Characterization of the microstructural, magnetic, and thermal properties of Fe-45Ni fabricated by laser powder bed fusion. [PDF]
Sim N, Jung HY, Lee KA.
europepmc +1 more source
By tuning the pore size of mesoporous N‐doped carbon (MPNC) nanospheres as support material for molybdenum sulfide, the electrochemical activity of the composite material for the hydrogen evolution reaction can be optimized. An ideal MPNC pore size of 60 nm allows a high number of molybdenum sulfide active sites while maintaining efficient proton and ...
Niklas Ortlieb +3 more
wiley +1 more source
First-principles insights into half-metallic ferromagnetism, lattice dynamics, and thermoelectric performance of MgX<sub>2</sub>Se<sub>4</sub> (X=Ti, Mn) spinel chalcogenides. [PDF]
Ramzan A, Sofi MY, Khan MS, Khan MA.
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Viscoelasticity‐driven instabilities are harnessed to create tunable, periodic textures in 3D‐printed liquid crystalline polymers. This study illustrates how processing parameters control these spontaneous meso‐scale patterns. These unique structural architectures unlock new possibilities for functional devices, ranging from photonic components to ...
Miaomiao Zou +17 more
wiley +1 more source
A Flexible and Thermally Uniform TiO<sub>2</sub>/Ag/SiO<sub>2</sub> Transparent Heater for Skin-Integrated Applications. [PDF]
Jo J, Kang G, Lee C, Vo TTB, Choi D.
europepmc +1 more source
Operando Temperature Sensing at the Actual Electrocatalytic Interface by Nanodiamond Quantum Sensors
By integrating a wide‐field microscope with a custom‐designed electrolyzer, nanoscale temperature changes can be recorded in situ during the electrolysis process without interfering with ongoing electrochemical reactions. This method establishes a correlation between the interface temperature and specific electrochemical reactions, making the measured ...
Zan Li +7 more
wiley +1 more source
Theoretical analysis for heat and mass transfer in bioconvective ternary hybrid nanofluid flow with entropy optimization. [PDF]
Haq F +4 more
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Rational Device Design and Doping‐Controlled Performance in Fast‐Response π‐Ion Gel Transistors
π‐Ion gel transistors (PIGTs) achieve extraordinary transconductance and stability through device configuration optimization, high‐mobility conjugated polymer selection, and hole scavenger doping. The optimized PIGTs maintain performance on flexible substrates, enabling printed, fast‐response, and wearable electronics.
Masato Kato +10 more
wiley +1 more source
Two Distinct Phonon Wave Effects Control Thermal Transport across the Coherent-Incoherent Regime in Superlattices. [PDF]
Yang J, Zhu J, McGaughey AJH, Ong WL.
europepmc +1 more source

