries — Chemical Science 🔗 / Powdery oxychloride solid electrolytes enabling low-pressure all-solid-state batteries — Journal of Materials Chemistry A 🔗
- 붕소 도핑 니켈 리치 · 8편 · Homogenizing Li-ion flux through radially re-arranged primary particle of Ni-rich Li(Ni0.92Co0.05Mn0.03)O2 layered cathode materials for fast-charging performance of all-solid-state Li-ion batteries — Journal of Power Sources 🔗 / Mitigating Anolyte-Free Si Anode Failure in All-Solid-State Lithium-Ion Batteries via Roll-Transfer Printing Prelithiation and Soft Metal Conductive Additives — ACS Applied Materials & Interfaces 🔗
- Li 도금 안정화 · 8편 · Interfaces in All-Solid-State Li Metal Batteries: From Fundamental Research to Practical Applications — Chemical Reviews ⭐⭐⭐ 🔗 / Suppressing Dendrites via Lateral Lithium Flux in Li Metal Solid-State Batteries — Energy & Environmental Science ⭐⭐⭐ 🔗
- 하이브리드 음극 계면 · 6편 · Towards Durable Fast-Charging All-Solid-State Batteries: Challenges and Mitigation Strategies for High-Loading Composite Cathodes — JOM 🔗 / Phosphorus-graphite modification anode with enhanced interfacial kinetics for fast-charging solid-state lithium-ion batteries — Progress in Natural Science Materials International 🔗
- 초박막 응력 완화 전해질 · 6편 · Enabling high-voltage and wide-temperature quasi-solid-state batteries via spatially engineered polyether electrolyte interfaces — Joule ⭐⭐⭐ 🔗 / Ultrathin solid electrolytes design: materials, interfaces, and manufacturing strategies for high-energy-density solid-state batteries — Energy storage materials ⭐ 🔗
- 폴리우레탄 고용량 양극 · 5편 · A Cellulose‐Derived Polymer Additive for Stabilizing Thick Cathodes in All‐Solid‐State Batteries — Angewandte Chemie International Edition ⭐ 🔗 / Dilatometric analysis reveals the dimensional reversibility of lithium-metal electrodes in all-solid-state batteries — Journal of Power Sources 🔗
- 고체전해질 Li⁺ 전도도 · 5편 · In situ engineering of a hybrid conductive interlayer enables dendrite-suppressed Li metal anode for high-stability garnet solid-state batteries — Journal of Power Sources 🔗 / Nanoengineered doping overcomes sintering and grain-boundary limitations in all-solid-state lithium batteries with garnet electrolytes — Unknown 🔗
- 이종 할라이드 계면 · 4편 · Theoretically guided design of unified antiperovskite cathode–electrolyte frameworks for lithium-ion all-solid-state batteries — Applied Surface Science 🔗 / Engineering a redox-active interface for highly reversible aluminum anode-based practical all-solid-state lithium batteries with ultralow N/P ratio — Chemical Science 🔗
- Si 음극 부피 팽창 제어 · 3편 · Internal and external challenges towards silicon anodes in sulfide solid-state batteries — Journal of Energy Storage ⭐ 🔗 / Electro-chemo-mechanical design of liquid metal interfacial layer on silicon anode for all-solid-state batteries — Journal of Energy Chemistry ⭐ 🔗
양극 (109편)
16%→19%로 증가. 폴리머 세라믹 고체전해질(18)과 재생 니켈코발트 도핑 망간(17)이 주류이며, 고속 형성으로 가역 용량 20% 향상·사이클 수명 36% 이상 연장(Fast formation to reinforce lithium-rich cathodes)과 LiSn-LiF 개질로 고니켈 고체 배터리 양극 상전이 지연(Quantitative elucidation of in situ lithium metal anode modification)을 달성한다.
하위토픽 10개
- 폴리머 세라믹 고체전해질 · 18편 · High-performance ionic liquid-plasticized blended polymer composite electrolyte for solid-state lithium batteries — Journal of Power Sources 🔗 / Interfacial Engineering of Dry-Processed High-Loading LiNi ₀.₅ Mn ₁.₅ O ₄ Cathodes: Additive Dissolution and Bilayer Cathode–Electrolyte Interphase toward Stable High-Voltage Lithium Metal Batteries — ACS Applied Materials & Interfaces 🔗
- 재생 니켈코발트 도핑 망간 · 17편 · Acid-Free and Synergistic Extraction of Li and Mn from Spent Lithium-Ion Batteries and Direct Resynthesis of Lithium Manganate Cathode Material — ACS Sustainable Chemistry & Engineering 🔗 / Targeted Microstructural Repair of Lithium–ion Battery Cathodes via Direct Regeneration — Advanced Powder Materials 🔗
- 무기 나노 코팅 NMC 양극 · 16편 · Enhanced electrochemical performance of a nano Li2B4O7-Al2O3 coated Li1.20Mn0.54Ni0.13Co0.13O2 cathode material for high-energy Li-ion batteries — Journal of Energy Storage ⭐ 🔗 / Advancements in cathode materials for lithium-ion batteries: Mechanism innovations, multiscale characterization, and data-driven design — Nano Research 🔗
- 바인더 최적화 고속 충전 · 14편 · Enhancing Fast‐Charging Capability of NMC811 Cathodes for Lithium‐Ion Batteries via Cathode Composition and Mechanical Pressure Optimisation — Electrochemical Science Advances 🔗 / Fabrication of Carbon Nanotube Layer-Incorporated Stackable Cathodes by 3D Printing for High-Performance Lithium-Ion Batteries — Energy & Fuels 🔗
- 금속유기골격 리튬 음극 · 9편 · Caging Lithium Deposition: High‐Entropy Metal–Organic Framework Interfaces for Anode‐Free Batteries — Advanced Materials ⭐⭐ 🔗 / High‐Redox‐Potential p‐Type Covalent Organic Frameworks With Abundant Active Sites for High‐Voltage and Long‐Life Lithium‐Ion Battery Cathodes — Angewandte Chemie ⭐ 🔗
- 리튬 과잉 층상 양극 · 9편 · Inhibition of Surface-Originated Degradations in Lithium-Rich Layered Cathode via a Pre-Constructed Carbon/Fluorine-Rich Artificial CEI Layer — Nano-Micro Letters ⭐⭐⭐ 🔗 / The Synthetic Edge: Unlocking Superior Performance in High‐Nickel Li‐Rich Layered Oxide Cathodes for Advanced Lithium‐Ion Batteries — ChemElectroChem 🔗
- 망간철 인산염 저전압 · 8편 · Unraveling Phase Transition Mechanisms and Voltage Hysteresis Suppression in Mn-Doped LiFePO4 cathodes for High-Energy Lithium-Ion Batteries — Electrochimica Acta 🔗 / Tailored strain engineering of olivine LiMnPO4 cathode: enhancing voltage, energy density, and electronic structure for advanced Li-ion batteries — Ionics 🔗
- 산화 탄소나노튜브 양극 · 7편 · Interfacial reaction-modulating single-walled carbon nanotubes for enhancing the high-rate capability of Ni-rich LiNi0.92Co0.04Mn0.04O2 cathodes in lithium-ion batteries — Carbon ⭐ 🔗 / Regulating Cathode−Electrolyte Interphases in Single-Crystalline Ni-Rich Cathodes by Gd₂O ₃ -Integrated Protective Layers — ACS Applied Energy Materials 🔗
- 양극 고속율 용량성 기여 · 4편 · Macroscopic analysis of charge transfers and solid electrolyte interphases overvoltages for insertion batteries — Journal of Energy Storage ⭐ 🔗 / High-rate single-crystalline Li-rich layered oxide with diversified surface-phase cation ordering for Li-ion batteries — Nature Communications ⭐ 🔗
- 고엔트로피 도핑 양극 · 4편 · Synergistic Na–Fe–Sc Multi-Element Doping for High-Performance LiMnPO4 Cathodes in Lithium-Ion Batteries — Materials Today Energy 🔗 / Li-rich Mn-based oxide cathodes: Confronting challenges and prospects for high-energy lithium-ion batteries — Journal of Energy Storage ⭐ 🔗
음극 (52편)
29%→9%로 급감. 고함량 Si/C 복합 음극(15)과 탄소 코팅 Si 나노음극(14)이 중심이며, ALD/MLD 계면 공학으로 1050 cycles 후 2002 mAh g⁻¹을 달성한다(Recent Advances of Atomic/Molecular Layer Deposition Engineering Silicon Interface).
하위토픽 5개
- 고함량 Si/C 복합 음극 · 15편 · Amorphous silicon anode with microporous carbon confinement via chemical vapor deposition for long-cycle lithium-ion batteries — Journal of Power Sources 🔗 / Recent advances in SiO2/Si-based anodes for lithium-ion batteries: From synthesis strategies to structural design and reaction mechanisms — Journal of Alloys and Compounds 🔗
- 탄소 코팅 Si 나노음극 · 14편 · Stabilizing silicon anodes with PECVD-derived carbon coating for lithium-ion batteries — Electrochimica Acta 🔗 / Carbon nanotube-modified Si/C anodes enabling high-rate capability and long cycle life in lithium-ion batteries — Ionics 🔗
- 유연 자립형 실리콘 음극 · 13편 · An Amphiphilic Binder with Complementary Polar–Nonpolar Interactions Enables Flexible Micron-Sized Silicon Anodes — ACS Sustainable Chemistry & Engineering 🔗 / Interfacial Degradation Electrochemistry of Micro‐Silicon Anodes in Solid‐State and Liquid Electrolytes — Advanced Science ⭐ 🔗
- Si 나노입자 임계크기 · 5편 · Multi-Contact Carbon Encapsulation Enables Breaking the Stability–Transport Trade-Off in Si Anodes — ACS Sustainable Chemistry & Engineering 🔗 / Preparation of a flexible and free-standing silicon-based anode via synergistic confinement of silicon particles in a conductive matrix for long-life lithium-ion batteries — Carbon ⭐ 🔗
- Si 사전리튬화 계면 · 3편 · Thermal prelithiation of silicon anodes using solid lithium precursors for high-performance lithium batteries — Journal of Power Sources 🔗 / Pre-lithiation strategy enhancing interfacial stability of carbon-coated SiO anodes via controlled formation of LixSiyOz for high-energy lithium-ion batteries — Chemical Engineering Journal ⭐ 🔗
🔀 횡단 주제
나트륨 이온 전지 — 40편 (액체전해질19·기타15·전고체(ASSB)5·양극1)
MXene 복합 전극 — 4편 (액체전해질2·기타1·음극1)
열안전 가스방출 분석 — 3편 (양극1·음극1·전고체(ASSB)1)
이중염 계면 박막화 — 2편 (기타1·액체전해질1)
🌱 시드 후보 (미등록 주요 잔여 클러스터)
- [기타] 고로딩 초고속 리튬 전해질 · 28편 · 폴리(이온액체)-그라프트된 다공성 하이브리드 분자 브러시를 이용한 준고체 복합 전해질의 계면 설계로 초고속률 및 고전압 리튬 금속 전지 구현 / 극성화 유도 효과가 강화된 원위치 중합 전해질을 이용한 고체 상태 리튬 금속 전지
- [액체전해질] 고분자 초고속 충전 전해질 · 28편 · 고율 고체 리튬 금속 배터리용 전해질 상분리 맞춤 / 고전압 리튬 금속 배터리용 계면 적합성 난연성 젤 고분자 전해질
- [기타] 인산염 코팅 산화규소 · 22편 · Synergistic Li3PO4/carbon 코팅 SiOx 음극으로 빠른 이온/전자 수송 및 안정적인 고체 전해질 계면 가능 / nSi@MIL-53(Al) 리튬 이온 배터리 음극: 구조 활성화 및 Li+ 농축 특성으로 인한 지속적인 용량 향상
반복 등장하는 주제는 lab/data/trend_seeds.yaml 에 시드로 승격하세요.