Patents by Inventor Xiaoting XI

Xiaoting XI has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 12577109
    Abstract: A boron-sulfur-codoped porous carbon material and a preparation method is disclosed. The boron-sulfur-codoped porous carbon material includes a porous carbon, and B and S doped in the surface and pores of the porous carbon; where B has a doping content of 5.56 wt. % to 7.85 wt. %, and S has a doping content of 0.90 wt. % to 1.55 wt. %. Test results of examples show that the boron-sulfur-codoped porous carbon material has high doping contents of B and S, and abundant pores; in a three-electrode system, the material shows a maximum specific capacitance of 168 F·g?1 to 290.7 F·g?1 at 0.5 A·g?1; after the material is assembled into a symmetrical supercapacitor, the supercapacitor has an ultra-high energy density of 11.3 Wh·kg?1 to 16.65 Wh·kg?1 in a neutral electrolyte system, and has a capacitance retention rate of 97.09% to 100.67% after 10,000 life tests.
    Type: Grant
    Filed: August 23, 2022
    Date of Patent: March 17, 2026
    Assignee: Northwest Minzu University
    Inventors: Qiong Su, Yanbin Wang, Zhaoxia Li, Dian Wang, Shaofeng Pang, Shuhe Kang, Xiangfei Zhao, Shuai Wei, Xiaoting Xi, Yu Tian, Qing Wang, Qi Chen, Zhongxu Wang, Lichun Liang, Lihui Kang, Shijun Cao
  • Publication number: 20230234851
    Abstract: A boron-sulfur-codoped porous carbon material and a preparation method is disclosed. The boron-sulfur-codoped porous carbon material includes a porous carbon, and B and S doped in the surface and pores of the porous carbon; where B has a doping content of 5.56 wt.% to 7.85 wt.%, and S has a doping content of 0.90 wt.% to 1.55 wt.%. Test results of examples show that the boron-sulfur-codoped porous carbon material has high doping contents of B and S, and abundant pores; in a three-electrode system, the material shows a maximum specific capacitance of 168 F·g- 1 to 290.7 F·g-1 at 0.5 A·g-1; after the material is assembled into a symmetrical supercapacitor, the supercapacitor has an ultra-high energy density of 11.3 Wh·kg-1 to 16.65 Wh·kg-1 in a neutral electrolyte system, and has a capacitance retention rate of 97.09% to 100.67% after 10,000 life tests.
    Type: Application
    Filed: August 23, 2022
    Publication date: July 27, 2023
    Applicant: Northwest Minzu University
    Inventors: Qiong SU, Yanbin WANG, Zhaoxia LI, Dian WANG, Shaofeng PANG, Shuhe KANG, Xiangfei ZHAO, Shuai WEI, Xiaoting XI, Yu TIAN, Qing WANG, Qi CHEN, Zhongxu WANG, Lichun LIANG, Lihui KANG, Shijun CAO