Framework Flexibility and Chemical Stability of a 2D Cu(I)-Based Metal-Organic Framework for Catalytic CO Oxidation [0.03%]
二维Cu(I)金属有机框架的框架灵活性和化学稳定性用于催化CO氧化反应
Zi-Ming Ye,Haomiao Xie,Milad Ahmadi Khoshooei et al.
Zi-Ming Ye et al.
Cu(I)-based metal-organic frameworks (MOFs) are attractive for small-molecule binding and catalysis, but their practical use is often limited by oxidation state instability and framework degradation. Here, we report an all-N-coordinated Cu(...
Light-Driven Antimicrobial Cotton Fabric: Multilayer Dye-Finishing Design and Hospital Environment Validation [0.03%]
光驱动抗菌棉织物:多层染色整理设计及医院环境验证
Inés Martínez-González,Jaime Gisbert-Payá,M Luisa Marin et al.
Inés Martínez-González et al.
A sequential ionic multilayer finishing strategy enabled the stable co-immobilization of two photosensitizing dyes-cationic methylene blue (MB) and anionic Rose Bengal (RB)-onto cotton fabrics, overcoming cellulose-dye incompatibility throu...
Simulation-Guided Engineering of Hierarchical Domain Structures for High-Efficiency MLCCs [0.03%]
用于高效率MLCC的分级结构工程仿真指导
Jia-Jia Ren,Zhaochen Xi,Diming Xu et al.
Jia-Jia Ren et al.
The miniaturization of modern electronic systems demands multilayer ceramic capacitors (MLCCs) capable of delivering high energy density without compromising efficiency or reliability. Herein, guided by phase-field simulations, this work es...
Room-Temperature Radical-Complexation Wet Etch Chemistry Demonstrated on VO2 [0.03%]
室温自由基复合湿法刻蚀技术在钒氧化物中的应用研究
Ha Young Choi,Lance McGowen,Kyung Ho Park et al.
Ha Young Choi et al.
Despite advances in metal oxide device technology, etching strategies remain limited by the difficulty of achieving high pattern fidelity under low thermal budgets. Here, we present a room-temperature wet etching strategy for VO2 thin films...
Xanthate-Modified Cellulose Nanofibrils for Efficient Heavy Metal Capture from Wastewater [0.03%]
改性戊糖葡糖基纤维素纳米纤维吸附重金属离子
Pinhong Chen,Jilong Mo,Zhipeng Sun et al.
Pinhong Chen et al.
Conventional adsorbents frequently exhibit limited selectivity and inadequate regenerability, particularly when addressing complex wastewater matrices containing coexisting metal ions. To tackle this issue, we present the development of xan...
Universal Manufacturing of Multifunctional Composite Coatings with Integrated Anticorrosion, Super-Lubrication, and Antibacterial Properties for Diverse Metallic Substrates [0.03%]
具有集成防腐、超润滑和抗菌性能的多功能复合涂层的通用制造技术以用于不同的金属基材
Luyao Gao,Jialin Zhang,Haozhe Xu et al.
Luyao Gao et al.
The manufacture of biocompatible multifunctional medical metal materials constitutes a frontier challenge. Meanwhile, surface modification offers substantial potential for enhancing their functionality and broadening their application scope...
Fabrication of Liquid Metal Composite Ionic Liquid Hydrogels for Antifouling Application [0.03%]
用于防污应用的液态金属复合离子凝胶的制备
Haohang Yuan,Yikun Ji,Guoliang Yang et al.
Haohang Yuan et al.
Marine biofouling remains a major challenge for maritime industries, driving the need for low‑toxicity and durable antifouling coatings. Herein, we present a composite hydrogel coating (IL-GLM@Gel) constructed by integrating gallium-based ...
A Fully Biodegradable Hybrid Nanogenerator with Mo Nanoparticle-Mediated Dielectric Enhancement for Improved In Vivo Energy Harvesting [0.03%]
一种全可降解纳米发电机用于改善体内能量收集
Li Ang Zhang,Jinmei Liu,Saixuan Li et al.
Li Ang Zhang et al.
Implantable medical devices that fully degrade in the body eliminate the need for removal surgeries, yet powering them transiently remains a challenge due to low energy harvesting efficiency. Here, we introduce a fully biodegradable hybrid ...
A Fully Biodegradable Hybrid Nanogenerator with Mo Nanoparticle-Mediated Dielectric Enhancement for Improved In Vivo Energy Harvesting [0.03%]
一种全可降解混合纳米发电机用于改善体内能量采集基于Mo纳米粒子介电增强
Li Ang Zhang,Jinmei Liu,Saixuan Li et al.
Li Ang Zhang et al.
Implantable medical devices that fully degrade in the body eliminate the need for removal surgeries, yet powering them transiently remains a challenge due to low energy harvesting efficiency. Here, we introduce a fully biodegradable hybrid ...
Photoactive Lignin-Derived Nanolayers for Camouflaged Bioaromatic Interfaces [0.03%]
一种用于伪装生物芳香界面的光活性木质素纳米层
Tam Thi-Thanh Huynh,Maarten Rubens,Marc Comí et al.
Tam Thi-Thanh Huynh et al.
Bioaromatic polymers derived from lignin have largely been confined to bulk materials or dispersed (nano)particles, limiting their ability to control interfacial phenomena at the nanoscale. Here, we establish lignin as a platform for progra...