분기 논문 동향 — 2025-W27~W39
이번 분기 핵심 변화
- 총 504→467편 (-7%)
- ↑ 음극 25%→28% (+3%p)
- ↓ 기타 18%→15% (-3%p)
- IF tier: ⭐⭐⭐ 3%→2%, ⭐⭐ 6%→9%
⚠️ 이 리포트는 내 Google Scholar 피드 슬라이스에 대한 분석이며, 해당 분야 문헌 전체를 대표하지 않습니다.
한눈에
논문 467편
토픽(tag) 분포
ASSB228
Si-LIB87
Cathode133
셀 화학
전고체(ASSB)219
LIB191
나트륨이온16
리튬-황15
리튬금속19
기타 화학7
IF tier(star) 분포
⭐⭐⭐10
⭐⭐43
⭐162
(IF<10/미상)252
주요 venue
Advanced Functional Materials27
Chemical Engineering Journal22
Small19
ACS Applied Energy Materials19
Journal of Power Sources18
Energy storage materials18
Advanced Energy Materials17
ACS Applied Materials & Interfaces17
Advanced Materials16
Batteries & Supercaps11
📊 직전 대비 (2025-W14~W26 → 2025-W27~W39)
전체: 504편(13주) → 467편(13주)
섹션 증감
음극+4
양극+2
고체전해질-15
액체전해질-7
기타-21
음극 128
132
양극 67
69
고체전해질 147
132
액체전해질 71
64
기타 91
70
섹션 점유율(이번)
음극 28%양극 15%고체전해질 28%액체전해질 14%기타 15%
IF tier 증감
⭐⭐⭐-4
⭐⭐+12
⭐-13
(IF<10/미상)-32
IF tier 믹스(이번)
⭐⭐⭐ 2%⭐⭐ 9%⭐ 35%(IF<10/미상) 54%
📈 추이
🔑 키워드 추이
뜨는
식는
⭐ 주목 논문 (IF≥20)
- Electron-funnel mediated anion confinement enables ultra-reversible interphases in solid-state batteries — eScience ⭐⭐⭐ · [음극] 🔗
- Grain boundary hinge structure design for upcycling of cathode materials from spent lithium-ion batteries — eScience ⭐⭐⭐ · [양극] 🔗
- BaTiO3 Nanoparticle-Induced Interfacial Electric Field Optimization in Chloride Solid Electrolytes for 4.8 V All-Solid-State Lithium Batteries — Nano-Micro Letters ⭐⭐⭐ · [고체전해질] 🔗
- A solid electrolyte with active stability — Nature Materials ⭐⭐⭐ · [고체전해질] 🔗
- Alleviating kinetical delamination induced by localized cathode contact via electrochemo-mechanical modeling in all-solid-state batteries — Joule ⭐⭐⭐ · [고체전해질] 🔗
- All-solid-state batteries stabilized with electro-mechano-mediated phosphorus anodes — Energy & Environmental Science ⭐⭐⭐ · [기타] 🔗
- Crack pinning enables stable cycling of micro-sized silicon anodes for wide-temperature lithium-ion batteries — Energy & Environmental Science ⭐⭐⭐ · [음극] 🔗
- Oxygen-tuned aluminum-based halide solid electrolytes enabling low-voltage anode compatibility in all-solid-state batteries — Energy & Environmental Science ⭐⭐⭐ · [고체전해질] 🔗
- Interfacial reactions take the lead: elucidating the dominant role of cathode–electrolyte interactions in triggering thermal runaway of high-nickel lithium-ion batteries — Energy & Environmental Science ⭐⭐⭐ · [액체전해질] 🔗
- Longitudinal spatial charge transfer optimization in composite cathodes enables ultra-stable all-solid-state batteries — Energy & Environmental Science ⭐⭐⭐ · [기타] 🔗
- Fluoroether Design Enables High‐Voltage All‐Solid‐State Lithium Metal Batteries — Advanced Materials ⭐⭐ · [고체전해질] 🔗
- Adaptive Stress Response in 2D Graphene@Se Composite toward Ultra‐Stable All‐Solid‐State Lithium‐Selenium Batteries — Advanced Materials ⭐⭐ · [기타] 🔗
- Sandwich‐Model Cathode Electrolyte Interphase Facilitating All‐Climate High‐Voltage Nickel‐Rich Cathode‐Based Lithium Metal Batteries with LiBF₄‐Based Electrolyte — Advanced Materials ⭐⭐ · [액체전해질] 🔗
- Rational Design of High‐Entropy Garnet Electrolytes via Computational Screening for Stable Lithium Interfaces in All‐Solid‐State Batteries — Advanced Materials ⭐⭐ · [고체전해질] 🔗
- The Synergy Between In Situ Gradient Polymerization and Phase Separation Enables Practical Solid‐State Ni‐Rich Lithium‐Ion Batteries — Advanced Materials ⭐⭐ · [양극] 🔗
🗺️ 토픽 지도
음극 (132편)
음극이 28%로 성장(128→132편). Si 계면 제어가 초장수명 구현을 주도하는데, Li cycling 11,000시간(Electron-funnel UiO-66-NO2)과 광온도 안정성(−20~70°C, H-SEI 구조)이 하위토픽의 핵심이다.
하위토픽 11개
- 0.1 A g-1에서 0.4PSi@MFC/rGO-0.009는 · 33편 · Melamine-formaldehyde resin-derived carbon and graphene synergistically coated porous silicon for high-performance lithium-ion battery anodes — Electrochimica Acta 🔗 / Constructing carbon layer on SiO anode via interface engineering for high-performance lithium-ion batteries — Materials Research Bulletin 🔗
- Si@rGO@PNC/C는 100 mA g−1에서 · 17편 · An enhanced double carbon layer-coated silicon-based anode for lithium-ion batteries — Dalton Transactions 🔗 / Amorphous carbon-coated Si/WO3 heterostructure as a long-cycle lithium-lon battery anode material — Journal of Power Sources 🔗
- Liquid-electrolyte LIBs에서 150 nm · 14편 · Recent Progress in Silicon‐Based Anodes for High‐Energy Lithium‐Ion Batteries: From the Perspective of “Size Effects” — Carbon Energy ⭐⭐ 🔗 / Effect of Concentration of Lithium Bis(fluorosulfonyl)imide on the Performance of Silicon Anodes for Li‐Ion Batteries — Electrochemical Science Advances 🔗
- 0.01–0.52 V에서 cycling한 micron-Si는 · 13편 · Towards High‐Performance Lithium‐Ion Batteries via Voltage Modulation of Silicon Anodes — Carbon Neutralization 🔗 / Pre‐Fluorination Interface Engineering of Silicon‐Based Anode for Durable Lithium‐Ion Batteries — Small ⭐ 🔗
- Si 사전리튬화 계면 · 10편 · Ultrathin Lithium Foil Prelithiated Silicon Carbon Anode with the Formation of Li₂₂Si₅Alloy Phase Enables High‐Energy‐Density Pouch Cells Lifespan over 900 Cycles — Advanced Functional Materials ⭐ 🔗 / A salt-free medium facilitating electrode prelithiation towards fast-charging and high-energy lithium-ion batteries — Nature Communications ⭐ 🔗
- Li–In│LZC│Li–In은 1000 cycles 작동했으며, · 10편 · Interfacial Stabilization Mechanism of Zirconium‐Based Halide and Li–In Alloy Anode in All‐Solid‐State Lithium Batteries — Advanced Energy Materials ⭐⭐ 🔗 / Synergistic Regulation of Zn and F in Li₆PS₅Cl for Enhancing Interface Stability and Suppressing Lithium Dendrites in All-Solid-State Lithium Batteries — ACS Applied Energy Materials 🔗
- 토픽 6 · 9편 · Carbon encapsulation of silicon via lignosulfonate/chitosan electrostatic assembly and glucose-coating for enhanced lithium-ion battery anodes — Wood Science and Technology 🔗 / Electrochemical characteristics of layered carbon-coated silicon anode composites embedded with Si@C for Li-ion batteries — Carbon letters 🔗
- 기준 1:3:3 LiFSI:TMS:TTE 전해질은 · 7편 · Surprising Relationship between Silicon Anode Calendar Aging and Electrolyte Components in a Localized High-Concentration Electrolyte System — ACS Applied Materials & Interfaces 🔗 / A Review on Mechanical, Electrical, Chemical, and Electrochemical Properties of Coating Materials for Silicon Anodes in Lithium‐Ion Batteries — Small ⭐ 🔗
- SiO 탄소 복합 도전성 · 7편 · Hollow biochar fiber enhanced conductive network with self-adaptive stress dispersion for highly robust silicon-based anodes — Journal of Power Sources 🔗 / Interfacial regulation for constructing a robust grapevine-like conductive network within a silicon-based anode for high-performance lithium-ion batteries — Inorganic Chemistry Frontiers 🔗
- 토픽 9 · 6편 · Optimized plasma-synthesized silicon anodes for high-performance lithium-ion batteries — Journal of Materials Science 🔗 / Advances in Metal and Metal Oxide Modified Silicon Anodes for Lithium-Ion Batteries: A Review — Russian Journal of Physical Chemistry A 🔗
- 볼 밀링으로 ID/IG가 SNG의 · 4편 · Surface-Modified Graphite Anodes for High-Rate Long-Cycling in Sulfide All-Solid-State Batteries — ACS Nano ⭐ 🔗 / 3D-printed honeycomb lithium-silicon alloy anodes for stabilized interface in sulfide all-solid-state batteries — eTransportation 🔗
고체전해질 (132편)
고체전해질이 132편으로 유지되며 황화물·할라이드 다원화를 지속한다. 클로라이드 계통의 가역 lithiation(Li3YCl3Br3, 1000 cycles 70% retention)과 고전압 작동(Li1.2TaO1.2Cl3.8)이 두드러진다.
하위토픽 10개
- 황화물 고체전해질 · 31편 · Designing High‐Ionic‐Conductivity and Air‐Stable Composite Sulfide Electrolytes via Polymer‐in‐Salt Binder with Surface Engineering for All‐Solid‐State Lithium Batteries — Small ⭐ 🔗 / Unlocking Cycling Stability in All‐Solid‐State Li Metal Batteries via Crystalline/Amorphous Ratio Engineering of Argyrodite Electrolytes — Small ⭐ 🔗
- Li1.2TaO1.2Cl3.8의 ionic conductivity는 30 · 23편 · New Oxyhalide Solid Electrolytes with Enhanced Conductivity for All-Solid-State Batteries — The Journal of Physical Chemistry Letters 🔗 / Amorphous Nitride‐chloride Solid‐State Electrolytes for High Performance All‐Solid‐State Lithium Batteries — Angewandte Chemie International Edition ⭐ 🔗
- 할라이드 고체전해질 · 18편 · Synthesis and interfacial engineering of nitride–halide electrolytes in all-solid-state Li batteries — EES batteries. 🔗 / Lithium‐Deficient Halide Solid‐State Electrolytes with Enhanced Electrochemical Performance for All‐Solid‐State Batteries — Advanced Functional Materials ⭐ 🔗
- 2.8–4.6 V, 0.1 C에서 · 15편 · Constructing Uniform Ionic Conductor Coatings on LiCoO₂Cathode to Realize 4.6 V High‐Voltage All‐Solid‐State Lithium Batteries — Interdisciplinary materials 🔗 / Achieving 766.5 Wh kg–¹Electrode-Level Energy Density via Solid-State Cathode Integrating Ultrahigh Nickel Oxide and Lithium Iron Chloride — Nano Letters 🔗
- PSLB는 상온에서 2.5 mS · 14편 · Enhancement of room-temperature performance in solid-state batteries by succinonitrile-based composite solid electrolyte ion channels — Journal of Colloid and Interface Science 🔗 / A cross-linked AB-type alternating perfluoroalkyl-ethylene oxide polymer electrolyte for high-performance all-solid-state lithium-metal batteries — Energy storage materials ⭐ 🔗
- Li7P2.94In0.1S10.9375I0.125는 25 ℃에서 2 · 10편 · High ionic conductivity with improved battery stability of In3+/I- co-doped Li7P3S11 solid electrolytes — Journal of Alloys and Compounds 🔗 / Experimental and Theoretical Insights Into Synergistic Sn‐N Co‐Doping Enhancing Air Stability and Interfacial Compatibility of Li₅.₅PS₄.₅Cl₁.₅Electrolytes for All‐Solid‐State Lithium Metal Batteries — Small ⭐ 🔗
- 토픽 6 · 8편 · BaTiO3 Nanoparticle-Induced Interfacial Electric Field Optimization in Chloride Solid Electrolytes for 4.8 V All-Solid-State Lithium Batteries — Nano-Micro Letters ⭐⭐⭐ 🔗 / Alleviating kinetical delamination induced by localized cathode contact via electrochemo-mechanical modeling in all-solid-state batteries — Joule ⭐⭐⭐ 🔗
- Ca@SA/ZIF-8-PEO SPE는 28.37 MPa · 7편 · Metal-organic framework incorporated PEO-based flexible polymer electrolyte for advanced all-solid-state sodium-ion batteries — Journal of Material Science and Technology 🔗 / Additives Tailored Design for More Durable Polyethylene Oxide‐Based Solid Electrolytes: A Crucial Review — ChemSusChem 🔗
- Anion-mixed 7NaCB9H10-3NaCB11H12 전해질은 25 · 3편 · Hydridoborate‐Based Solid Electrolytes for All‐Solid‐State Batteries — Advanced Materials ⭐⭐ 🔗 / Unveiling Solid-State Electrochemical Oxidation of LiBH₄ and Li₂B₁₂H₁₂ for High-Voltage All-Solid-State Batteries — ACS Applied Energy Materials 🔗
- TM2+는 Er3+보다 Li+와 우선 · 3편 · Effect of ion exchange between the cathode and the solid electrolyte on the ion transport — Journal of Energy Storage ⭐ 🔗 / Unveiling the Role of Lithium Iodide in Stabilizing Solid Interfaces in All-Solid-State Li Metal Batteries — ACS Energy Letters ⭐ 🔗
기타 (70편)
기타가 15%로 축소(-21편). P/Sb 복합 음극(800 cycles 90% capacity)과 charge-transfer 최적화 양극(2000 cycles 82.7% retention)이 ASSLB 초장수명 경로를 주도한다.
하위토픽 7개
- PLPD는 초기 discharge/charge capacity · 20편 · Ion-conducting polymeric binder enhances lithium-ion mobility in sulfide-based solid-state lithium-ion battery: Synergistic effect of interfacial layer and in situ generated Li3N-LiF — Chemical Engineering Journal ⭐ 🔗 / Biodegradable Redox-Active Organic Radical Cathode Material for Lithium-Ion Batteries — ACS Applied Energy Materials 🔗
- CSE-NH2-SH는 60 °C에서 ionic · 13편 · Interface Design Based on Gradual Synergy Between Groups for All‐Solid‐State Lithium Metal Batteries — Advanced Functional Materials ⭐ 🔗 / Li₂ZnSb Interlayer for Interface Stabilization of Li Metal Anodes in All-Solid-State Batteries — ACS Energy Letters ⭐ 🔗
- 30 °C에서 FeSe-80%는 0.5, · 12편 · Decoding Multi‐Electron Redox Pathways in Carbon‐Free Iron Selenide Cathodes: Enabling Energy‐Dense All‐Solid‐State Lithium Batteries Across Extreme Temperatures — Advanced Materials ⭐⭐ 🔗 / Adaptive Stress Response in 2D Graphene@Se Composite toward Ultra‐Stable All‐Solid‐State Lithium‐Selenium Batteries — Advanced Materials ⭐⭐ 🔗
- NaMn0.9Ti0.1O2는 C/10에서 50 cycles · 8편 · Titanium Substitution to Advance the Prospect of NaMnO₂Cathodes for Practical Application in Sodium-Ion Batteries — ACS Applied Energy Materials 🔗 / Calcium‐Ion Insertion Chemistry in Tunneled α‐MnO₂Cathodes for Calcium Metal Batteries — Advanced Science ⭐ 🔗
- DET는 fabrication energy use를 · 8편 · Modeling the Lithium Ion Concentration in a Solid State Lithium Ion Battery During Discharge — Transactions of Indian National Academy of Engineering 🔗 / Recent Advances in the Failure Analysis of Solid-State Li Ion Batteries — Renewables 🔗
- ice-templated microchannel 전극은 35% · 6편 · Kinetic Mechanism and Structural Design of Thick Electrodes in Lithium‐Ion Batteries: Challenges and Optimization Strategies — Small ⭐ 🔗 / Longitudinal spatial charge transfer optimization in composite cathodes enables ultra-stable all-solid-state batteries — Energy & Environmental Science ⭐⭐⭐ 🔗
- 물 추출로 40 °C에서 · 3편 · Co-recycling of spent cathode and anode via redox-mediated lithiation — Green Chemistry 🔗 / Manipulation of manganese oxidation states for hydrothermal recycling of cathode materials from spent lithium-ion batteries — Electrochimica Acta 🔗
양극 (69편)
양극이 69편으로 소폭 증가(+2). 폐배터리 업사이클링(Ta/Sb/F hinge, 4.6V, 1000 pouch-cell cycles 88.62%)과 고에너지 밀도 설계(382 Wh kg⁻¹ NCM811||SiOx)가 실용화 방향을 대표한다.
하위토픽 8개
- 첫 NCM83/LIC cycle은 25°C, · 30편 · Electrochemical performance and interfacial stability in Ni-rich NCM/ halide solid state batteries — Next Materials 🔗 / Synergistic bulk-interface engineering stabilizes Ni-rich cathode for high-energy lithium-ion batteries — Journal of Power Sources 🔗
- 55 °C에서 LNO-LIC는 charge와 · 17편 · Realizing practical use of LiNiO2 cathode in halide-based all-solid-state lithium metal batteries — Chemical Engineering Journal ⭐ 🔗 / Anchoring Li₃PO₄ on Li₅FeO₄Surface as a Prelithiation Additive for Lithium-Ion Batteries — Langmuir 🔗
- 모사 노화 동안 전체 · 7편 · Electrochemical-acoustic coupling modeling and ultrasonic characterization of lithium iron phosphate batteries under cyclic aging — Journal of Energy Storage ⭐ 🔗 / Evolution, Collapse, and Recovery of Electronically Conductive Networks in Sulfide‐Based All‐Solid‐State Batteries Using Passivation‐Coated NMC and C65 — Batteries & Supercaps 🔗
- 등각 SPEESLi 코팅이 grain-boundary · 3편 · A Li-ion permeable poly(phenylene ether-ether-sulfone) interphase to address interfacial instability and structural degradation of Ni-rich NCM cathodes in poly(ethylene oxide)-based all-solid-state Li-ion batteries — Chemical Engineering Journal ⭐ 🔗 / In‐Situ Functional Crosslinking Enables Facile Construction of Rigid Poly(Ethylene Oxide) Network for High Performance All‐Solid‐State Batteries — Aggregate 🔗
- 4.4 V 및 1C/1C에서 · 3편 · An Additive with Carbonate‐Sulfate Hybrid Structure Enables High‐Voltage and Long‐Life Lithium‐Ion Batteries — Small ⭐ 🔗 / Effect of graphite on selective lithium recovery from NCM-lithium battery black mass via hydrogen reduction — Journal of Environmental Management 🔗
- 리튬 과잉 층상 양극 · 3편 · Synergistic modulation of ion transport and structural stability for Li-rich Mn-based cathodes in lithium-ion batteries — Journal of Energy Storage ⭐ 🔗 / Facilitate stable oxygen redox of lithium-rich layered oxide cathode in halide all-solid-state lithium-ion batteries — Electrochimica Acta 🔗
- 3.0–4.6 V에서 initial specific · 3편 · Grain boundary hinge structure design for upcycling of cathode materials from spent lithium-ion batteries — eScience ⭐⭐⭐ 🔗 / Revealing Redox Pathways and Structural Evolution in Cation-Disordered Li₂MnO₂F via Operando X-ray Absorption Spectroscopy — Chemistry of Materials 🔗
- 토픽 7 · 3편 · The impact of electrode design parameters on the thermal behavior of a lithium-ion battery — Journal of Thermal Engineering 🔗 / In-operando SEM Imaging of Li - ion Battery Structural Changes During Cycling — Microscopy and … 🔗
액체전해질 (64편)
액체전해질이 64편(-7)으로 소폭 감소. Ni-rich 양극의 열안정성 메커니즘(≥80% Ni 셀에서 cathode–electrolyte 반응 주도)과 극저온 작동(−60~60°C Li||NCM94, 544 Wh kg⁻¹)이 두드러진다.
하위토픽 6개
- 약 60 μm 두께의 · 23편 · Robust LiF/LiCl-rich SEI layer via composite electrolyte design enables long-cycling all-solid-state lithium metal batteries — Chemical Engineering Journal ⭐ 🔗 / Intermolecular Hydrogen Bonding Tailors Solvation Structures for Low‐Temperature and Long‐Cycling Lithium‐Ion Batteries — Advanced Functional Materials ⭐ 🔗
- SPE-NCM811은 0.2 C에서 193.5 · 12편 · Solid–Polymer–Electrolyte Interphase Inductively Formed by Surface Chemistry to Stabilize the High Ni Cathode in Sulfide‐Based All‐Solid‐State Lithium Batteries — Carbon Energy ⭐⭐ 🔗 / Molecular Design of Difluorinated Polyether Electrolyte for Ultrastable High‐Voltage All‐Solid‐State Lithium Metal Batteries — Advanced Science ⭐ 🔗
- 4.6 V 및 1C에서 · 11편 · Dual‐Anion Electrolyte Additives Regulating Solvation Structure Toward Stable High‐Voltage Lithium Metal Batteries with NCM90 Cathodes — ChemistryEurope 🔗 / Enhancing Compatibility of Halide with Sulfide‐Electrolytes via High Oxygen Incorporation for Robust Solid‐State Batteries — Advanced Functional Materials ⭐ 🔗
- 전해질 로딩을 4.5에서 1.5 · 8편 · Lean electrolytes enhancing intrinsic safety of energy-dense nickel-rich lithium-ion batteries — Journal of Energy Storage ⭐ 🔗 / EC‐Less Electrolytes for High‐Safety and Long‐Life Nickel‐Rich Lithium‐Ion Batteries — Advanced Functional Materials ⭐ 🔗
- 토픽 4 · 5편 · Unveiling cathode catalysis of fluorinated electrolyte additives for high-performance Na-Cl2 batteries — National Science Review 🔗 / Recent progress in host and electrolyte engineering towards Li₂S cathode for lithium-sulfur battery — Nano Research Energy 🔗
- 세라믹-고분자 복합 전해질 · 3편 · Low‐LUMO Orotic Acid Enables Li₃N‐Embeded Solid Electrolyte Interphase for Stable All‐Solid‐State Lithium Metal Batteries — Small ⭐ 🔗 / Defect-Rich g-C₃N₄Nanosheets Catalyze PEO-Based Electrolytes to Create Fluorine-Rich Interfaces for High-Rate All-Solid-State Lithium-Metal Batteries — Nano Letters 🔗
🔀 횡단 주제
나트륨 이온 전지 — 8편 (고체전해질2·기타2·음극2·액체전해질1·양극1)
열안전 가스방출 분석 — 5편 (고체전해질2·액체전해질2·양극1)
🌱 시드 후보 (미등록 주요 잔여 클러스터)
- [음극] 0.1 A g-1에서 0.4PSi@MFC/rGO-0.009는 · 33편 · 고성능 lithium-ion battery anode용 melamine-formaldehyde resin 유래 carbon과 graphene의 시너지 코팅 porous silicon / 고성능 lithium-ion batteries를 위한 interface engineering 기반 SiO anode 표면 carbon layer 구축
- [양극] 첫 NCM83/LIC cycle은 25°C, · 30편 · Ni-rich NCM/halide 전고체 배터리의 전기화학 성능 및 계면 안정성 / 시너지형 벌크-계면 엔지니어링을 통한 고에너지 리튬이온전지용 Ni-rich cathode 안정화
- [고체전해질] Li1.2TaO1.2Cl3.8의 ionic conductivity는 30 · 23편 · 전고체 배터리를 위한 전도성이 향상된 새로운 Oxyhalide 고체 전해질 / 고성능 전고체 Lithium 배터리를 위한 비정질 Nitride–chloride 고체전해질
반복 등장하는 주제는 lab/data/trend_seeds.yaml 에 시드로 승격하세요.