Advanced Materials
Articles in this Issue
A Recyclable and Sustainable Hydroxypropyl Methylcellulose Electrolyte for Electrochromic Devices
ABSTRACT Gel electrolytes, which supply compensating ions for electrochromic reactions and serve as conductive media, are widely used in electrochromic devices (...
Antioxidant Proline Carbon Dot‐Composited Poly(L‐methionine) Hydrogel Restores Mitophagy to Alleviate Cellular Senescence in Intervertebral Disc Degeneration (Adv. Mater. 46/2026)
Turning Unpredictable Biomolecule Adsorption to Controlled Corona Formation: Focus on Carbon Nanomaterials
ABSTRACT With unique optical and physicochemical properties, carbon nanomaterials (CNMs), including carbon nanotubes, graphene‐related materials, nanodiamonds, and carbon dots, are e...
Laplace‐Pressure‐Stabilized Rutile Solid‐Solution Catalysts for Acidic Water Oxidation: Enabling DSA‐Inspired Compositions (Adv. Mater. 46/2026)
Correction to “Mitochondria‐Targeted Nanomotor: H <sub>2</sub> S‐Driven Cascade Therapy for Hepatocellular Carcinoma”
Turning Unpredictable Biomolecule Adsorption to Controlled Corona Formation: Focus on Carbon Nanomaterials (Adv. Mater. 46/2026)
NiMo Dual‐Atom Dimers on Pd Nanosheets for Selective C─H and C─C Bond Cleavage of Ethylene Glycol From Waste Plastics (Adv. Mater. 46/2026)
NiMo Dual‐Atom Dimers on Pd Nanosheets for Selective C─H and C─C Bond Cleavage of Ethylene Glycol From Waste Plastics
ABSTRACT Herein, we report the CO gas–mediated synthesis of palladium nanosheets (PdNS) as the first palladene support for atomically dispersed dimer catalysts....
Nanomaterials Drive In Vivo CAR Immune Cells Engineering
ABSTRACT Chimeric antigen receptor (CAR) immune cell therapy has emerged as a cornerstone of modern cell‐based medicine, demonstrating potent clinical efficacy against a range of mal...
Electronic Structure Modulation of Heterogeneous Cathode Catalysts for Reversible Aprotic Li‐CO <sub>2</sub> Batteries: Mechanisms and Strategies
ABSTRACT Lithium‐carbon dioxide batteries (Li‐CO 2 ), featuring a high discharge voltage (∼2.8 V) and a high theoretical...
From Experiment‐Driven to Theory‐ and Data‐Driven: A Computational Paradigm Shift in High‐Entropy Electrocatalyst Design
ABSTRACT High‐entropy materials (HEMs) have emerged as promising electrocatalyst platforms because compositional diversity enables tunable electronic structures and abundant active s...
Particulate Photocatalytic Water Splitting for Solar Energy Conversion: From Material Design to Scalable Demonstration
ABSTRACT Photocatalytic water splitting using particulate semiconductors represents a promising strategy for sustainable hydrogen production driven by solar ener...
Laplace‐Pressure‐Stabilized Rutile Solid‐Solution Catalysts for Acidic Water Oxidation: Enabling DSA‐Inspired Compositions
ABSTRACT An early phase diagram study in 1967 revealed surprisingly wide immiscible gaps in the rutile‐type IrO 2 ─TiO...
Proton Donors Boost Interfacial Water Activation on RuO <sub>2</sub> ‐Embedded RuWO <sub>x</sub> for Durable Acidic Oxygen Evolution
ABSTRACT The activity‐stability dilemma in acidic oxygen evolution reaction (OER) stems from a fundamental trade‐off in the interface hydrogen‐bond network: whil...
Uniaxial Stress Enhanced Anisotropic Magnetoresistance and Superconductivity in the Kagome Superconductor LaRu <sub>3</sub> Si <sub>2</sub>
ABSTRACT To elucidate how kagome electronic structure governs quantum ground states, we introduce a unique approach combining in‐plane uniaxial stress tuning, magnetotransport, and f...
Resolving the Strength–Modulus–Elasticity Tradeoff in Elastomers Using Dual Phase‐Separated Nanodomains
ABSTRACT Achieving elastomers that simultaneously combine ultrahigh strength, high modulus, and excellent elasticity remains a longstanding challenge because the...
Porosity Engineering Within Ni─N─C Hollow Spheres for Ampere‐Level CO <sub>2</sub> Reduction Electrocatalysis
ABSTRACT CO 2 electroreduction typically requires large overpotentials to sustain high reaction rates, which at current d...
Charge–Transfer Reversal at Cl‐Regulated Cu <sub>2</sub> O/in <sub>2</sub> S <sub>3</sub> Interfaces Enables C─C Coupling for Selective CO <sub>2</sub> Photoreduction to C <sub>2</sub> H <sub>4</sub>
ABSTRACT Efficient photocatalytic CO 2 reduction to C 2 H 4...
Modulating Local Structure of Amorphous Oxyhalide to Achieve High‐Rate and Ultra‐Stable All‐Solid‐State Lithium Battery
ABSTRACT Halides‐based all‐solid‐state lithium batteries (ASSLBs) attract great attention because of their wide electrochemical window and fine processibility. H...
Breaking Interfacial Charge Transport Limitations Enabled by Heterojunction Dielectric Equilibrium in Perovskite Solar Cells
ABSTRACT Heterointerface properties of perovskite solar cells (PVSCs) are critical in determining efficient carrier transport. Conventional interface engineering is insufficient to c...
Low‐Temperature Melting–Crystallization Transition in Perovskites With Self‐Trapped Excitons for Photovoltaic Downconversion
ABSTRACT Self‐trapped exciton (STE) emitters demonstrate exceptional luminescent downconversion (LDC) performance, achieving near‐unity photoluminescence quantum yields (PLQY) and br...
Liquid Metal Composites Enabled High‐Safety Flexible Solid‐State Aluminum Batteries
ABSTRACT Rechargeable aluminum batteries (RABs) are promising for stationary energy storage due to their intrinsic safety, low cost, abundance, and use of non‐fl...
Stress‐Lensed Electrochemical Sintering Enables Fast and Stable Lithium‐Silicon Alloy Chemistry in All‐Solid‐State Batteries
ABSTRACT The fundamental challenge in all‐solid‐state batteries (ASSBs) lies in regulating the dynamic reconstruction of solid‐solid interfaces under electro‐chemo‐mechanical conditi...
Direct Visualization and Regulation of Interfacial Ion Concentration Layer at Zinc Metal Interfaces via an Ion‐Buffering Artificial Solid Electrolyte Interphase
ABSTRACT Direct experimental visualization of the electrical double layer (EDL) and its associated layer formation at metal–electrolyte interfaces remains challe...
Unlocking Lewis‐Acid Catalysis and Crystalline Polyselenide Evolution for Ultra‐Stable Sodium‐Ion Batteries
ABSTRACT Metal selenides (MSes) are promising anodes for sustainable sodium‐ion batteries (SIBs), but their practical application is fundamentally hindered by sl...