Asi sto až tři sta vědeckých objevů týdně v oblasti materiálů pro energetiku

1. 9. 2026 / Boris Cvek

čas čtení 2 minuty
Podíval jsem se na produkci vysoce prestižního časopisu v oboru materiály pro energetiku Advanced Energy Materials. Týdně tam vychází asi 30-40 původních vědeckých článků. Celkově ve špičce tohoto oboru je to asi sto týdně (v širším rozpětí méně kvalitních vědeckých časopisů je to asi tři sta týdně) čili pět tisíc ročně. Zde je seznam článků z aktuálního čísla. Představte si, že byste v médiích četli každý týden o sto objevech tohoto typu…holt pokrok nezastavíš.


Sputtering Mechanism of an Unsintered Organic–Inorganic Sputtering Target for Perovskite Solar Cells

Coupled Atmospheric Water Harvesting and Protonic Ceramic Electrolysis Enabling Self-Sustained Green Hydrogen Production in Arid Regions

Tailoring Oxygen-Bridged Asymmetric Active Sites for Oxygen Reduction Reaction in Seawater

Anion–Cation Dual-Site Co-Doping Unlocking NASICON Na4VMn(PO4)3 Cathodes Toward Advanced Sodium–Ion Batteries

Electron-Bridge Effect of Inorganic SnO2-GQDs Electron Transport Layer for Sn–Pb Perovskite Solar Cells and Tandems

Rigid-Flexible Polar Structures for Ultrahigh Energy Storage in Lead-Free Multilayer Ceramic Capacitors

Disorder-Driven Ionic Mobility Edge and Localization-Driven Dendrite Formation in Solid Electrolytes

Triggering Reverse Hydrogen Spillover at a RuOx-Mo2C Cluster-Cluster Heterostructure for Superior Alkaline Hydrogen Evolution

Harvesting Mn2+ by Encapsulated MnOx With sp2-Carbon to Enhance the Mn2+/MnO2 Conversion for High-Capacity Zn-Ion Batteries

Additive-Driven Regulating Solvation Structure Toward Stable High-Voltage Lithium Metal Batteries

Interlaced Conformation-Regulated Dimeric Acceptors: π-Bridge Engineering Strategy for Minimizing Nonradiative Loss in High-Efficiency Organic Solar Cells

High-Entropy Porous Hollow Spinel Oxides via Lattice Oxygen Activation for Efficient and Stable Oxygen Evolution

Building Four-Armed Nodes in Anion Exchange Membranes for Durable Water Electrolysis With High Current Density

Atomically Dispersed Mo–S Sites Boost NiFe–Layered Double Hydroxide for Industrial-Level Seawater Electrolysis

Minimized Li+ Coordinating Effect Enables 4.7 V-Class Li1.2Mn0.53Ni0.20Co0.07O2-Li Batteries

Calcium Imide: A New Catalyst for Plasma-Catalytic Ammonia Synthesis

Interfacial Regulation by a Multifunctional Self-Assembled Material for High-Performance Inverted Perovskite Solar Cells

Heavy Lanthanide-Induced Epitaxial Rock-Salt Shells Enable Chemo-Mechanically Robust Sodium-Ion Cathodes

Efficient Flexible Monolithic Perovskite/CIGS Tandem Solar Cell by Using Two-Step Hybrid Deposition Approach

Synergistic Cation–Anion Engineering Enables Yttrium Chlorobromide Superionic Conductors for High-Performance All-Solid-State Lithium Metal Batteries

Conversion-Derived Hierarchical Li-In/Li2O Interphase for Dendrite-Free Lithium Metal Batteries With Suppressed Anode-to-Cathode Crosstalk

Engineering Thermally Resilient and Kinetically Active Reversible Protonic Ceramic Cells via Interfacial Design

Engineering Integrated Tandem-Structured Hosts to Achieve High-Loading and Ultra-Cycling Aqueous Zn–I2 Batteries

Precursor-Regulated Stacking Faults Enable High-Voltage Stability for P2-Type Layered-Oxide Sodium-Ion Cathodes

Nano Dot-Mediated Cation Transport Through Two-Dimensional Nanofluidic Membranes for High Osmotic Energy Generation

Synergistic DFOB−/NO3−-Regulated Solvation Enables Safe High-Voltage Lithium Metal Batteries

Chemical Bath Solution In-Addition Enabled Grain Boundary and Heterojunction Interface Defects Mitigation Achieving 12.1% Efficiency CZTS Solar Cell

Designing Artificial Mesoscopic-Scale Heterolayers for Ultrahigh Energy Storage

 

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Obsah vydání | 1. 9. 2026