Patents by Inventor Weile LIN
Weile LIN 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).
-
Publication number: 20260201542Abstract: A perovskite solar battery includes a hole transport layer and a light absorption layer on the hole transport layer. The hole transport layer includes a nickel oxide substrate and a dopant doped in the nickel oxide substrate. The dopant includes at least one compound that contains one or more elements of Cu, Ca, Cr, Sn, Hg, Pb, Mg, Mn, Ag, Co, Ga, and Pr.Type: ApplicationFiled: March 9, 2026Publication date: July 16, 2026Inventors: Guodong CHEN, Weile LIN, Zhaohui LIU, Yongsheng GUO, Yandong WANG
-
Patent number: 12595548Abstract: A doped nickel oxide target includes a nickel oxide substrate and a dopant doped therein. The dopant includes at least one compound that contains one or more elements of Cu, Ca, Cr, Sn, Hg, Pb, Mg, Mn, Ag, Co, and Pr.Type: GrantFiled: March 30, 2023Date of Patent: April 7, 2026Assignee: CONTEMPORARY AMPEREX TECHNOLOGY (HONG KONG) LIMITEDInventors: Guodong Chen, Weile Lin, Zhaohui Liu, Yongsheng Guo, Yandong Wang
-
Patent number: 12538606Abstract: A solar cell includes a plurality of sub-cells. The plurality of sub-cells are disposed sequentially along a first direction. The plurality of sub-cells each include a first photovoltaic conversion layer for performing photovoltaic conversion. The first direction is perpendicular to a thickness direction of the sub-cells. Along the first direction, a trend of change in a thickness of the first photovoltaic conversion layer of each sub-cell is negatively correlated to a trend of change in a cross-sectional area, perpendicular to the thickness direction, of each first photovoltaic conversion layer, so as to improve uniformity of photocurrents output by the sub-cells and uniformity of electrical current.Type: GrantFiled: March 12, 2024Date of Patent: January 27, 2026Assignee: CONTEMPORARY AMPEREX TECHNOLOGY (HONG KONG) LIMITEDInventors: Guodong Chen, Zhaohui Liu, Weile Lin, Wenming Guo, Yongsheng Guo, Yandong Wang, Shuojian Su, Yanfen Wang, Chuying Ouyang
-
Publication number: 20250393340Abstract: The present application relates to a solar cell and a method for preparing the same, a photovoltaic module, and a power consuming device. The solar cell may have a plurality of sub-cells, each of the plurality of sub-cells including a first electrode layer, a photovoltaic conversion module, and a second electrode layer that may be sequentially stacked along a thickness direction of the sub-cell, the second electrode layer including a main body portion and a connection portion electrically connected to the main body portion, and the connection portion of one of the plurality of sub-cells being configured to be electrically connected to the first electrode layer of another sub-cell, such that the plurality of sub-cells may be electrically connected, where a thickness of the main body portion may be greater than that of the connection portion.Type: ApplicationFiled: September 2, 2025Publication date: December 25, 2025Applicant: Contemporary Amperex Technology (Hong Kong) LimitedInventors: Yanfen WANG, Shuojian SU, Yandong WANG, Weile LIN, Hanfang LI, Xiangling LIN, Changmao WANG, Guodong CHEN, Yongsheng GUO
-
Publication number: 20250369689Abstract: The present application discloses a drying machine and a cell processing apparatus. The drying machine is configured for drying and crystallizing a material. The drying machine includes a vacuum compartment, a crystallization compartment and a heating device. The vacuum compartment forms a first chamber configured to perform vacuum drying on the material. The crystallization compartment forms a second chamber. The first chamber and the second chamber each have an input end and an output end, and the output end of the first chamber is in communication with the input end of the second chamber, such that the first chamber is in communication with the second chamber to form a continuous material channel. The heating device is arranged in the crystallization compartment and configured for heating crystallization of the material in the second chamber.Type: ApplicationFiled: January 14, 2025Publication date: December 4, 2025Inventors: Guodong Chen, Zhaohui Liu, Shuojian Su, Weile Lin, Changsong Chen, Bao Tu, Yongsheng Guo, Xiangling Lin
-
Patent number: 12426403Abstract: The present application relates to a solar cell and a method for preparing the same, a photovoltaic module, and a power consuming device. The solar cell may have a plurality of sub-cells, each of the plurality of sub-cells including a first electrode layer, a photovoltaic conversion module, and a second electrode layer that may be sequentially stacked along a thickness direction of the sub-cell, the second electrode layer including a main body portion and a connection portion electrically connected to the main body portion, and the connection portion of one of the plurality of sub-cells being configured to be electrically connected to the first electrode layer of another sub-cell, such that the plurality of sub-cells may be electrically connected, where a thickness of the main body portion may be greater than that of the connection portion.Type: GrantFiled: June 9, 2023Date of Patent: September 23, 2025Assignee: CONTEMPORARY AMPEREX TECHNOLOGY (HONG KONG) LIMITEDInventors: Yanfen Wang, Shuojian Su, Yandong Wang, Weile Lin, Hanfang Li, Xiangling Lin, Changmao Wang, Guodong Chen, Yongsheng Guo
-
Patent number: 12159949Abstract: A method for forming a hole transport layer on a surface of a substrate includes providing M target materials comprising inorganic hole transport materials and forming the hole transport layer on the surface of the substrate using magnetron sputtering. The hold transport layer at least comprises N consecutive sub-layers. M and N are integers and 2?N?M. One of the M target materials is a doped target material further comprising a doping material.Type: GrantFiled: May 23, 2023Date of Patent: December 3, 2024Assignee: CONTEMPORARY AMPEREX TECHNOLOGY (HONG KONG) LIMITEDInventors: Guodong Chen, Yongsheng Guo, Weile Lin, Yandong Wang, Zhaohui Liu
-
Publication number: 20240213385Abstract: A solar cell includes a plurality of sub-cells. The plurality of sub-cells are disposed sequentially along a first direction. The plurality of sub-cells each include a first photovoltaic conversion layer for performing photovoltaic conversion. The first direction is perpendicular to a thickness direction of the sub-cells. Along the first direction, a trend of change in a thickness of the first photovoltaic conversion layer of each sub-cell is negatively correlated to a trend of change in a cross-sectional area, perpendicular to the thickness direction, of each first photovoltaic conversion layer, so as to improve uniformity of photocurrents output by the sub-cells and uniformity of electrical current.Type: ApplicationFiled: March 12, 2024Publication date: June 27, 2024Inventors: Guodong CHEN, Zhaohui LIU, Weile LIN, Wenming GUO, Yongsheng GUO, Yandong WANG, Shuojian SU, Yanfen WANG, Chuying OUYANG
-
Publication number: 20240186438Abstract: This application relates to a solar cell and a manufacturing method thereof, a photovoltaic module, and an electrical device. The solar cell includes: a plurality of sub-cells, where the plurality of sub-cells are electrically connected to each other; a dead zone, disposed between two adjacent sub-cells; a reflection portion, disposed on at least a part of surfaces of the dead zone, and configured to reflect incident light radiated on the dead zone; a packaging component, disposed on a side of the reflection portion away from the dead zone, and configured to reflect the incident light, which is reflected by the reflection portion, to a surface of the sub-cell to convert the incident light into electrical energy.Type: ApplicationFiled: February 15, 2024Publication date: June 6, 2024Applicant: CONTEMPORARY AMPEREX TECHNOLOGY CO., LIMITEDInventors: Guodong CHEN, Weile LIN, Zhaohui LIU, Yandong WANG, Wenming GUO, Yongsheng GUO, Shuojian SU, Changsong CHEN, Chuying OUYANG
-
Publication number: 20230371290Abstract: This application provides a perovskite solar cell structurally including a transparent electrode, an electron transport layer, a perovskite layer, a hole transport layer and a second electrode in sequence, where the perovskite layer may include a main perovskite layer and a one-dimensional perovskite coating layer covering surface and periphery of the main perovskite layer, where the one-dimensional perovskite coating layer may include: a first overlay layer disposed between the main perovskite layer and the electron transport layer; and a second overlay layer disposed between the main perovskite layer and the hole transport layer.Type: ApplicationFiled: July 20, 2023Publication date: November 16, 2023Applicant: CONTEMPORARY AMPEREX TECHNOLOGY CO., LIMITEDInventors: Changsong CHEN, Zhaohui LIU, Weile LIN, Xiangling LIN, Weifeng LIANG, Bao TU, Guodong CHEN, Yongsheng GUO
-
Publication number: 20230317862Abstract: The present application relates to a solar cell and a method for preparing the same, a photovoltaic module, and a power consuming device. The solar cell may have a plurality of sub-cells, each of the plurality of sub-cells including a first electrode layer, a photovoltaic conversion module, and a second electrode layer that may be sequentially stacked along a thickness direction of the sub-cell, the second electrode layer including a main body portion and a connection portion electrically connected to the main body portion, and the connection portion of one of the plurality of sub-cells being configured to be electrically connected to the first electrode layer of another sub-cell, such that the plurality of sub-cells may be electrically connected, where a thickness of the main body portion may be greater than that of the connection portion.Type: ApplicationFiled: June 9, 2023Publication date: October 5, 2023Applicant: CONTEMPORARY AMPEREX TECHNOLOGY CO., LIMITEDInventors: Yanfen WANG, Shuojian SU, Yandong WANG, Weile LIN, Hanfang LI, Xiangling LIN, Changmao WANG, Guodong CHEN, Yongsheng GUO
-
Publication number: 20230317868Abstract: The present application relates to a solar cell and a method for preparing the same, a photovoltaic module, and a power consuming device. The solar cell includes a substrate and a plurality of sub-cells connected in series on the substrate, the plurality of sub-cells being sequentially disposed along a first direction, where the first direction is parallel to an outline trajectory of the substrate. According to the solar cell in embodiments of the present application, photovoltaic conversion efficiency of the solar cell can be improved.Type: ApplicationFiled: June 7, 2023Publication date: October 5, 2023Applicant: CONTEMPORARY AMPEREX TECHNOLOGY CO., LIMITEDInventors: Yanfen WANG, Zhaohui LIU, Yandong WANG, Shuojian SU, Tianlong WU, Weile LIN, Guodong CHEN, Yongsheng GUO
-
Publication number: 20230299218Abstract: A method for forming a hole transport layer on a surface of a substrate includes providing M target materials comprising inorganic hole transport materials and forming the hole transport layer on the surface of the substrate using magnetron sputtering. The hold transport layer at least comprises N consecutive sub-layers. M and N are integers and 2?N?M. One of the M target materials is a doped target material further comprising a doping material.Type: ApplicationFiled: May 23, 2023Publication date: September 21, 2023Inventors: Guodong CHEN, Yongsheng GUO, Weile LIN, Yandong WANG, Zhaohui LIU
-
Publication number: 20230301123Abstract: A method for preparing a perovskite cell with multiple hole transport layers is described. The method includes a process of forming the multiple hole transport layers, where the process of forming the multiple hole transport layers includes the following steps: (1) sputtering a nickel oxide target material in a first atmosphere to form a first hole transport layer, where the first atmosphere contains argon and oxygen, and a volume ratio of the argon to the oxygen is approximately 0:1 to 1.5: 1; (2) performing annealing treatment on the first hole transport layer; and (3) sputtering the nickel oxide target material onto the first hole transport layer subjected to the annealing treatment in a second atmosphere to form a second hole transport layer, where the second atmosphere contains argon-containing gas and oxygen. A perovskite cell (100) with multiple hole transport layers prepared by using the above method is described.Type: ApplicationFiled: May 12, 2023Publication date: September 21, 2023Applicant: CONTEMPORARY AMPEREX TECHNOLOGY CO., LIMITEDInventors: Yandong WANG, Guodong CHEN, Weile LIN, Zhaohui LIU, Shuojian SU, Yongsheng GUO
-
Publication number: 20230235448Abstract: A doped nickel oxide target includes a nickel oxide substrate and a dopant doped therein. The dopant includes at least one compound that contains one or more elements of Cu, Ca, Cr, Sn, Hg, Pb, Mg, Mn, Ag, Co, and Pr.Type: ApplicationFiled: March 30, 2023Publication date: July 27, 2023Inventors: Guodong CHEN, Weile LIN, Zhaohui LIU, Yongsheng GUO, Yandong WANG