Search Results - "Ying, Pingjun"
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Towards tellurium-free thermoelectric modules for power generation from low-grade heat
Published in Nature communications (18-02-2021)“…Thermoelectric technology converts heat into electricity directly and is a promising source of clean electricity. Commercial thermoelectric modules have relied…”
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2
Geometrical Optimization and Thermal‐Stability Characterization of Te‐Free Thermoelectric Modules Based on MgAgSb/Mg3(Bi,Sb)2
Published in Small (Weinheim an der Bergstrasse, Germany) (01-06-2022)“…Solid‐state thermoelectric (TE) technology is a promising approach to harvest low‐grade waste heat (<573 K) and converts it to useful electricity in industrial…”
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3
Tuning Multiscale Microstructures to Enhance Thermoelectric Performance of n-Type Bismuth-Telluride-Based Solid Solutions
Published in Advanced energy materials (01-09-2015)“…Microstructure manipulation plays an important role in enhancing physical and mechanical properties of materials. Here a high figure of merit zT of 1.2 at 357…”
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4
Screening strategy for developing thermoelectric interface materials
Published in Science (American Association for the Advancement of Science) (24-11-2023)“…Thermoelectric interface materials (TEiMs) are essential to the development of thermoelectric generators. Common TEiMs use pure metals or binary alloys but…”
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5
High‐Pressure‐Sintering‐Induced Microstructural Engineering for an Ultimate Phonon Scattering of Thermoelectric Half‐Heusler Compounds
Published in Small (Weinheim an der Bergstrasse, Germany) (01-08-2021)“…Thermal management is of vital importance in various modern technologies such as portable electronics, photovoltaics, and thermoelectric devices. Impeding…”
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6
Reduced Lattice Thermal Conductivity for Half-Heusler ZrNiSn through Cryogenic Mechanical Alloying
Published in ACS applied materials & interfaces (18-08-2021)“…The ZrNiSn-based half-Heusler compounds are promising for thermoelectric applications in the mid-to-high temperature range. However, their thermoelectric…”
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7
Performance Degradation and Protective Effects of Atomic Layer Deposition for Mg‐based Thermoelectric Modules
Published in Advanced functional materials (01-11-2024)“…Thermoelectric technology has witnessed a resurgence in recent years due to increasing demands for sustainable energy sources and efficient cooling systems…”
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8
Anisotropic thermoelectric properties of layered compound SnSe2
Published in Science bulletin (Beijing) (30-12-2017)“…Similar to high performance SnSe thermoelectrics, SnSe2 is also a layered structured semiconductor. However, its anisotropic thermoelectric properties are less…”
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9
Metavalent Bonding in Cubic SnSe Alloys Improves Thermoelectric Properties over a Broad Temperature Range
Published in Advanced functional materials (01-07-2024)“…Monocrystalline SnSe is one of the most promising thermoelectric materials with outstanding performance and a high abundance of constituting elements. However,…”
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10
Enhanced thermoelectric performance of PbTe bulk materials with figure of merit zT >2 by multi-functional alloying
Published in Journal of Materiomics (01-06-2016)“…Forming solid solutions in PbTe based materials can simultaneously reduce lattice thermal conductivity and engineer the band structure to enhance the…”
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11
Hierarchical Chemical Bonds Contributing to the Intrinsically Low Thermal Conductivity in α‐MgAgSb Thermoelectric Materials
Published in Advanced functional materials (05-01-2017)“…Understanding the lattice dynamics and phonon transport from the perspective of chemical bonds is essential for improving and finding high‐efficiency…”
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12
High Performance α‑MgAgSb Thermoelectric Materials for Low Temperature Power Generation
Published in Chemistry of materials (10-02-2015)“…Bi2Te3 based alloys have long been the best and most unique thermoelectric materials for power generation below 550 K. Their substitutes with abundantly…”
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13
Geometrical Optimization and Thermal-Stability Characterization of Te-Free Thermoelectric Modules Based on MgAgSb/Mg 3 (Bi,Sb) 2
Published in Small (Weinheim an der Bergstrasse, Germany) (01-06-2022)“…Solid-state thermoelectric (TE) technology is a promising approach to harvest low-grade waste heat (<573 K) and converts it to useful electricity in industrial…”
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14
High flux and CO2-resistance of La0.6Ca0.4Co1–xFexO3−δ oxygen-transporting membranes
Published in Journal of membrane science (15-11-2019)“…Most of the currently used perovskite-based oxygen-transporting membranes have insufficient resistance towards CO2 and high material costs that potentially…”
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15
Fabrication and Characterization of a Thermoelectric Generator with High Aspect Ratio Thermolegs for Electrically Active Implants (Adv. Mater. Technol. 1/2024)
Published in Advanced materials technologies (08-01-2024)“…Implantable Thermoelectric Generators This cover describes the mechanism of a packaged thermoelectric generator (TEG) implanted in the fat layer of human body…”
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16
Fabrication and Characterization of a Thermoelectric Generator with High Aspect Ratio Thermolegs for Electrically Active Implants
Published in Advanced materials technologies (01-01-2024)“…Implantable thermoelectric generators hold significant promise as an alternative or supplementary energy source for implantable medical devices, but their…”
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17
High flux and CO2-resistance of La0.6Ca0.4Co1–Fe O3− oxygen-transporting membranes
Published in Journal of membrane science (01-11-2019)Get full text
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18
Hierarchical Chemical Bonds Contributing to the Intrinsically Low Thermal Conductivity in [alpha]-MgAgSb Thermoelectric Materials
Published in Advanced functional materials (01-01-2017)“…Understanding the lattice dynamics and phonon transport from the perspective of chemical bonds is essential for improving and finding high-efficiency…”
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19
Anisotropic thermoelectric properties of layered compound SnSe 2
Published in Science bulletin (Beijing) (01-12-2017)Get full text
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20
Anisotropic thermoelectric properties of layered compound SnSe2
Published in 科学通报:英文版 (2017)“…Similar to high performance SnSe thermoelectrics, SnSe2 is also a layered structured semiconductor.However, its anisotropic thermoelectric properties are less…”
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