Results 271 to 280 of about 4,580,673 (328)
Electroactive Metal–Organic Frameworks for Electrocatalysis
Electrocatalysis is crucial in sustainable energy conversion as it enables efficient chemical transformations. The review discusses how metal–organic frameworks can revolutionize this field by offering tailorable structures and active site tunability, enabling efficient and selective electrocatalytic processes.
Irena Senkovska +7 more
wiley +1 more source
Iron-mediated remediation of arsenic-induced suppression of root morphogenesis and radial oxygen loss in wetland plant. [PDF]
Jiang S +8 more
europepmc +1 more source
A previously unreported coordination motif stabilising single Fe atoms by indigo chelation and pyridyl coordination on Au(111) has been revealed. By using planar tritopic pyridyl linkers (TPyB), extended 2D porous networks of indigo3(TPyB)2Fe6 form. These networks can be crystalline or vitreous and offer an environment where individual coordination ...
Hongxiang Xu +9 more
wiley +1 more source
Atrazine degradation by aqueous ferrate(vi) activated with sulfite <i>vs.</i> thiosulfate: performance, products, and pathways. [PDF]
Guo Q, Guan C, Yang Y, Zhou Y, Jiang J.
europepmc +1 more source
Biomimetic Iridescent Skin: Robust Prototissues Spontaneously Assembled from Photonic Protocells
Uniform nanoparticles are induced to form arrays (photonic crystals) in the cores of biopolymer capsules, endowing these ‘protocells’ with structural color. These protocells are then assembled into large self‐standing objects, i.e., prototissues, with robust mechanical properties as well as iridescent optical properties.
Medha Rath +6 more
wiley +1 more source
Oyster Peptide-Ferrous Chelate Preparation Optimization Structural Characteristics and Enhanced Bioavailability. [PDF]
Zhang Y, Yang Q, Yang X, Cheng S, Du M.
europepmc +1 more source
Copper catalysts introduced with different non‐metallic elements regulating the coordination number of Cu are prepared by magnetron sputtering. Reducing the Cu coordination number enhances C─C coupling and boosts C2+ product selectivity, by lowering the energy barrier for the *CO → *CHO conversion step. The optimized Si‐doped Cu catalyst achieves a C2+
Xiaoye Du +8 more
wiley +1 more source
Phosphorus limitation heightens vulnerability of <i>Crocosphaera watsonii</i> to ocean warming compared with iron limitation. [PDF]
Mansour AA +8 more
europepmc +1 more source

