Zobrazeno 1 - 10
of 57
pro vyhledávání: '"HouBo Zhou"'
Publikováno v:
Chinese Journal of Population, Resources and Environment, Vol 22, Iss 3, Pp 291-304 (2024)
In response to the United Nations Sustainable Development Goals and China’s “Dual Carbon” Goals (DCGs means the goals of “Carbon Peak and carbon neutrality”), this paper from the perspective of the construction of China’s Innovation Demon
Externí odkaz:
https://doaj.org/article/9ac747aa77a045c9a3d288d30f2408df
Autor:
Yuan Lin, Jing Wang, Wei Dai, Kaiming Qiao, Houbo Zhou, Tongyun Zhao, Fengxia Hu, Baogen Shen
Publikováno v:
The Innovation, Vol 5, Iss 4, Pp 100645- (2024)
The environmental friendliness and high efficiency of magnetocaloric refrigeration make it a promising substitute for vapor compression refrigeration. However, the common use of heat transfer fluid in conventional passive magnetic regenerators (PMRs)
Externí odkaz:
https://doaj.org/article/edd03f2c69be4287b41e83d669f1bc1b
Autor:
Yangyang Fan, Xujing Li, Zhuo Yin, Aicong Geng, Mengqin Wang, Houbo Zhou, Zheng Wang, Xinchi Wang, Jing Wang, Fengxia Hu, Baohe Li, Jian-Tao Wang, Baogen Shen
Publikováno v:
APL Materials, Vol 11, Iss 9, Pp 091109-091109-8 (2023)
It is well known that the epitaxial strain plays a vital role in tuning the magnetic states in transition metal oxide LaCoO3 films. Here, we reported a robust long-range ferromagnetic (FM) ground state in a tensile-strained perovskite LaCoO3 film on
Externí odkaz:
https://doaj.org/article/e28d2302683b43648427a43c9cd033f1
Publikováno v:
Materials Research Letters, Vol 10, Iss 10, Pp 675-681 (2022)
We report the enhancement of the thermal conductivity of neopentylglycol (NPG) by compositing it with graphene nanosheets (GPNs). Adding 50 wt% GPNs enhanced the thermal conductivity from 0.42 to 18.4 Wm−1K−1, and the barocaloric entropy change c
Externí odkaz:
https://doaj.org/article/930008e750164b588100e7e92951c96d
Autor:
Wenhui Liang, Houbo Zhou, Jiefu Xiong, Fengxia Hu, Jia Li, Jian Zhang, Jing Wang, Jirong Sun, Baogen Shen
Publikováno v:
Engineering, Vol 6, Iss 2, Pp 159-164 (2020)
Amorphous Sm–Co films with uniaxial in-plane anisotropy have great potential for application in information-storage media and spintronic materials. The most effective method to produce uniaxial in-plane anisotropy is to apply an in-plane magnetic f
Externí odkaz:
https://doaj.org/article/92d86b08d4794064afc01a114340612e
Autor:
Zhuo Yin, Jianlin Wang, Jing Wang, Jia Li, Houbo Zhou, Cheng Zhang, Hui Zhang, Jine Zhang, Feiran Shen, Jiazheng Hao, Zibing Yu, Yihong Gao, Yangxin Wang, Yunzhong Chen, Ji-Rong Sun, Xuedong Bai, Jian-Tao Wang, Fengxia Hu, Tong-Yun Zhao, Baogen Shen
Publikováno v:
ACS Nano. 16:14632-14643
Autor:
Kaiming Qiao, Jianlin Wang, Shulan Zuo, Houbo Zhou, Jiazheng Hao, Yao Liu, Fengxia Hu, Hu Zhang, Adler G. Gamzatov, Akhmed Aliev, Cheng Zhang, Jia Li, Zibing Yu, Yihong Gao, Feiran Shen, Rongchang Ye, Yi Long, Xuedong Bai, Jing Wang, Jirong Sun, Rongjin Huang, Tongyun Zhao, Baogen Shen
Publikováno v:
ACS Applied Materials & Interfaces. 14:18293-18301
Autor:
Qiuzhen Cheng, Guoyu Xian, Yin Huang, Hui Guo, Lulu Pan, Houbo Zhou, Jing Wang, Senhao Lv, Chengmin Shen, Xiao Lin, Hailong Chen, Yongfeng Li, Haitao Yang, Hong-Jun Gao
Publikováno v:
Science China Materials.
Autor:
Zibing Yu, Houbo Zhou, Fengxia Hu, Chang Liu, Shuaikang Yuan, Donghui Wang, Jiazheng Hao, Yihong Gao, Yangxin Wang, Bingjie Wang, Zhengying Tian, Yuan Lin, Cheng Zhang, Zhuo Yin, Jing Wang, Yunzhong Chen, Yunliang Li, Jirong Sun, Tongyun Zhao, Baogen Shen
Publikováno v:
NPG Asia Materials. 14
The barocaloric effect (BCE) has emerged as an intense research topic in regard to efficient and clean solid-state refrigeration. Materials with solid-liquid phase transitions (SL-PTs) usually show huge melting entropies but cannot work in full solid
Autor:
Houbo Zhou, Tianzi Yang, Jing Wang, Kaiming Qiao, Bao-gen Shen, Fengxia Hu, Fei-Ran Shen, Zhitong Xu, Tianyu Ma, Yao Liu
Publikováno v:
Journal of Materials Science. 56:20060-20070
The caloric effects under combined applications of magnetic field and hydrostatic pressure to a MnCoSi meta-magnet were investigated. Under a magnetic field change of 0–5 T, the maximum magnetic entropy change was enhanced by 35.7% when a 3.2kbar h