Guoquan Qian
South China University of Technology
Network
Latest external collaboration on country level. Dive into details by clicking on the dots.
Publication
Featured researches published by Guoquan Qian.
APL Materials | 2018
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
Guowu Tang; Wangwang Liu; Qi Qian; Guoquan Qian; Min Sun; Li Yang; Kaimin Huang; Dongdan Chen; Zhongmin Yang
Journal of Non-crystalline Solids | 2016
Guowu Tang; Zaijin Fang; Qi Qian; Guoquan Qian; Wangwang Liu; Zhenguo Shi; Xiujie Shan; Dongdan Chen; Zhongmin Yang
Materials Letters | 2018
Min Sun; Guowu Tang; Guoquan Qian; Wangwang Liu; Zhenguo Shi; Dongdan Chen; Qi Qian; Zhongmin Yang
Journal of Alloys and Compounds | 2017
Min Sun; Guowu Tang; Wangwang Liu; Guoquan Qian; Kaimin Huang; Dongdan Chen; Qi Qian; Zhongmin Yang
Applied Physics Express | 2018
Guowu Tang; Xin Wen; Kaimin Huang; Guoquan Qian; Wei Lin; Huihui Cheng; Licheng Jiang; Qi Qian; Zhongmin Yang
Materials Letters | 2017
Guowu Tang; Min Sun; Wangwang Liu; Qi Qian; Guoquan Qian; Kaimin Huang; Dongdan Chen; Zhongmin Yang
Optics Express | 2018
Xianchao Guan; Changsheng Yang; Tian Qiao; Wei Lin; Qilai Zhao; Guowu Tang; Guoquan Qian; Qi Qian; Zhongmin Yang; Shanhui Xu
Optical Materials | 2018
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
Kaimin Huang; Guowu Tang; Qianhang Luo; Guoquan Qian; Li Yang; Fangqiang Yuan; Zhenguo Shi; Qi Qian; Zhongmin Yang