분기 논문 동향 — 2024-W40~W52
이번 분기 핵심 변화
- 총 462→500편 (+8%)
- ↑ 고체전해질 27%→33% (+6%p)
- ↓ 음극 25%→21% (-4%p)
- IF tier: ⭐⭐⭐ 4%→2%, ⭐⭐ 5%→7%
⚠️ 이 리포트는 내 Google Scholar 피드 슬라이스에 대한 분석이며, 해당 분야 문헌 전체를 대표하지 않습니다.
한눈에
논문 500편
토픽(tag) 분포
ASSB224
Cathode167
Si-LIB83
셀 화학
전고체(ASSB)213
LIB213
리튬금속16
나트륨이온19
기타 화학22
리튬-황17
IF tier(star) 분포
⭐⭐⭐9
⭐⭐37
⭐165
(IF<10/미상)289
주요 venue
ACS Applied Materials & Interfaces25
Advanced Functional Materials25
Advanced Energy Materials25
Chemical Engineering Journal23
Journal of Power Sources21
ACS Energy Letters19
Journal of The Electrochemical Society17
Energy storage materials17
ACS Applied Energy Materials13
Journal of Materials Chemistry A13
📊 직전 대비 (2024-W27~W39 → 2024-W40~W52)
전체: 462편(13주) → 500편(13주)
섹션 증감
음극-9
양극+2
고체전해질+37
액체전해질+12
기타-4
음극 116
107
양극 63
65
고체전해질 127
164
액체전해질 71
83
기타 85
81
섹션 점유율(이번)
음극 21%양극 13%고체전해질 33%액체전해질 17%기타 16%
IF tier 증감
⭐⭐⭐-10
⭐⭐+14
⭐+40
(IF<10/미상)-6
IF tier 믹스(이번)
⭐⭐⭐ 2%⭐⭐ 7%⭐ 33%(IF<10/미상) 58%
📈 추이
🔑 키워드 추이
뜨는
식는
신규
⭐ 주목 논문 (IF≥20)
- Assessing cathode–electrolyte interphases in batteries — Nature Energy ⭐⭐⭐ · [액체전해질] 🔗
- Techno-economic assessment of thin lithium metal anodes for solid-state batteries — Nature Energy ⭐⭐⭐ · [음극] 🔗
- Tailoring Cathode–Electrolyte Interface for High-Power and Stable Lithium–Sulfur Batteries — Nano-Micro Letters ⭐⭐⭐ · [액체전해질] 🔗
- Superionic conducting vacancy-rich β-Li3N electrolyte for stable cycling of all-solid-state lithium metal batteries — Nature Nanotechnology ⭐⭐⭐ · [액체전해질] 🔗
- Vacancy-rich β-Li3N solid-state electrolyte — Nature Nanotechnology ⭐⭐⭐ · [고체전해질] 🔗
- Deep ion mass transfer addressing the capacity shrink challenge of aqueous Zn‖MnO ₂ batteries during the cathode scaleup — Energy & Environmental Science ⭐⭐⭐ · [기타] 🔗
- Removal of residual contaminants by minute-level washing facilitates the direct regeneration of spent cathodes from retired EV Li-ion batteries — Energy & Environmental Science ⭐⭐⭐ · [기타] 🔗
- A facile route to plastic inorganic electrolytes for all-solid state batteries based on molecular design — Energy & Environmental Science ⭐⭐⭐ · [고체전해질] 🔗
- Heterostructure conductive interface and melt-penetration-bonding process to afford all-solid-state Li–FeF ₃ garnet batteries with high cathode loading — Energy & Environmental Science ⭐⭐⭐ · [고체전해질] 🔗
- Dual‐Seed Strategy for High‐Performance Anode‐Less All‐Solid‐State Batteries — Advanced Materials ⭐⭐ · [기타] 🔗
- Enhancing Long Stability of Solid‐State Batteries Through High‐Energy Ball Milling‐Induced Decomposition of Sulfide‐Based Electrolyte to Sulfur — Advanced Materials ⭐⭐ · [액체전해질] 🔗
- Reversible Configurations of 3‐Coordinate and 4‐Coordinate Boron Stabilize Ultrahigh‐Ni Cathodes with Superior Cycling Stability for Practical Li‐Ion Batteries — Advanced Materials ⭐⭐ · [양극] 🔗
- Defect Chemistry in High‐Voltage Cathode Materials for Lithium‐Ion Batteries — Advanced Materials ⭐⭐ · [기타] 🔗
- Oxychloride Polyanion Clustered Solid‐State Electrolytes via Hydrate‐Assisted Synthesis for All‐Solid‐State Batteries — Advanced Materials ⭐⭐ · [고체전해질] 🔗
- Engineering Triple‐Phase Interfaces with Hierarchical Carbon Nanocages for High‐Areal‐Capacity All‐Solid‐State Li‐S Batteries — Advanced Materials ⭐⭐ · [고체전해질] 🔗
🗺️ 토픽 지도
고체전해질 (164편)
27%→33% 증가(+37편). 황화물 고체전해질(52편)과 고분자 기반 이온전해질(23편)이 주축이며, β-Li3N은 2.14 mS cm⁻¹ 전도도로 5,000 cycles, LAOC 올리고머는 1.3 mS cm−1 전도도로 400 cycles 초과 안정성을 구현했다. 리튬메탈 계면 안정화 및 고속방전 특성 연구 확대가 두드러진다.
하위토픽 13개
- 황화물 고체전해질 · 52편 · Optimization and large-scale synthesis of halogen-rich Li-argyrodite through wet chemical process for all-solid-state batteries — Journal of Power Sources 🔗 / Unveiling the power of sulfide solid electrolytes for next-generation all-solid-state lithium batteries — Next Materials 🔗
- 고분자침투 이온전해질 · 23편 · Construction of an ultrathin multi-functional polymer electrolyte for safe and stable all-solid-state batteries — Materials Horizons ⭐ 🔗 / Composite Solid‐State Electrolyte with Vertical Ion Transport Channels for All‐Solid‐State Lithium Metal Batteries — Small ⭐ 🔗
- 마그네슘불화물 리튬보호 · 14편 · In situ Triggered Rich‐LiF/Mg Multifunctional Passivation Layer for Modifying the Anode Interface of All‐Solid‐State Lithium Metal Batteries — Advanced Functional Materials ⭐ 🔗 / Reducing Surface Roughness to Achieve Li₂CO ₃ ‐Existent Lithiophilic Interface in Garnet‐Type Solid‐State Batteries — Advanced Functional Materials ⭐ 🔗
- 폴리에테르블록 이온전해질 · 13편 · Tailored PEO/PEG-PPG Polymer Electrolyte for Solid-State Lithium-Ion Battery — Journal of The Electrochemical Society 🔗 / Hollow porous polyhedral Co3O4 as functional fillers for all-solid-state PEO-based lithium metal batteries — Sustainable materials and technologies 🔗
- 황화물기반 황음극양극 · 11편 · Progress and Prospects of Inorganic Solid‐State Electrolyte‐Based All‐Solid‐State Li–S Batteries — Advanced Sustainable Systems 🔗 / Role of Electronic Conductivities Toward Practical All‐Solid‐State Lithium‐Metal/Sulfur Batteries — Advanced Sustainable Systems 🔗
- 3D겔고분자 교차결합전해질 · 10편 · Advanced Polymer Electrolytes in Solid-State Batteries — Batteries 🔗 / Commercial Cellulosic Paper-Based Solid Electrolyte for High-Temperature Lithium–Sulfur Batteries — ACS Applied Materials & Interfaces 🔗
- 리튬메탈 초장시간안정화 · 9편 · A Universal Design of Lithium Anode via Dynamic Stability Strategy for Practical All‐Solid‐State Batteries — Angewandte Chemie ⭐ 🔗 / The Impact of Lithium Anode Interface on Capacity Fade in Polymer Electrolyte-Based Solid-State Batteries — ACS Applied Energy Materials 🔗
- 희토류도핑 나트륨이온전해질 · 7편 · Regulating the Interfacial Performance of All-Solid-State Sodium Batteries Using Lanthanum Substitution in a Na₃Zr₂Si₂PO₁₂Solid Electrolyte — ACS Applied Energy Materials 🔗 / Improving the Electrochemical Performance of Garnet-Type Electrolytes through Ion Doping and Surface Treatment — Energy & Fuels 🔗
- 니오브산화물도핑 습도안정 · 6편 · Enhanced air stability and interface compatibility in Nb-O-doped Cl-rich Li-argyrodites for all-solid-state Li metal batteries — Electrochimica Acta 🔗 / Vacancy-rich β-Li3N solid-state electrolyte — Nature Nanotechnology ⭐⭐⭐ 🔗
- 고체전해질 Li⁺ 전도도 · 6편 · Electrochemically stable and ultrathin polymer-based solid electrolytes for dendrite-free all-solid-state lithium-metal batteries — Materials Futures 🔗 / Interface engineering enabling thin lithium metal electrodes down to 0.78 μm for garnet-type solid-state batteries — Nature Communications ⭐ 🔗
- 할라이드 고체전해질 · 5편 · Exploring the Potential of Halide Electrolytes for Next‐Generation All‐Solid‐State Lithium Batteries — Advanced Functional Materials ⭐ 🔗 / A cost-effective Ca-doped Li₂ZrCl ₆ halide solid electrolyte for all-solid-state lithium batteries — Chemical Communications 🔗
- 산화지르코늄코팅 고속방전 · 5편 · Stabilization of single crystal LiNi0.90Mn0.05Co0.05O2 via ZrO2 dual-functional coating enables superior performance for solid-state lithium battery — Chemical Engineering Journal ⭐ 🔗 / Integrating Prelithiation and Interface Protection to Achieve High‐Energy All‐Solid‐State Batteries — Angewandte Chemie International Edition ⭐ 🔗
- 토픽 12 · 3편 · Gel-Polymer Electrolyte-Based High-Performance Zn-Ion Batteries with Vanadium-Oxide Cathode Material — Electrocatalysis 🔗 / Nonflammable PVDF-based gel polymer electrolytes modified by dimethyl methylphosphate for wide temperature range, long cycle-life and high-safety lithium metal batteries — Science China Materials 🔗
음극 (107편)
25%→21% 감소(-9편). 규소음극 부피팽창 억제(29편)가 여전히 중심축이며, thermal evaporation 기반 초박형 리튬메탈은 500 Wh kg−1, 1,000 Wh l−1 초과의 전고체 배터리 에너지밀도 목표를 지향한다. 음극 기술 체계의 전고체 아키텍처 전환 추진 신호로 해석된다.
하위토픽 12개
- 규소음극 부피팽창 억제 · 29편 · Enabling the Transport Dynamics and Interfacial Stability of Porous Si Anode Via Rigid and Flexible Carbon Encapsulation for High‐Energy Lithium Storage — Small ⭐ 🔗 / High loading Si-based electrodes reinforced by in-situ polymerization for high-energy lithium-ion batteries — Journal of Power Sources 🔗
- 도전성폴리머 규소음극 · 19편 · Volumetric Stress Managements on Silicon Anode of Lithium‐Ion Batteries by a Self‐Adaptable Binder — Energy & environment materials 🔗 / Synergistic structural integrity and remarkable structural stability of NC@Si anodes for lithium-ion batteries — Materials Research Bulletin 🔗
- 토픽 2 · 13편 · Design of Silicon-Based Anode Materials for High Energy Density Li-Ion Batteries — Highlights in Science Engineering and Technology 🔗 / The Development of Nano Si Materials in the Application of Lithium-Ion Batteries Anode — Highlights in Science Engineering and Technology 🔗
- 피치코팅 규소복합음극 · 10편 · Pitch-derived C coated three-dimensional CNTs/reduced graphene oxide microsphere encapsulating Si nanoparticles as anodes for lithium-ion batteries — Electrochimica Acta 🔗 / Investigating the Reduction of Fluoroethylene Carbonate and Vinylene Carbonate in Lithium‐Ion Cells with Silicon‐Graphite Anodes — Batteries & Supercaps 🔗
- 바이오매스유래 규소탄소음극 · 7편 · Design and Functionalization of Lignocellulose‐Derived Silicon‐Carbon Composites for Rechargeable Batteries — Advanced Energy Materials ⭐⭐ 🔗 / Developing bio‐carbon matrices for the encapsulation of silicon nanoparticles for high‐performance lithium‐ion battery anode materials — Chemistry - A European Journal 🔗
- 고체전해질 규소음극계면 · 5편 · Decoupling the Effects of Interface Chemical Degradation and Mechanical Cracking in Solid‐State Batteries with Silicon Electrode — Advanced Materials ⭐⭐ 🔗 / Stack Pressure Enhanced Size Threshold of Si Anode Fracture in All‐Solid‐State Batteries — Advanced Functional Materials ⭐ 🔗
- 리튬마그네슘 결정면제어 · 5편 · Single‐Crystalline LiMg Alloy Anode for Deep Cycling All Solid State Lithium Metal Batteries — Advanced Functional Materials ⭐ 🔗 / Evaluating Pressure‐dependent Discharge Behavior of Foil Versus In situ Plated Lithium Metal Anodes in Solid‐State Batteries — Advanced Energy Materials ⭐⭐ 🔗
- Si 나노입자 임계크기 · 4편 · Double Carbon‐Species Coated Porous Silicon Anode Induced by Interfacial Energy Reduction for Lithium‐Ion Batteries — ChemSusChem 🔗 / Porous silicon/carbon composites fabricated via microwave-assisted carbothermal shock for lithium-ion batteries — Journal of Energy Storage ⭐ 🔗
- SiO 탄소 복합 도전성 · 4편 · Supramolecular-driven construction of multilayered structure by modified hummers method for robust silicon anode — Energy storage materials ⭐ 🔗 / Hierarchical Porous Structured Si/C Anode Material for Lithium‐Ion Batteries by Dual Encapsulating Layers for Enhanced Lithium‐Ion and Electron Transports Rates — Small ⭐ 🔗
- 토픽 9 · 4편 · Porous silicon/carbon composites as anodes for high-performance lithium-ion batteries — Carbon ⭐ 🔗 / Preparation of hard carbon–coated and metal-modified silicon anode materials for lithium-ion batteries — Ionics 🔗
- 하이브리드 음극 계면 · 3편 · Enhancing Lithium-Ion Batteries with a 3D Conductive Network Silicon–Carbon Nanotube Composite Anode — ACS Applied Materials & Interfaces 🔗 / High‐Performance Yolk‐Shell Structured Silicon‐Carbon Composite Anode Preparation via One‐Step Gas‐Phase Deposition and Etching Technique — Advanced Functional Materials ⭐ 🔗
- Si 음극 바인더 점착력 · 3편 · Durable and Damageless Supramolecular Binder for Fast, Stable, and Sustainable Si-Based Anodes — Journal of the American Chemical Society ⭐ 🔗 / A 3D flexible conductive network skeleton by SWCNT-COOH and PVA-PAA enabling high performance for Si anode — Chemical Engineering Journal ⭐ 🔗
액체전해질 (83편)
83편 유지. 나노섬유 나트륨이온 전해질(31편)과 불화붕소 첨가 균일 SEI(19편)가 주요 하위토픽이며, cathode-electrolyte interphase 특성화 framework와 Li-S 배터리 계면 최적화가 병행된다. 계면 안정성 기반 고에너지밀도 달성 추진이 유지 중이다.
하위토픽 7개
- 나노섬유 나트륨이온전해질 · 31편 · Nanofibers endow NASICON-type Na3.3La0.3Zr1.7Si2PO12 electrolyte/Na4MnCr(PO4)3 cathode excellent electrochemical properties — Chemical Engineering Journal ⭐ 🔗 / Gradual release fluorine from additive to construct a stable LiF-rich cathode electrolyte interphase for high-voltage all-solid-state lithium batteries — Chemical Engineering Journal ⭐ 🔗
- 불화붕소첨가 균일세이층 · 19편 · Enhancing High‐Voltage LNMO Cathode Performance in Li‐Metal Batteries Via Anionic Electrolyte Additive‐Integrated CEI Engineering — Advanced Functional Materials ⭐ 🔗 / Enhanced Cycle Stability of LiNiO₂ in a Highly Concentrated Ionic Liquid Electrolyte — ACS Applied Materials & Interfaces 🔗
- 결정성LiF복합SEI구조 · 12편 · In Situ Formation of Stable Dual-Layer Solid Electrolyte Interphase for Enhanced Stability and Cycle Life in All-Solid-State Lithium Metal Batteries — Nano Letters 🔗 / Electrolyte Additive Therapy Realizes Simultaneous Ni and Mn Redox for Spinel LiNi₀.₅Mn₁.₅O₄Cathode at 2.3–4.95 V — Advanced Functional Materials ⭐ 🔗
- 고전압망간억제 첨가제조합 · 7편 · Impact of Electrolyte Additives on the Lifetime of High Voltage NMC Lithium-Ion Pouch Cells — Journal of The Electrochemical Society 🔗 / Molecular-level designed single electrolyte additive with multifunctional groups enabling high mechanical properties/fast Li+ kinetics interphase for wide-temperature nickel-rich/graphite batteries — Chemical Engineering Journal ⭐ 🔗
- 쌍이온 나트륨배터리전해질 · 5편 · Design considerations for sodium dual ion batteries: Insights into electrolyte, anode, and cathode materials — Journal of Energy Storage ⭐ 🔗 / Revealing the electrolyte suitability optimization and failure mechanism of sodium-ion pouch cells with Na3.5V1.5Mn0.5(PO4)3 polyanionic cathode — Energy storage materials ⭐ 🔗
- 황화리튬석출제어 계면화학 · 4편 · Insight into the Impact of Electrolyte on Passivation of Lithium–Sulfur Cathodes — Advanced Materials Interfaces 🔗 / Electrolyte‐free cathode design for solid‐state batteries demonstrated with bifunctional Li₂VCl₄ — Batteries & Supercaps 🔗
- 토픽 6 · 4편 · Tailoring Cathode–Electrolyte Interface for High-Power and Stable Lithium–Sulfur Batteries — Nano-Micro Letters ⭐⭐⭐ 🔗 / Research progress on cathode electrolyte interphase in high-voltage lithium batteries — Acta Physico-Chimica Sinica 🔗
기타 (81편)
81편 유지. 아쿠아징크 산화바나듐(20편)과 인듐리튬합금(14편) 등 비전통 시스템이 분산되며, interstitial-carbon MnO2는 10 mg cm−2에서 176.4 mAh g−1, 분 단위 세척 재생 NCM은 200 cycles 후 82.1% 용량 유지를 달성했다. 대체 화학계의 고에너지밀도·장수명 양측 개선이 진행 중이다.
하위토픽 8개
- 아쿠아징크 산화바나듐배터리 · 20편 · Innovative 2D dioxonium vanadium oxide: enhancing stability in aqueous zinc-ion battery cathodes — RSC Advances 🔗 / High-Areal-Capacity All-Solid-State Lithium Batteries Enabled by Electronically Conductive Li-Deficient LiNiO₂Cathode — ACS Energy Letters ⭐ 🔗
- 인듐리튬합금 고밀도음극 · 14편 · In–Li Counter Electrodes in Solid‐State Batteries – A Comparative Approach on Kinetics, Microstructure, and Chemomechanics — Advanced Energy Materials ⭐⭐ 🔗 / A Quasi-Solid-State Polymer Lithium–Metal Battery with Minimal Excess Lithium, Ultrathin Separator, and High-Mass Loading NMC811 Cathode — ACS Applied Energy Materials 🔗
- 나이온계면막 표면개질 · 14편 · Robust interface for O3-type layered cathode towards stable ether-based sodium-ion full batteries — Energy storage materials ⭐ 🔗 / Tailoring Binder Molecular Weight to Enhance Slurry‐Cast NMC Cathodes for Sulfide Solid‐State Batteries — Energy & environment materials 🔗
- 스칸듐도핑 니리치양극 · 10편 · Synergistic surface restructuring and cation mixing via ultrafast Joule heating enhancing ultrahigh-nickel cathodes for advanced lithium-ion batteries — Journal of Energy Chemistry ⭐ 🔗 / Effect of crystal morphology of nickel-rich cathode materials on electrochemical stability and ion transport kinetics of sulfide-based all-solid-state batteries — Chinese Chemical Letters 🔗
- 인오화황 황화물강화음극 · 7편 · In Situ Welding Ionic Conductive Breakpoints for Highly Reversible All-Solid-State Lithium–Sulfur Batteries — Journal of the American Chemical Society ⭐ 🔗 / Magnesium Fluoride Interlayers Enabled by Wet‐Chemical Process for High‐Performance Solid‐State Batteries — Advanced Functional Materials ⭐ 🔗
- 불소화망간산화물 산소손실억제 · 6편 · Factors affecting capacity and voltage fading in disordered rocksalt cathodes for lithium-ion batteries — Matter ⭐ 🔗 / MnO₂@Fe₂O₃Cathode for Aqueous Zinc/Manganese Batteries: Enhanced Discharge Capacity and Stability through Forming FeMnO₃ — Journal of The Electrochemical Society 🔗
- 토픽 6 · 6편 · Cathode Electrode Active Material Properties Evaluation for Lithium-Ion Batteries — International Journal of Recent Engineering Science 🔗 / Cathode Recycling of Spent Sodium Ion Batteries — Energy Material Advances ⭐ 🔗
- 토픽 7 · 4편 · (Invited) High-Performance Sodium-Ion Battery Using Copper Sulfide Anode and Nasicon-Type Cathode — ECS Meeting Abstracts 🔗 / Electrochemical performance of Li-ion battery-based porous silicon nanowires (PSiNWs) decorated with silver nanoparticles — International Journal of Green Energy 🔗
양극 (65편)
65편(+2편) 유지. 수증기처리 NCM(18편)과 텅스텐산염코팅(12편)이 주요 개선 경로이며, 가역적 붕소 도핑과 Li2SiO3 코팅으로 초고니켈 양극에서 924 Wh kg⁻¹ cathode 에너지밀도와 500 cycles 후 84.2% 용량 유지를 달성했다. 계면 안정화 기반 고성능 양극 설계 중심이 지속된다.
하위토픽 6개
- 수증기처리 NCM양극 · 18편 · Synergistic doping chemistry enable the cycling properties of single-crystal Ni-rich cathode for lithium-ion batteries — Applied Surface Science 🔗 / Surface engineering with bifunctional layer in LiNi0.5Co0.2Mn0.3O2 for high-performance cathode materials of lithium-ion batteries — Journal of Alloys and Compounds 🔗
- 텅스텐산염코팅 고용량양극 · 12편 · Bulk/Interfacial Structure Design of Li-Rich Mn-Based Cathodes for All-Solid-State Lithium Batteries — Journal of the American Chemical Society ⭐ 🔗 / Anomalous stable 4.6 V LiCoO2 in all-solid-state lithium batteries — Nano Energy ⭐ 🔗
- 습식처리 니리치양극재합성 · 11편 · Proton-exchange induced reactivity in layered oxides for lithium-ion batteries — Nature Communications ⭐ 🔗 / Deciphering the Interfacial Li-Ion Migration Kinetics of Ni-Rich Cathodes in Sulfide-Based All-Solid-State Batteries — ACS Applied Materials & Interfaces 🔗
- 리튬 과잉 층상 양극 · 10편 · Surface Reconstruction Enhanced Li‐Rich Cathode Materials for Durable Lithium‐Ion Batteries — Small Methods 🔗 / Tailoring redox couples of Li-rich Mn-based cathode materials by in-situ surface reconstruction for high-performance lithium-ion batteries — Nano Energy ⭐ 🔗
- 기계강화 코팅양극 · 7편 · Mini-Review: The Influence of Coating and Doping on The Crystal Volume and Discharge Capacity of Lithium Iron Phosphate-Based Materials as Battery Cathode — Jurnal Kumparan Fisika 🔗 / Facile Ball-Milling Synthesis of Pseudo-Single-Crystalline Nickel-Rich Layered Oxide Cathodes Towards Long-Lifespan Lithium-Ion Batteries — Journal of Electronic Materials 🔗
- 저온열화 리튬석출메커니즘 · 6편 · Effects of Main Aging Mechanism and State of Charge on the Safety of 21700 Li-Ion Battery Cells with Ni-Rich NMC Cathode — Journal of The Electrochemical Society 🔗 / Revisiting the overdischarge process as a novel accelerated aging method for LiFePO4/Graphite batteries through the unveiling of SEI evolution mechanism — Energy storage materials ⭐ 🔗
🔀 횡단 주제
나트륨 이온 전지 — 13편 (기타6·액체전해질3·고체전해질2·양극2)
MXene 복합 전극 — 3편 (고체전해질1·기타1·음극1)
열안전 가스방출 분석 — 3편 (고체전해질1·기타1·양극1)
이중염 계면 박막화 — 2편 (액체전해질2)
🌱 시드 후보 (미등록 주요 잔여 클러스터)
- [액체전해질] 나노섬유 나트륨이온전해질 · 31편 · Nanofiber가 NASICON-type Na3.3La0.3Zr1.7Si2PO12 electrolyte/Na4MnCr(PO4)3 cathode에 우수한 전기화학적 특성을 부여 / 첨가제에서 fluorine을 점진적으로 방출해 고전압 전고체 lithium 배터리용 안정한 LiF-rich cathode electrolyte interphase 구축
- [음극] 규소음극 부피팽창 억제 · 29편 · 고에너지 Lithium 저장을 위한 rigid 및 flexible carbon encapsulation 기반 porous Si anode의 transport dynamics 및 interfacial stability 향상 / 고에너지 lithium-ion batteries용 in-situ polymerization으로 강화된 고로딩 Si 기반 전극
- [고체전해질] 고분자침투 이온전해질 · 23편 · 안전하고 안정적인 전고체 배터리를 위한 초박형 다기능성 고분자 전해질의 구축 / 전고체 리튬 금속 배터리를 위한 수직 이온 수송 채널 기반 복합 고체 전해질
반복 등장하는 주제는 lab/data/trend_seeds.yaml 에 시드로 승격하세요.