Raza Moshwan
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View article: Indium‐Doping Advances High‐Performance Flexible Ag<sub>2</sub>Se Thin Films
Indium‐Doping Advances High‐Performance Flexible Ag<sub>2</sub>Se Thin Films Open
Enhancing the thermoelectric performance of Ag 2 Se thin films via physical vapor deposition remains challenging. In this study, a precursor doping strategy is introduced to fabricate In‐doped Ag 2 Se thin films. In substitutional doping a…
View article: Compositing Effect Leads to Extraordinary Performance in GeSe‐Based Thermoelectrics
Compositing Effect Leads to Extraordinary Performance in GeSe‐Based Thermoelectrics Open
Rhombohedral GeSe has attracted extensive attention due to its facile fabrication, low toxicity, and greater affordability compared with popular GeTe‐based thermoelectrics. However, its thermoelectric properties require further optimizatio…
View article: Advances and Challenges in SnTe‐Based Thermoelectrics
Advances and Challenges in SnTe‐Based Thermoelectrics Open
SnTe‐based thermoelectric materials have attracted significant attention for their exceptional performance in mid‐to‐high temperature ranges, positioning them as promising candidates for thermoelectric power generation. However, their effi…
View article: High‐Performance GeSe‐Based Thermoelectrics via Cu‐Doping
High‐Performance GeSe‐Based Thermoelectrics via Cu‐Doping Open
Rhombohedral GeSe is a promising p‐type thermoelectric material, noted for its low toxicity, environmental friendliness, and greater affordability compared with tellurides. However, its thermoelectric performance still requires further enh…
View article: Solvothermal synthesis of micro-pillar shaped Ag2Se and its thermoelectric potential
Solvothermal synthesis of micro-pillar shaped Ag2Se and its thermoelectric potential Open
Solvothermal method can synthesize ultralarge and high-performance thermoelectric powders with controllable structure, morphology, composition, and grain size. Here, we have developed a facile and surfactant-free solvothermal method for th…
View article: Optimization of sodium hydroxide for securing high thermoelectric performance in polycrystalline Sn<sub>1 − <i>x</i></sub>Se via anisotropy and vacancy synergy
Optimization of sodium hydroxide for securing high thermoelectric performance in polycrystalline Sn<sub>1 − <i>x</i></sub>Se via anisotropy and vacancy synergy Open
The morphology and composition are two key factors to determine the thermoelectric performance of aqueously synthesized tin selenide (SnSe) crystals; however, their controlling is still under exploring. In this study, we report a high figu…
View article: Boosting the thermoelectric performance of p-type heavily Cu-doped polycrystalline SnSe <i>via</i> inducing intensive crystal imperfections and defect phonon scattering
Boosting the thermoelectric performance of p-type heavily Cu-doped polycrystalline SnSe <i>via</i> inducing intensive crystal imperfections and defect phonon scattering Open
In this study, we, for the first time, report a high Cu solubility of 11.8% in single crystal SnSe microbelts synthesized via a facile solvothermal route.
View article: Effect of Surface States on Joining Mechanisms and Mechanical Properties of Aluminum Alloy (A5052) and Polyethylene Terephthalate (PET) by Dissimilar Friction Spot Welding
Effect of Surface States on Joining Mechanisms and Mechanical Properties of Aluminum Alloy (A5052) and Polyethylene Terephthalate (PET) by Dissimilar Friction Spot Welding Open
In this research, polyethylene terephthalate (PET), as a high-density thermoplastic sheet, and Aluminum A5052, as a metal with seven distinct surface roughnesses, were joined by friction spot welding (FSW). The effect of A5052’s various su…