High-Entropy Alloy Nanocrystals: From Synthesis to Characterization and Catalytic Application [0.03%]
高熵合金纳米晶:从合成到表征及催化应用
Jianlong He,Yueh-Chun Hsiao,Chia-Ying Wu et al.
Jianlong He et al.
High-entropy alloy (HEA) nanocrystals, characterized by four core effects, including high entropy, lattice distortion, sluggish diffusion, and cocktail mixing, represent a transformative class of catalytic materials that combine composition...
The Shape of Things to Come: α-Helical Membrane Protein Folding on the Ribosome [0.03%]
即将出现的东西:核糖体上α-螺旋膜蛋白折叠
Edward Lambden,Benjamin Russell Lewis,Zadie L R Baker et al.
Edward Lambden et al.
Understanding how membrane proteins insert into and fold within cell membranes is critical for explaining the molecular basis of many diseases. It also underpins advances in biotechnology, including the development of therapies for protein ...
Organic Materials for Biohybrid Photocatalysis and Photoelectrochemical Devices [0.03%]
用于生物杂化光催化和光电化学器件的有机材料
Mariia V Pavliuk,Bin Cai,Larissa Kurth et al.
Mariia V Pavliuk et al.
The integration of biological catalysts with organic light-harvesting materials represents a rapidly advancing strategy for sustainable solar-to-chemical energy conversion. Recent advances demonstrate that photoexcited organic materials can...
Methods to Study the Molecular Mechanism and Drive the Design of Protein Degraders [0.03%]
研究蛋白质降解分子机制的方法及其在设计蛋白降解剂中的应用
Charlotte Crowe,Alessio Ciulli
Charlotte Crowe
Small-molecule degraders eliminate disease-driving proteins by hijacking the ubiquitin-proteasome system. To achieve cellular activity, protein degraders must perform a series of consecutive steps involving cell permeability, binary target ...
Jacob Schimelman,Yazhi Sun,Cheng Lyu et al.
Jacob Schimelman et al.
Advances in biofabrication, stem cell biology, and biomaterials engineering have enabled the generation of multicellular tissue constructs capable of recapitulating key aspects of biological function. Despite these advances, the transition ...
Self-Oscillatory Neuron-like Devices for Unconventional Computing Applications [0.03%]
自震荡神经元样器件在非传统计算中的应用
Gonzalo Rivera-Sierra,Juan Bisquert,Roberto Fenollosa
Gonzalo Rivera-Sierra
Self-sustained oscillators are emerging as key physical elements for neuromorphic electronics, providing a hardware route to emulate the spiking dynamics of biological neurons. As conventional computing architectures struggle with power dis...
Xinhao Xu,Hong Liang,Min Li et al.
Xinhao Xu et al.
The development of efficient catalysts for CO2 reduction remains a key challenge in the transition toward carbon neutrality and sustainable energy systems. Dual metal atomic site (DMAS) catalysts have emerged as a transformative class of ma...
Introduction: Single Crystal Materials for Energy Solutions: From Materials Chemistry to Manufacturing Science [0.03%]
单晶材料在能源领域的应用:从材料化学到制造科学
Jie Xiao,Louis F J Piper,M Stanley Whittingham
Jie Xiao
Brandon C Jeong,Antonia Statt
Brandon C Jeong
Embedding mechanophores into polymeric solids enables the design of materials that respond to mechanical stimuli, with applications in sensing, self-healing, and adaptive systems. This review summarizes modeling approaches for mechanophores...
Identification and Quantification of Reactive Oxygen Species in Photocatalytic Membrane Reactors: Reassessment of the Validity of Methods [0.03%]
光催化膜反应器中 reactive oxygen species 的鉴别与量化:重新评估方法的有效性
Siqi Liu,Andrea I Schäfer
Siqi Liu
Reactive oxygen species (ROS), such as hydroxyl radicals (·OH), superoxide radicals (·O2-), and singlet oxygen (1O2), play a critical role in sustainable micropollutant remediation using a photocatalytic membrane reactor (PMR) where the r...