Search Results - "Zhao, Li‐Dong"

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  1. 1

    Promising Thermoelectric Bulk Materials with 2D Structures by Zhou, Yiming, Zhao, LiDong

    Published in Advanced materials (Weinheim) (01-12-2017)
    “…Given that more than two thirds of all energy is lost, mostly as waste heat, in utilization processes worldwide, thermoelectric materials, which can directly…”
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  2. 2

    Moving fast makes for better cooling by Qin, Bingchao, Zhao, Li-Dong

    “…Optimizing carrier mobility with composition and processing is key for thermoelectric coolers Thermoelectric technology enables direct and reversible…”
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  3. 3

    Rationally Designing High-Performance Bulk Thermoelectric Materials by Tan, Gangjian, Zhao, Li-Dong, Kanatzidis, Mercouri G

    Published in Chemical reviews (12-10-2016)
    “…There has been a renaissance of interest in exploring highly efficient thermoelectric materials as a possible route to address the worldwide energy generation,…”
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  4. 4

    High-performance SnSe thermoelectric materials: Progress and future challenge by Chen, Zhi-Gang, Shi, Xiaolei, Zhao, Li-Dong, Zou, Jin

    Published in Progress in materials science (01-08-2018)
    “…Thermoelectric materials offer an alternative opportunity to tackle the energy crisis and environmental problems by enabling the direct solid-state energy…”
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  5. 5

    Charge and phonon transport in PbTe-based thermoelectric materials by Xiao, Yu, Zhao, Li-Dong

    Published in npj quantum materials (01-11-2018)
    “…PbTe is a typical intermediate-temperature thermoelectric material, which has undergone extensive developments and achieved excellent high thermoelectric…”
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  6. 6

    Lattice plainification advances highly effective SnSe crystalline thermoelectrics by Liu, Dongrui, Wang, Dongyang, Hong, Tao, Wang, Ziyuan, Wang, Yuping, Qin, Yongxin, Su, Lizhong, Yang, Tianyu, Gao, Xiang, Ge, Zhenhua, Qin, Bingchao, Zhao, Li-Dong

    “…Thermoelectric technology has been widely used for key areas, including waste-heat recovery and solid-state cooling. We discovered tin selenide (SnSe) crystals…”
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  7. 7

    Realizing High‐Ranged Out‐of‐Plane ZTs in N‐Type SnSe Crystals through Promoting Continuous Phase Transition by Chang, Cheng, Wang, Dongyang, He, Dongsheng, He, Wenke, Zhu, Fangyuan, Wang, Guangtao, He, Jiaqing, Zhao, LiDong

    Published in Advanced energy materials (01-07-2019)
    “…Thermoelectric technology enables direct conversion between heat and electricity. The conversion efficiency of a thermoelectric device is determined by the…”
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  8. 8

    Intrinsically Low Thermal Conductivity in BiSbSe3: A Promising Thermoelectric Material with Multiple Conduction Bands by Liu, Xiaoying, Wang, Dongyang, Wu, Haijun, Wang, Jinfeng, Zhang, Yang, Wang, Guangtao, Pennycook, Stephen J., Zhao, LiDong

    Published in Advanced functional materials (17-01-2019)
    “…Bi2Se3, as a Te‐free alternative of room‐temperature state‐of‐the‐art thermoelectric (TE) Bi2Te3, has attracted little attention due to its poor electrical…”
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  9. 9

    Anharmoncity and low thermal conductivity in thermoelectrics by Chang, Cheng, Zhao, Li-Dong

    Published in Materials today physics (01-03-2018)
    “…The thermoelectric (TE) efficiency is evaluated by the material thermoelectric figure of merit (ZT), which can be usually improved by enhancing the electrical…”
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  10. 10

    Electrical and Thermal Transport Properties of Ge1–xPbxCuySbyTeSe2y by Jin, Yang, Ren, Dudi, Qiu, Yuting, Zhao, LiDong

    Published in Advanced functional materials (02-11-2023)
    “…Balancing the contradictory relationship between thermoelectric parameters, such as effective mass and carrier mobility, is a challenge to optimize…”
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  11. 11

    Ultrahigh power factor and thermoelectric performance in hole-doped single-crystal SnSe by Zhao, Li-Dong, Tan, Gangjian, Hao, Shiqiang, He, Jiaqing, Pei, Yanling, Chi, Hang, Wang, Heng, Gong, Shengkai, Xu, Huibin, Dravid, Vinayak P., Uher, Ctirad, Snyder, G. Jeffrey, Wolverton, Chris, Kanatzidis, Mercouri G.

    “…Thermoelectric technology, harvesting electric power directly from heat, is a promising environmentally friendly means of energy savings and power generation…”
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  12. 12

    3D charge and 2D phonon transports leading to high out-of-plane ZT in n-type SnSe crystals by Chang, Cheng, Wu, Minghui, He, Dongsheng, Pei, Yanling, Wu, Chao-Feng, Wu, Xuefeng, Yu, Hulei, Zhu, Fangyuan, Wang, Kedong, Chen, Yue, Huang, Li, Li, Jing-Feng, He, Jiaqing, Zhao, Li-Dong

    “…Thermoelectric technology enables the harvest of waste heat and its direct conversion into electricity. The conversion efficiency is determined by the…”
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  13. 13

    Single‐Crystal SnSe Thermoelectric Fibers via Laser‐Induced Directional Crystallization: From 1D Fibers to Multidimensional Fabrics by Zhang, Jing, Zhang, Ting, Zhang, Hang, Wang, Zhixun, Li, Chen, Wang, Zhe, Li, Kaiwei, Huang, Xingming, Chen, Ming, Chen, Zhe, Tian, Zhiting, Chen, Haisheng, Zhao, LiDong, Wei, Lei

    Published in Advanced materials (Weinheim) (01-09-2020)
    “…Single‐crystal tin selenide (SnSe), a record holder of high‐performance thermoelectric materials, enables high‐efficient interconversion between heat and…”
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  14. 14

    Modulation Doping Leads to Optimized Thermoelectric Properties in n‐Type Bi6Cu2Se4O6 due to Interface Effects by Zheng, Junqing, Wang, Siqi, Zhao, Zhe, Gao, Xiang, Hong, Tao, Zhao, LiDong

    Published in Advanced functional materials (17-05-2023)
    “…Heterogeneous composites consisting of Bi6Cu2Se3.6Cl0.4O6 and Bi2O2Se are prepared according to the concept of modulation doping. With prominently increased…”
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  15. 15

    Enhancing Carrier Mobility and Seebeck Coefficient by Modifying Scattering Factor by Su, Lizhong, Shi, Haonan, Wang, Sining, Wang, Dongyang, Qin, Bingchao, Wang, Yuping, Chang, Cheng, Zhao, LiDong

    Published in Advanced energy materials (01-05-2023)
    “…Thermoelectric materials possess the potential for refrigeration and power generation due to their ability to directly convert heat and electricity. Carrier…”
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  16. 16

    Slowing down the heat in thermoelectrics by Qin, Bingchao, Wang, Dongyang, Zhao, LiDong

    Published in InfoMat (01-07-2021)
    “…Heat transport has various applications in solid materials. In particular, the thermoelectric technology provides an alternative approach to traditional…”
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  17. 17

    Ultralow thermal conductivity and high thermoelectric figure of merit in SnSe crystals by Zhao, Li-Dong, Lo, Shih-Han, Zhang, Yongsheng, Sun, Hui, Tan, Gangjian, Uher, Ctirad, Wolverton, C., Dravid, Vinayak P., Kanatzidis, Mercouri G.

    Published in Nature (London) (17-04-2014)
    “…The main obstacle to improving the thermoelectric efficiency of a material arises from the common interdependence of electrical and thermal conductivity,…”
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  18. 18

    Mechanically Induced Highly Efficient Hydrogen Evolution from Water over Piezoelectric SnSe nanosheets by Li, Shun, Zhao, Zhicheng, Li, Jiabin, Liu, Hong, Liu, Maosong, Zhang, Yuqiao, Su, Lizhong, Pérez‐Jiménez, Ana Isabel, Guo, Yunchang, Yang, Fan, Liu, Yong, Zhao, Jinzhu, Zhang, Jianming, Zhao, LiDong, Lin, Yuanhua

    “…Piezoelectric nanomaterials open new avenues in driving green catalysis processes (e.g., H2 evolution from water) through harvesting mechanical energy, but…”
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  19. 19

    Nanoscale bubble domains with polar topologies in bulk ferroelectrics by Yin, Jie, Zong, Hongxiang, Tao, Hong, Tao, Xuefei, Wu, Haijun, Zhang, Yang, Zhao, Li-Dong, Ding, Xiangdong, Sun, Jun, Zhu, Jianguo, Wu, Jiagang, Pennycook, Stephen J.

    Published in Nature communications (15-06-2021)
    “…Multitudinous topological configurations spawn oases of many physical properties and phenomena in condensed-matter physics. Nano-sized ferroelectric bubble…”
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  20. 20

    Non-equilibrium processing leads to record high thermoelectric figure of merit in PbTe–SrTe by Tan, Gangjian, Shi, Fengyuan, Hao, Shiqiang, Zhao, Li-Dong, Chi, Hang, Zhang, Xiaomi, Uher, Ctirad, Wolverton, Chris, Dravid, Vinayak P., Kanatzidis, Mercouri G.

    Published in Nature communications (26-07-2016)
    “…The broad-based implementation of thermoelectric materials in converting heat to electricity hinges on the achievement of high conversion efficiency. Here we…”
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