Results 101 to 110 of about 9,520 (228)
This review highlights advances in lightweight, lead‐free polymer nanocomposites for diagnostic X‐ray shielding. By linking filler chemistry, dispersion, architecture, and photon interaction mechanisms, it establishes structure–performance relationships guiding material design.
Aklilu G. Messele +2 more
wiley +1 more source
In this work, a synergistic strategy introduces interfacial acid sites, oxygen vacancies, and built‐in electric field into ZnSe/ZnO heterojunction to optimize its electronic structure and electrode micro‐environment. This overcomes sluggish oxygen reduction reaction kinetics and low H2O2 selectivity, achieving record H2O2 productivity (754.4 M gcat−1 ...
Lijun Yang +8 more
wiley +1 more source
Synthesis of Ethyl Methyl Carbonate: Past, Present, and Future
Ethyl methyl carbonate (EMC) is the simplest asymmetric organic carbonate, with properties between dimethyl (DMC) and diethyl (DEC) carbonate, considered a unique green liquid organic compound for lithium batteries (electrolyte) and gasoline blending (octane enhancer additive), among other uses. In accordance, the chemical production of EMC is expected
Belén Lerma‐Berlanga +1 more
wiley +1 more source
Overview of gold nanomaterial‐based biosensing strategies for early breast cancer diagnosis. The figure illustrates the detection of multiple biomarker classes, including proteins, nucleic acids, circulating tumor cells (CTCs), and exosomes from biological samples such as blood, serum, and cell lysates using electrochemical, SPR, SERS, fluorescence ...
Akanksha Pawar +6 more
wiley +1 more source
Experimental Aspects for CeO2 Nanoparticles Synthesis and Characterization
In recent years, cerium oxide (CeO2, or ceria) became a versatile nanostructured material because of its unique properties derived from the low dimensionality and high surface area.
Alina MATEI +6 more
doaj
Processing‐Centric Innovative Strategies for Protonic Ceramic Electrochemical Cells
This review reveals how processing‐centric fabrication strategies govern architecture, microstructure, and interfaces in protonic ceramic electrochemical cells (PCECs), establishing a framework that translates materials innovation into scalable PCEC technologies.
Dongyeon Kim +5 more
wiley +1 more source
This review focuses on Ni–GDC cermet and ceria‐based fuel electrodes for solid oxide cell applications. It highlights the advantages of mixed‐conducting ceria, defect chemistry, expanded electrochemically active reaction zones, and enhanced carbon tolerance.
Ifeanyichukwu D. Unachukwu +4 more
wiley +1 more source
An interfacial engineering strategy based on in situ reactions between metal nanoclusters and layered double hydroxides enables simultaneous nanocluster size regulation, heterojunction construction, and mesopore generation. The reconstructed interface enhances visible‐light harvesting, charge separation, and mass transport, providing a general strategy
Qi Chen +5 more
wiley +1 more source
A novel convolutional neural network architecture enables rapid, unsupervised analysis of IR spectroscopic data from DRIFTS and IRRAS. By combining synthetic data generation with parallel convolutional layers and advanced regularization, the model accurately resolves spectral features of adsorbed CO, offering real‐time insights into ceria surface ...
Mehrdad Jalali +5 more
wiley +1 more source
Fe‐Modified Co/CeO2 Catalysts for Sustainable Cyclohexane Oxidation
Bimetallic FexCoy/CeO2 catalysts and the corresponding Co/CeO2 and Fe/CeO2 have been studied for cyclohexane oxidation. In the presence of benzaldehyde, Fe1Co2/CeO2 showed a synergistic effect reaching the highest cyclohexane conversion to KA oil. The presence of Co2+/Fe3+ species is accountable of synergy.
Erisa Fero +6 more
wiley +1 more source

