Results 291 to 300 of about 88,592 (328)
In this study, a novel photothermal catalyst, Mn7Co3Ce1Ox has been developed, which features a type‐II heterojunction structure that enables broad‐spectrum absorption, including visible and infrared light. This material significantly enhances the photothermal catalytic efficiency by overcoming the limitations of traditional catalysts that struggle to ...
Niansi Li+9 more
wiley +1 more source
Full-System Simulation and Analysis of a Four-Mass Vibratory MEMS Gyroscope. [PDF]
Ouyang C+6 more
europepmc +1 more source
The electrophoretic reorganization of Ag nanoparticles within a poly(ethylene glycol) leads to the formation of conductive bridges with reconfigurable resistance states. Diverse conduction characteristics of the bridge range between ohmic conduction, nonlinear tunneling, or space charge‐limited conduction, and high resistance states.
Daniil Nikitin+19 more
wiley +1 more source
Cap-Drop: A Pre-Programmed, Self-Powered Capillary Microfluidic System for Passive Droplet Generation and 3D Cell Culture Modeling. [PDF]
Jalali P+9 more
europepmc +1 more source
According to literatures, magnetoelastic soft materials have achieved a maximum magnetic flux change of 80%, making it difficult to enhance the magnetic flux change. To address this, this manuscript proposed a reversed magnetic field strategy in conjunction with logarithmic helical design and magnetoelastic deformation.
Xiaojun Chen+11 more
wiley +1 more source
Numerical Investigation of a Microfluidic Biosensor Based on I-Shaped Micropillar Array Electrodes. [PDF]
Roueini MA, Kabalan A.
europepmc +1 more source
Transparent Ceramic@Sapphire Composites for High‐Power Laser‐Driven Lighting
This work introduces an innovative strategy for high‐power laser lighting by integrating a phosphor ceramic layer with a high‐thermal‐conductivity sapphire substrate through a simple high‐temperature sintering process. This approach enhances luminous flux (152–319%) and increases the luminescence saturation threshold (100–233%), making it versatile ...
Guoyu Xi+11 more
wiley +1 more source
Machine learning-enabled multiscale modeling platform for damage sensing digital twin in piezoelectric composite structures. [PDF]
Ghosh S, Dan S, Tarafder P.
europepmc +1 more source
An in situ characterization platform is established for water management and fault diagnosis in AEMFCs by employing the relaxation time method to analyze electrochemical impedance spectra. This approach identifies the characteristic frequency ranges of ionic, charge, and reactant transport resistances, enabling quantitative diagnosis of water transport
Haodong Huang+9 more
wiley +1 more source