Table of Contents for Advanced Materials. List of articles from both the latest and EarlyView issues.
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Rapid Selenoprotein Activation by Selenium Nanoparticles to Suppresses Osteoclastogenesis and Pathological Bone Loss

Abstract Osteoclast hyperactivation stands as a significant pathological factor contributing to the emergence of bone disorders driven by heightened oxidative stress levels. The modulation of the redox balance to scavenge reactive oxygen species (ROS) emerges as a viable approach in addressing this concern. Selenoproteins, characterized by selenocysteine...

Tue Apr 16, 2024 11:56
Dynamic (Sub)surface‐Oxygen Enables Highly Efficient Carbonyl‐Coupling for Electrochemical Carbon Dioxide Reduction

Abstract Nowadays high-valent Cu species (i.e., Cuδ+) has been clarified to enhance multi-carbon production in electrochemical CO2 reduction reaction (CO2RR). Nonetheless, the inconsistent average Cu valence states have been reported to significantly govern the product profile of CO2RR, which may lead to misunderstanding of the enhanced mechanism for...

Tue Apr 16, 2024 11:56
Synergizing Fe2O3 nanoparticles on single atom Fe‐N‐C for nitrate reduction to ammonia at industrial current densities

Abstract The electrochemical reduction of oxidized nitrogen species enables a pathway for the carbon neutral synthesis of ammonia (NH3). The most oxidized form of nitrogen, nitrate (NO3 −) can be reduced to NH3 via the electrocatalytic nitrate reduction reaction (NO3RR), which has been demonstrated at high selectivity. However, to make NH3 synthesis...

Tue Apr 16, 2024 11:56
Particle‐based Photoelectrodes for PEC Water Splitting: Concepts and Perspectives

Abstract This comprehensive review delves into the intricacies of the photoelectrochemical (PEC) water splitting process, specifically focusing on the design, fabrication, and optimization of particle-based photoelectrodes for efficient green hydrogen production. These photoelectrodes, composed of semiconductor materials, potentially harness light...

Tue Apr 16, 2024 11:56
Eliminating the Burn‐in Loss of Efficiency in Organic Solar Cells by Applying Dimer Acceptors as Supramolecular Stabilizers

A reliable dimer supramolecular stabilizer strategy is developed to eliminate the burn-in loss of organic solar cells (OSCs). More mechanism studies reveal that the restricted molecular diffusion, robust morphology, and low-level trap state density are keys to address the burn-in loss, resulting in a long T 98 lifetime over 600 h under the maximum-power-point...

Tue Apr 16, 2024 11:56
The Nanoplasmonic Purcell Effect in Ultrafast and High‐Light‐Yield Perovskite Scintillators

In this work, a fundamental mechanism that pushes the frontiers of ultrafast X-ray scintillator performance is theoretically predicted and experimentally demonstrated: the use of nanoscale-confined surface plasmon polariton modes to tailor the scintillator response time via the Purcell effect. By incorporating nanoplasmonic materials in ultrafast...

Tue Apr 16, 2024 11:56

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