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Featured researches published by Guoquan Qian.


APL Materials | 2018

Enhanced thermoelectric properties of polycrystalline Bi2Te3 core fibers with preferentially oriented nanosheets

Min Sun; Qi Qian; Guowu Tang; Wangwang Liu; Guoquan Qian; Zhenguo Shi; Kaimin Huang; Dongdan Chen; Shanhui Xu; Zhongmin Yang

Bi2Te3-based materials have been reported to be one of the best room-temperature thermoelectric materials, and it is a challenge to substantially improve their thermoelectric properties. Here novel Bi2Te3 core fibers with borosilicate glass cladding were fabricated utilizing a modified molten core drawing method. The Bi2Te3 core of the fiber was found to consist of hexagonal polycrystalline nanosheets, and polycrystalline nanosheets had a preferential orientation; in other words, the hexagonal Bi2Te3 lamellar cleavage more tended to be parallel to the symmetry axis of the fibers. Compared with a homemade 3-mm-diameter Bi2Te3 rod, the polycrystalline nanosheets’ preferential orientation in the 89-μm-diameter Bi2Te3 core increased its electrical conductivity, but deduced its Seebeck coefficient. The Bi2Te3 core exhibits an ultrahigh ZT of 0.73 at 300 K, which is 232% higher than that of the Bi2Te3 rod. The demonstration of fibers with oriented nano-polycrystalline core and the integration with an efficient fabrication technique will pave the way for the fabrication of high-performance thermoelectric fibers.Bi2Te3-based materials have been reported to be one of the best room-temperature thermoelectric materials, and it is a challenge to substantially improve their thermoelectric properties. Here novel Bi2Te3 core fibers with borosilicate glass cladding were fabricated utilizing a modified molten core drawing method. The Bi2Te3 core of the fiber was found to consist of hexagonal polycrystalline nanosheets, and polycrystalline nanosheets had a preferential orientation; in other words, the hexagonal Bi2Te3 lamellar cleavage more tended to be parallel to the symmetry axis of the fibers. Compared with a homemade 3-mm-diameter Bi2Te3 rod, the polycrystalline nanosheets’ preferential orientation in the 89-μm-diameter Bi2Te3 core increased its electrical conductivity, but deduced its Seebeck coefficient. The Bi2Te3 core exhibits an ultrahigh ZT of 0.73 at 300 K, which is 232% higher than that of the Bi2Te3 rod. The demonstration of fibers with oriented nano-polycrystalline core and the integration with an efficient ...


Journal of Alloys and Compounds | 2017

Antimony selenide core fibers

Guowu Tang; Wangwang Liu; Qi Qian; Guoquan Qian; Min Sun; Li Yang; Kaimin Huang; Dongdan Chen; Zhongmin Yang


Journal of Non-crystalline Solids | 2016

Silicate-clad highly Er3 +/Yb3 + co-doped phosphate core multimaterial fibers

Guowu Tang; Zaijin Fang; Qi Qian; Guoquan Qian; Wangwang Liu; Zhenguo Shi; Xiujie Shan; Dongdan Chen; Zhongmin Yang


Materials Letters | 2018

In4Se3 alloy core thermoelectric fibers

Min Sun; Guowu Tang; Guoquan Qian; Wangwang Liu; Zhenguo Shi; Dongdan Chen; Qi Qian; Zhongmin Yang


Journal of Alloys and Compounds | 2017

Sn-Se alloy core fibers

Min Sun; Guowu Tang; Wangwang Liu; Guoquan Qian; Kaimin Huang; Dongdan Chen; Qi Qian; Zhongmin Yang


Applied Physics Express | 2018

Tm3+-doped barium gallo-germanate glass single-mode fiber with high gain per unit length for ultracompact 1.95 µm laser

Guowu Tang; Xin Wen; Kaimin Huang; Guoquan Qian; Wei Lin; Huihui Cheng; Licheng Jiang; Qi Qian; Zhongmin Yang


Materials Letters | 2017

Bismuth core fibers

Guowu Tang; Min Sun; Wangwang Liu; Qi Qian; Guoquan Qian; Kaimin Huang; Dongdan Chen; Zhongmin Yang


Optics Express | 2018

High-efficiency sub-watt in-band-pumped single-frequency DBR Tm3+-doped germanate fiber laser at 1950 nm

Xianchao Guan; Changsheng Yang; Tian Qiao; Wei Lin; Qilai Zhao; Guowu Tang; Guoquan Qian; Qi Qian; Zhongmin Yang; Shanhui Xu


Optical Materials | 2018

Efficient 2 μm emission in Er 3+ /Ho 3+ co-doped lead silicate glasses under different excitations

Guoquan Qian; Guowu Tang; Zhenguo Shi; Licheng Jiang; Kaimin Huang; Jiulin Gan; Dongdan Chen; Qi Qian; Feng Tu; Haizheng Tao; Zhongmin Yang


Materials Research Bulletin | 2018

SeTe alloy semiconductor core optical fibers

Kaimin Huang; Guowu Tang; Qianhang Luo; Guoquan Qian; Li Yang; Fangqiang Yuan; Zhenguo Shi; Qi Qian; Zhongmin Yang

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Guowu Tang

South China University of Technology

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Qi Qian

South China University of Technology

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Zhongmin Yang

South China University of Technology

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Dongdan Chen

South China University of Technology

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Kaimin Huang

South China University of Technology

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Wangwang Liu

South China University of Technology

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Min Sun

South China University of Technology

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Zhenguo Shi

South China University of Technology

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Licheng Jiang

South China University of Technology

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Wei Lin

South China University of Technology

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