510404. Electronic and magnetic properties of condensed matter; superconductivity


Title510404. Electronic and magnetic properties of condensed matter; superconductivity
Parent5104. Condensed matter physics

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Rare-Earth Nd Inducing Record-High Thermoelectric Performance of (GeTe)85(AgSbTe2)15
Lyu, Wan Yu, Hong, Min, Liu, Wei Di, Li, Meng, Sun, Qiang, Xu, Sheng Duo, Zou, Jin and Chen, Zhi-Gang. 2021. "Rare-Earth Nd Inducing Record-High Thermoelectric Performance of (GeTe)85(AgSbTe2)15." Energy Material Advances. 2021, pp. 1-8. https://doi.org/10.34133/2021/2414286

Article

Establishing the Golden Range of Seebeck Coefficient for Maximizing Thermoelectric Performance
Hong, Min, Lyu, Wangyu, Wang, Yuan, Zou, Jin and Chen, Zhi-Gang. 2020. "Establishing the Golden Range of Seebeck Coefficient for Maximizing Thermoelectric Performance." Journal of the American Chemical Society. 142 (5), pp. 2672-2681. https://doi.org/10.1021/jacs.9b13272

Article

Hierarchical Structuring to Break the Amorphous Limit of Lattice Thermal Conductivity in High-Performance SnTe-Based Thermoelectrics
Wang, Lijun, Hong, Min, Sun, Qiang, Wang, Yuan, Yue, Luo, Zheng, Shuqi, Zou, Jin and Chen, Zhi-Gang. 2020. "Hierarchical Structuring to Break the Amorphous Limit of Lattice Thermal Conductivity in High-Performance SnTe-Based Thermoelectrics." ACS Applied Materials and Interfaces. 12 (32), pp. 36370-36379. https://doi.org/10.1021/acsami.0c09781

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Computer-aided design of high-efficiency GeTe-based thermoelectric devices
Hong, Min, Zheng, Kun, Lyv, Wanyu, Li, Meng, Qu, Xianlin, Sun, Qiang, Xu, Shengduo, Zou, Jin and Chen, Zhi-Gang. 2020. "Computer-aided design of high-efficiency GeTe-based thermoelectric devices." Energy and Environmental Science. 13 (6), pp. 1856-1864. https://doi.org/10.1039/D0EE01004A

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Crowding-out effect strategy using AgCl for realizing a super low lattice thermal conductivity of SnTe
Wang, Lijun, Hong, Min, Kawami, Youichirou, Sun, Qiang, Nguyen, Van Thuong, Wang, Yuan, Yue, Luo, Zheng, Shuqi, Zhu, Zhonghua, Zou, Jin and Chen, Zhi-Gang. 2020. "Crowding-out effect strategy using AgCl for realizing a super low lattice thermal conductivity of SnTe." Sustainable Materials and Technologies. 25, pp. 1-7. https://doi.org/10.1016/j.susmat.2020.e00183

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High-Efficiency Thermocells Driven byThermo-Electrochemical Processes
Li, Meng, Hong, Min, Dargusch, Matthew, Zou, Jin and Chen, Zhi-Gang. 2021. "High-Efficiency Thermocells Driven byThermo-Electrochemical Processes." Trends in Chemistry. 3 (7), pp. 561-574. https://doi.org/10.1016/j.trechm.2020.11.001

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Crystal symmetry induced structure and bonding manipulation boosting thermoelectric performance of GeTe
Li, Meng, Hong, Min, Tang, Xiao, Sun, Qiang, Lyu, Wan-Yu, Xu, Sheng-Duo, Kou, Liang-Zhi, Dargusch, Matthew, Zou, Jin and Chen, Zhi-Gang. 2020. "Crystal symmetry induced structure and bonding manipulation boosting thermoelectric performance of GeTe." Nano Energy. 73, pp. 1-10. https://doi.org/10.1016/j.nanoen.2020.104740

Article

Rashba effect maximizes thermoelectric performance of GeTe derivatives
Hong, Min, Lyv, Wanyu, Li, Meng, Xu, Shengduo, Sun, Qiang, Zou, Jin and Chen, Zhi-Gang. 2020. "Rashba effect maximizes thermoelectric performance of GeTe derivatives." Joule. 4 (9), pp. 2030-2043. https://doi.org/10.1016/j.joule.2020.07.021

Article

Giant piezoresistive effect by optoelectronic coupling in a heterojunction
Nguyen, Thanh, Dinh, Toan, Foisal, Abu Riduan Md, Phan, Hoang-Phuong, Nguyen, Tuan-Khoa, Nguyen, Nam-Trung and Dao, Dzung Viet. 2019. "Giant piezoresistive effect by optoelectronic coupling in a heterojunction." Nature Communications. 10 (1), pp. 1-8. https://doi.org/10.1038/s41467-019-11965-5

Article

Discovery of the magnetic field of the B1/B2V star σ Lupi
Henrichs, H. F., Kolenberg, K., Plaggenborg, B., Marsden, S. C., Waite, I. A., Landstreet, J., Grunhut, J., Oksala, M. and Wade, G.. 2012. "Discovery of the magnetic field of the B1/B2V star σ Lupi." Hoffman, Jennifer L., Bjorkman, Jon and Whitney, Barbara (ed.) American Institute of Physics Conference (STARPOL 2011): Stellar Polarimetry: From Birth to Death. Madison, United States 27 - 30 Jun 2011 United States. AIP Publishing. https://doi.org/10.1063/1.3701907

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Amorphous SiOx nanowires catalyzed by metallic Ge for optoelectronic applications
Nie, Tian-Xiao, Chen, Zhi-Gang, Wu, Yue-Qin, Lin, Jian-Hui, Zhang, Jiu-Zhan, Fan, Yong-Liang, Yang, Xin-Ju, Jiang, Zui-Min and Zou, Jin. 2011. "Amorphous SiOx nanowires catalyzed by metallic Ge for optoelectronic applications." Journal of Alloys and Compounds. 509 (9), pp. 3978-3984. https://doi.org/10.1016/j.jallcom.2010.12.199

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Long-term magnetic field monitoring of the Sun-like star ksi Bootis A
Morgenthaler, A., Petit, P., Saar, S., Solanki, S. K., Morin, J., Marsden, S. C., Auriere, M., Dintrans, B., Fares, R., Gastine, T., Lanoux, J., Lignieres, F., Paletou, F., Ramirez Velez, J. C., Theado, S. and Van Grootel, V.. 2012. "Long-term magnetic field monitoring of the Sun-like star ksi Bootis A." Astronomy and Astrophysics: a European journal. 540, pp. 1-15. https://doi.org/10.1051/0004-6361/201118139

Article

Polarisation and magnetic fields in cool stars and the Sun
Martinez Gonzalez, M. J. and Marsden, S. C.. 2013. "Polarisation and magnetic fields in cool stars and the Sun." Astronomische Nachrichten. 334 (1-2), pp. 164-167. https://doi.org/10.1002/asna.201211753

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How do the magnetic field strengths and intensities of sunspots vary over the solar cycle?
Norton, A. A., Jones, E. H. and Liu, Y.. 2013. "How do the magnetic field strengths and intensities of sunspots vary over the solar cycle?" Eclipse on the Coral Sea: Cycle 24 Ascending (2013). Palm Cove, Australia 12 - 16 Nov 2012 Bristol, United Kingdom. https://doi.org/10.1088/1742-6596/440/1/012038

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Spectropolarimetric observations of active stars
Donati, J. -F., Semel, M., Carter, B. D., Rees, D. E. and Cameron, A. C.. 1997. "Spectropolarimetric observations of active stars." Monthly Notices of the Royal Astronomical Society. 291 (4), pp. 658-682. https://doi.org/10.1093/mnras/291.4.658

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Dynamo processes and activity cycles of the active stars AB Doradus, LQ Hydrae and HR 1099
Donati, J.-F., Collier Cameron, A., Semel, M., Hussain, G. A. J., Petit, P., Carter, B. D., Marsden, S. C., Mengel, M., Lopez Ariste, A., Jeffers, S. V. and Rees, D. E.. 2003. "Dynamo processes and activity cycles of the active stars AB Doradus, LQ Hydrae and HR 1099." Monthly Notices of the Royal Astronomical Society. 345 (4), pp. 1145-1186. https://doi.org/10.1046/j.1365-2966.2003.07031.x

Article

High-resolution magnetic field measurements of RR Lyrae stars with SemPol
Guggenberger, E., Kolenberg, K., Marsden, S. C., Waite, I. A., Henrichs, H. F. and Luftinger, T.. 2009. "High-resolution magnetic field measurements of RR Lyrae stars with SemPol." Guzik, Joyce Ann and Bradley, Paul A. (ed.) International Conference on Stellar Pulsation: Challenges for Theory and Observation (2009). Santa Fe, United States 31 May - 05 Jun 2009 Melville, NY. United States. AIP Publishing. https://doi.org/10.1063/1.3246492

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Magnetic fields and differential rotation on the pre-main sequence
Marsden, Stephen C., Waite, Ian A. and Carter, Bradley D.. 2009. "Magnetic fields and differential rotation on the pre-main sequence." Stempels, Eric (ed.) 15th Cambridge Workshop on Cool Stars, Stellar Systems and the Sun. St. Andrews, United Kingdom 21 - 25 Jul 2008 Melville, NY. United States. AIP Publishing. https://doi.org/10.1063/1.3099217

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