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Featured researches published by Shukang Deng.


Materials Technology | 2017

Preparation and electrical transport properties of VIII-type Sn-based single-crystal clathrates (Eu/Ba)8Ga16Sn30

Feng Cheng; Lanxian Shen; Decong Li; Hongxia Liu; Jinsong Wang; Shukang Deng

In this work, the type-VIII Sn-based single-crystal clathrates with different stoichiometric ratios were prepared, and the structure of the samples was investigated. The results indicate that Eu atoms tend to replace Ba atoms. The introduced Eu atoms lead to a decrease in the materials’ melting point and the concentration of carriers, whilst the carrier mobility is increased. Despite the above, there was no obvious change on the electrical conductivity, and the lattice constant of samples were decreased. The Seebeck coefficient of the samples was found to be negative and its absolute value decreased with increasing Eu. The ZT values were found to be almost 0.46 at 550 k when the Eu initial ratio was equal to 0.25.


Chinese Physics B | 2016

Structural stabilities and electrical properties of Ba8Ga16−x Cu x Sn30 single crystals under high temperatures

Jinsong Wang; Feng Cheng; Hongxia Liu; Decong Li; Lanxian Shen; Shukang Deng

Single crystalline samples of type-I and type-VIII Ba8Ga16−x Cu x Sn30 (x = 0, 1) clathrates are prepared by the Sn-flux method. Effects of Cu-doping on stability and electrical properties of Ba8Ga16Sn30 single crystal are explored by first-principle and experiment. All samples are heated to different high temperatures and maintained at these temperatures for 120 min and then cooled to room temperature to explore their structural stabilities. Results from DTA and powder x-ray diffraction analysis indicate that type-I Ba8Ga16Sn30 structure is transformed into type-VIII phase after the sample has been heated to 185 °C. Type-VIII BGS is stable during heating and cooling, but type-VIII Ba8Ga15CuSn30 decomposes into Sn and Ba(Ga/Sn)4 during cooling. Meanwhile, the electrical properties of type-I samples are measured, their electrical conductivities are enhanced, and the Seebeck efficient is reduced with Cu substitution. The type-I samples after phase transformations show the electrical characteristics of type-VIII samples.


Physica Status Solidi B-basic Solid State Physics | 2015

Preparation, thermal stability, and electrical transport properties of In/Sn codoped β‐Zn4Sb3 single crystal

Xuxia Shai; Shukang Deng; Lanxian Shen; Daiyi Meng; Decong Li; Yanjun Zhang; Xianyan Jiang


Physica B-condensed Matter | 2014

Thermal stability and electrical transport properties of β-Zn4Sb3 single crystal prepared by Sn-flux method

Xuxia Shai; Shukang Deng; Daiyi Meng; Lanxian Shen; Decong Li


Physica B-condensed Matter | 2016

Preparation and oxidation resistance of single crystalline β-Zn4Sb3

Hongxia Liu; Shuping Deng; Decong Li; Lanxian Shen; Feng Cheng; Jinsong Wang; Shukang Deng


Chinese Physics B | 2017

Thermal stability and electrical transport properties of Ge/Sn-codoped single crystallineβ-Zn4Sb3prepared by the Sn-flux method

Hongxia Liu; Shuping Deng; Decong Li; Lanxian Shen; Shukang Deng


Physica Status Solidi B-basic Solid State Physics | 2015

Structural and thermodynamic properties of Cu-doped Sn-based single-crystalline clathrates

Jingsong Wang; Feng Cheng; Hongxia Liu; Decong Li; Lanxian Shen; Kaiyuan Shen; Shukang Deng


Physica Status Solidi (a) | 2018

Crystal Growth, Thermal Stability and Electrical Transport Property of Double-Doping (SnCd) System in Single-Crystal β-Zn4Sb3

Shuping Deng; Decong Li; Liping Zheng; Yu Tang; Zhong Chen; Luqi Sun; Wenting Liu; Lanxian Shen; Shukang Deng


Journal of Materials Engineering and Performance | 2017

Electrical Transport Properties of Single-Crystalline β-Zn4Sb3 Prepared Through the Zn-Sn Mixed-Flux Method

Hongxia Liu; Shuping Deng; Lanxian Shen; Jinsong Wang; Cheng Feng; Shukang Deng


Journal of Electronic Materials | 2017

Thermoelectric Properties of Sr-Filled Ge-Based Type I Single-Crystal Clathrate Grown by Sn-Flux Method

Shuping Deng; Hongxia Liu; Decong Li; Jinsong Wang; Feng Cheng; Lanxian Shen; Shukang Deng

Collaboration


Dive into the Shukang Deng's collaboration.

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Lanxian Shen

Yunnan Normal University

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Hongxia Liu

Yunnan Normal University

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Shuping Deng

Yunnan Normal University

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Feng Cheng

Yunnan Normal University

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Jinsong Wang

Yunnan Normal University

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Yu Tang

Yunnan Normal University

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Zhong Chen

Yunnan Normal University

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Luqi Sun

Yunnan Normal University

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Wenting Liu

Yunnan Normal University

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