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Lattice dynamics and thermoelectric properties of diamondoid materials
The diamondoid compounds are a large family of important semiconductors, which possess
various unique transport properties and had been widely investigated in the fields of …
various unique transport properties and had been widely investigated in the fields of …
Hidden structures: a driving factor to achieve low thermal conductivity and high thermoelectric performance
The long-range periodic atomic arrangement or the lack thereof in solids typically dictates
the magnitude and temperature dependence of their lattice thermal conductivity (κlat) …
the magnitude and temperature dependence of their lattice thermal conductivity (κlat) …
Realizing high in-plane carrier mobility in n-type SnSe crystals through deformation potential modification
Thermoelectric technology, as one solution to energy harvesting, offers a direct and
reversible conversion between electricity and heat. The emerging thermoelectric material …
reversible conversion between electricity and heat. The emerging thermoelectric material …
Realizing high-efficiency thermoelectric module by suppressing donor-like effect and improving preferred orientation in n-type Bi2 (Te, Se) 3
Thermoelectric materials have a wide range of application because they can be directly
used in refrigeration and power generation. And the Bi 2 Te 3 stand out because of its …
used in refrigeration and power generation. And the Bi 2 Te 3 stand out because of its …
Off‐Centering of Ge Atoms in GeBi2Te4 and Impact on Thermoelectric Performance
The crystal structure and transport properties of GeBi2Te4 are investigated as a layered
compound with potential applications as thermoelectric materials. A disordered arrangement …
compound with potential applications as thermoelectric materials. A disordered arrangement …
Silver atom off-centering in diamondoid solid solutions causes crystallographic distortion and suppresses lattice thermal conductivity
The class I–III–VI2 diamondoid compounds with tetrahedral bonding are important
semiconductors widely applied in optoelectronics. Understanding their heat transport …
semiconductors widely applied in optoelectronics. Understanding their heat transport …
Spatial Structure of Electron Interactions in High‐entropy Oxide Nanoparticles for Active Electrocatalysis of Carbon Dioxide Reduction
W Cai, X Cao, Y Wang, S Chen, J Ma… - Advanced …, 2024 - Wiley Online Library
High‐entropy oxides (HEOs) exhibit distinctive catalytic properties owing to their diverse
elemental compositions, garnering considerable attention across various applications …
elemental compositions, garnering considerable attention across various applications …
Electrical and Thermal Transport Properties of Ge1–xPbxCuySbyTeSe2y
Y **, D Ren, Y Qiu, LD Zhao - Advanced Functional Materials, 2023 - Wiley Online Library
Balancing the contradictory relationship between thermoelectric parameters, such as
effective mass and carrier mobility, is a challenge to optimize thermoelectric performance …
effective mass and carrier mobility, is a challenge to optimize thermoelectric performance …
Structural Evolution and Photoluminescence Quenching across the FASnI3–xBrx (x = 0–3) Perovskites
One of the primary methods for band gap tuning in metal halide perovskites has been halide
(I/Br) mixing. Despite widespread usage of this type of chemical substitution in perovskite …
(I/Br) mixing. Despite widespread usage of this type of chemical substitution in perovskite …
Evidence of Lone Pair Crafted Emphanisis in the Ruddlesden–Popper Halide Perovskite Cs2PbI2Cl2
A hallmark of typical structural transformations is an increase in symmetry upon heating due
to entropic favourability. However, local symmetry breaking upon warming is recently …
to entropic favourability. However, local symmetry breaking upon warming is recently …