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Nanomaterials for Thermoelectrics. Synthesis and characterization of self-assembled lamellae and precipitates with epitaxy-like interfaces that emulate high-efficiency superlattice materials which are normally grown by thin film methods. Use of bulk processing methods suitable for commercialization.
Band Structure Engineering of Thermoelectric Materials. Use of alloying to control band convergence for high valley degeneracy. Demonstration of highzT ~1.5 in several PbTe, PbSe n-type and p-type systems ideal for waste heat recovery.
Zintl Materials for Thermoelectric power generation. Spearheaded exploration of Zintl phases for thermoelectric applications. Demonstrated high efficiency in Yb14MnSb11 and electronic tunability in Zintl phases. Discovered interstitial mechanism for low thermal conductivity in Zn4Sb3.
Solid-State Physics and Thermodynamics of Thermoelectric MaterialsPredictive modeling of electronic and thermal transport properties of heavily doped semiconductors at high temperatures. Development of thermoelectriccompatibility and related nonequilibrium thermydynamic concepts for rational materials development of segmented and cascaded thermoelectric devices.
Thermoelectric Engineering. Hierarchical engineering principles for design of thermal to electric power generation and thermal management systems. Thermal modeling. Microfabrication techniques for thermoelectric MEMS devices.
Transport Measurements at Elevated Temperatures. 4-point thermopower measurement system for Seebeck coefficient and large temperature gradient thermoelectric voltage. Electrical conductivity and Hall Effect to 1000 C. Thermal diffusivity and heat capacity.
Energy Efficiency. Increased energy efficiency from waste heat recovery, thermal insulation, localized heating and cooling. Higher efficiency heat to electricity. Efficient utilization of energy through cogeneration of heat and electricity.
Nanomaterials for Thermoelectrics. Synthesis and characterization of self-assembled lamellae and precipitates with epitaxy-like interfaces that emulate high-efficiency superlattice materials which are normally grown by thin film methods. Use of bulk processing methods suitable for commercialization.
Band Structure Engineering of Thermoelectric Materials. Use of alloying to control band convergence for high valley degeneracy. Demonstration of highzT ~1.5 in several PbTe, PbSe n-type and p-type systems ideal for waste heat recovery.
Zintl Materials for Thermoelectric power generation. Spearheaded exploration of Zintl phases for thermoelectric applications. Demonstrated high efficiency in Yb14MnSb11 and electronic tunability in Zintl phases. Discovered interstitial mechanism for low thermal conductivity in Zn4Sb3.
Solid-State Physics and Thermodynamics of Thermoelectric MaterialsPredictive modeling of electronic and thermal transport properties of heavily doped semiconductors at high temperatures. Development of thermoelectriccompatibility and related nonequilibrium thermydynamic concepts for rational materials development of segmented and cascaded thermoelectric devices.
Thermoelectric Engineering. Hierarchical engineering principles for design of thermal to electric power generation and thermal management systems. Thermal modeling. Microfabrication techniques for thermoelectric MEMS devices.
Transport Measurements at Elevated Temperatures. 4-point thermopower measurement system for Seebeck coefficient and large temperature gradient thermoelectric voltage. Electrical conductivity and Hall Effect to 1000 C. Thermal diffusivity and heat capacity.
Energy Efficiency. Increased energy efficiency from waste heat recovery, thermal insulation, localized heating and cooling. Higher efficiency heat to electricity. Efficient utilization of energy through cogeneration of heat and electricity.
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ACTA MATERIALIA (2024): 119644
Yukun Liu,Hongyao Xie,Zhi Li,Roberto Dos Reis, Juncen Li,Xiaobing Hu, Paty Meza, Muath AlMalki,G Jeffrey Snyder,Matthew A Grayson,Christopher Wolverton,Mercouri G Kanatzidis,
Hoa Thi Lai, Nhat Quang Minh Tran,Linh Ho Thuy Nguyen,Thu Bao Nguyen Le, Cuong Chi Nguyen,Anh Tuan Thanh Pham,Tan Le Hoang Doan,Sungkyun Park,Jongill Hong,Gerald Jeffrey Snyder, Thang Bach Phan
Journal of Alloys and Compoundspp.174769, (2024)
ADVANCED MATERIALS TECHNOLOGIESno. 1 (2024)
Advanced science (Weinheim, Baden-Wurttemberg, Germany)pp.e2308075-e2308075, (2024)
APPLIED PHYSICS LETTERSno. 14 (2024)
MATERIALS HORIZONSno. 5 (2024): 1188-1198
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