Advanced Materials
Articles in this Issue
Bioinspired Smart Nanogels for Rapid Blue Laser‐Activated Hemostasis in Gastrointestinal Bleeding (Adv. Mater. 38/2025)
Catalytic Solder Fuses Solid‐Solid Interfaces for All‐Solid‐State Lithium‐Sulfur Batteries
AbstractAll‐solid‐state lithium‐sulfur batteries (ASSLSBs) have garnered significant research interest due to their inherent safety and high energy density. Nevertheless, their practical applications...
Surface‐Engineering Cellulose Nanofibers via In Situ PEDOT Polymerization for Superior Thermoelectric Properties
Abstract Cellulose nanofibrils (CNFs) are abundant and possess exceptional mechanical strength, but their intrinsic electrical insulation limits their applicatio...
Anisotropic Magnetic Heating for Adaptive Thermal Ablation
AbstractThermal ablation provides minimally invasive treatment for cardiovascular and cerebrovascular conditions but risks damaging healthy tissues due to their low imaging contrast against diseased a...
Heterogeneous Polymer Multilayers Enabling Photoresponsive Nonreciprocal Patterns for Information Encryption
Abstract Society has a growing demand for information security. The development of nonreciprocal patterns is a new approach for high‐security information encryption, but it is diffic...
Fundamental Chemistry and Functional Mechanisms of Nitrile‐Based Electrolyte in Advanced Battery Systems
Abstract Nitriles have gained attention as promising candidates for secondary battery electrolytes due to the high polarity of cyano groups, excellent cathode compatibility, remarkab...
A Light‐Driven Closed‐Loop Chemical Recycling System for Polypinacols
AbstractThe development of innovative recycling strategies for polymers is crucial to addressing the rapidly growing plastic waste challenge. While thermal ground‐state chemistry is the standard for c...
Ultrathin Deployable Femtosecond Vortex Laser
Abstract Ultrafast vortex lasers, capable of emitting structured femtosecond pulses with orbital angular momentum, hold great potential for high‐speed optical co...
Ultrathin Polymer Electrolyte With Fast Ion Transport and Stable Interface for Practical Solid‐state Lithium Metal Batteries
Abstract Ultrathin solid‐polymer‐electrolytes (SPEs) are the most promising alternative substituting for the conventional liquid electrolyte to enable high‐energ...
Metal Single‐Atom Materials: Unlocking the Future of Sustainable Energy and Environment in Automobiles
Abstract Automobiles are constantly evolving with advancements in green energy and environmental technologies, e.g., sustainable energy devices, green synthesis, carbon utilization,...
All‐Heat Control of Magnetization Dynamics on Van der Waals Magnets (Adv. Mater. 38/2025)
Bioinspired Smart Nanogels for Rapid Blue Laser‐Activated Hemostasis in Gastrointestinal Bleeding
Abstract Gastrointestinal bleeding (GIB) is a critical condition that requires rapid and effective intervention. Although thrombin is a widely used hemostatic agent, its efficacy is...
Fast‐Charging MXene/TiN‐Confined In <sub>2</sub> Se <sub>3</sub> Anode with Dual Hydrogen‐Bonding Synergy for High‐Capacity Ammonium‐Ion Storage
Abstract Aqueous ammonium‐ion (NH 4 + ) based hybrid pseudocapacitors (NH‐HPCs) integrate sustainabil...
Solid‐State Quantum Coherence From a High‐Spin Donor–Acceptor Conjugated Polymer (Adv. Mater. 38/2025)
Single‐Atom Ru Anchored Mesoporous TiO <sub>2</sub> Phase‐Junction Promotes Photocatalytic Biomass Conversion
Abstract Constructing advanced semiconductor nanoreactors is an effective route to boost the efficient photocatalytic conversion of biomasses to high‐value‐added...
Bio‐Inspired Nanoengineered Wood for Scalable Monolithic Gas Sensor Fabrication (Adv. Mater. 38/2025)
Dual‐Defect Nitrogen‐Rich Carbon Nitride‐Based Heterostructural Nanocatalyst for Improving the Therapeutic Efficacy of <i>α</i>PD‐1 via Tumor Immune Microenvironment Remodelling
AbstractLow immunogenicity, insufficient immune infiltrates, and inhibitive microenvironment of tumors ruthlessly weakened the therapeutic efficacy of immunotherapies. How to improve the therapy effic...
Engineering Red Blood Cells for Amplified Tumor Dual‐Gas Transfusion Therapy
AbstractRed blood cell (RBC) transfusion therapy constitutes a vital medical intervention primarily aimed at enhancing oxygen delivery. Furthermore, RBCs possess the ability to stably bind therapeutic...
A Non‐Concentrated Gradient‐Solvation Electrolyte Enables a High‐Voltage Lithium Metal Battery with 447.6 Wh Kg<sup>−1</sup>
AbstractHigh‐voltage lithium (Li) metal batteries (LMBs) emerge as a pivotal strategy for achieving high energy density applications. However, the electrolyte instability leading to inferior rate perf...
Amorphization‐Induced <i>d</i>‐Orbital Rearrangement in Ultrathin CoO Nanosheets with Strong <i>d</i>‐<i>p</i> Interactions for Efficient CO<sub>2</sub> Photoreduction
AbstractPhotocatalytic CO2 conversion into syngas presents a sustainable avenue for mitigating carbon emissions while generating value‐added fuels. However, sluggish charge carrier dynamics and weak,...
Photo‐Induced Dynamic Catalytic Domains for High‐Performance Lithium‐Sulfur Batteries
AbstractLithium‐sulfur batteries (LSBs) face significant challenges due to sluggish reaction kinetics and the polysulfide shuttle effect. Here, a light‐induced anchoring strategy is employed to constr...
Active Diffusion Controlled Dual Stability in Thermoelectrics for Sustainable Heat Harvesting
AbstractThermoelectric technology offers a promising pathway toward global sustainability by harvesting waste heat. However, long‐term stability is hindered by inevitable elemental diffusion, degradin...
Revealing Redox‐Mediated CO<sub>2</sub> Reduction Reaction Mechanisms in Aprotic Li–CO<sub>2</sub> Batteries
AbstractRedox‐mediated electrocatalysis represents an innovative strategy to unlock the energy capabilities of aprotic Li–CO2 batteries by enabling solution‐mediated CO2 reduction reaction (CO2RR). Ho...
Unlocking the Potential of MOFs Anodes via Solid‐State Corrosion Prelithiation for High‐Energy Li‐Ion Batteries
AbstractPristine metal‐organic frameworks (MOFs) with their excellent cycling stability and high capacity are considered as promising next‐generation anode materials for advanced high‐performance lith...
Highly Efficient Perovskite/Organic Hybrid White Electroluminescent Devices with Extended Operational Lifetime and Wide Color Gamut
Abstract Rapid and substantial progress is made in monochromatic perovskite light‐emitting diodes (LEDs), however, challenges remain in achieving white electrolu...