Patents by Inventor Yi-Ying Liu

Yi-Ying Liu 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: 11581259
    Abstract: The present disclosure describes a method for the fabrication of ruthenium conductive structures over cobalt conductive structures. In some embodiments, the method includes forming a first opening in a dielectric layer to expose a first cobalt contact and filling the first opening with ruthenium metal to form a ruthenium contact on the first cobalt contact. The method also includes forming a second opening in the dielectric layer to expose a second cobalt contact and a gate structure and filling the second opening with tungsten to form a tungsten contact on the second cobalt contact and the gate structure. Further, the method includes forming a copper conductive structure on the ruthenium contact and the tungsten contact, where the copper from the copper conductive structure is in contact with the ruthenium metal from the ruthenium contact.
    Type: Grant
    Filed: November 17, 2020
    Date of Patent: February 14, 2023
    Assignee: Taiwan Semiconductor Manufacturing Co., Ltd.
    Inventors: Cheng-Wei Chang, Chien-Shun Liao, Sung-Li Wang, Shuen-Shin Liang, Shu-Lan Chang, Yi-Ying Liu, Chia-Hung Chu, Hsu-Kai Chang
  • Patent number: 11563083
    Abstract: A semiconductor device with dual side source/drain (S/D) contact structures and methods of fabricating the same are disclosed. The semiconductor device includes first and second S/D regions, a nanostructured channel region disposed between the first and second S/D regions, a gate structure surrounding the nanostructured channel region, first and second contact structures disposed on first surfaces of the first and second S/D regions, a third contact structure disposed on a second surface of the first S/D region, and an etch stop layer disposed on a second surface of the second S/D region. The third contact structure includes a metal silicide layer, a silicide nitride layer disposed on the metal silicide layer, and a conductive layer disposed on the silicide nitride layer.
    Type: Grant
    Filed: January 29, 2021
    Date of Patent: January 24, 2023
    Assignee: Taiwan Semiconductor Manufacturing Co., Ltd.
    Inventors: Cheng-Wei Chang, Shuen-Shin Liang, Sung-Li Wang, Hsu-Kai Chang, Chia-Hung Chu, Chien-Shun Liao, Yi-Ying Liu
  • Publication number: 20230016515
    Abstract: The present disclosure describes a method for the fabrication of ruthenium conductive structures over cobalt conductive structures. In some embodiments, the method includes forming a first opening in a dielectric layer to expose a first cobalt contact and filling the first opening with ruthenium metal to form a ruthenium contact on the first cobalt contact. The method also includes forming a second opening in the dielectric layer to expose a second cobalt contact and a gate structure and filling the second opening with tungsten to form a tungsten contact on the second cobalt contact and the gate structure. Further, the method includes forming a copper conductive structure on the ruthenium contact and the tungsten contact, where the copper from the copper conductive structure is in contact with the ruthenium metal from the ruthenium contact.
    Type: Application
    Filed: July 28, 2022
    Publication date: January 19, 2023
    Applicant: Taiwan Semiconductor Manufacturing Co., Ltd.
    Inventors: Cheng-Wei Chang, Chien-Shun Liao, Sung-Li Wang, Shuen-Shin Liang, Shu-Lan Chang, Yi-Ying Liu, Chia-Hung Chu, Hsu-Kai Chang
  • Publication number: 20230009981
    Abstract: A titanium precursor is used to selectively form a titanium silicide (TiSix) layer in a semiconductor device. A plasma-based deposition operation is performed in which the titanium precursor is provided into an opening, and a reactant gas and a plasma are used to cause silicon to diffuse to a top surface of a transistor structure. The diffusion of silicon results in the formation of a silicon-rich surface of the transistor structure, which increases the selectivity of the titanium silicide formation relative to other materials of the semiconductor device. The titanium precursor reacts with the silicon-rich surface to form the titanium silicide layer. The selective titanium silicide layer formation results in the formation of a titanium silicon nitride (TiSixNy) on the sidewalls in the opening, which enables a conductive structure such as a metal source/drain contact to be formed in the opening without the addition of another barrier layer.
    Type: Application
    Filed: February 16, 2022
    Publication date: January 12, 2023
    Inventors: Cheng-Wei CHANG, Chia-Hung CHU, Hsu-Kai CHANG, Sung-Li WANG, Kuan-Kan HU, Shuen-Shin LIANG, Kao-Feng LIN, Hung Pin LU, Yi-Ying LIU, Chuan-Hui SHEN
  • Publication number: 20220375868
    Abstract: A semiconductor device includes a gate electrode, a source/drain structure, a lower contact contacting either of the gate electrode or the source/drain structure, and an upper contact disposed in an opening formed in an interlayer dielectric (ILD) layer and in direct contact with the lower contact. The upper contact is in direct contact with the ILD layer without an interposing conductive barrier layer, and the upper contact includes ruthenium.
    Type: Application
    Filed: July 27, 2022
    Publication date: November 24, 2022
    Inventors: Cheng-Wei CHANG, Chia-Hung CHU, Kao-Feng LIN, Hsu-Kai CHANG, Shuen-Shin LIANG, Sung-Li WANG, Yi-Ying LIU, Po-Nan YEH, Yu Shih WANG, U-Ting CHIU, Chun-Neng LIN, Ming-Hsi YEH
  • Publication number: 20220367348
    Abstract: In some embodiments, the present disclosure relates to an integrated circuit device. A transistor structure includes a gate electrode separated from a substrate by a gate dielectric and a pair of source/drain regions disposed within the substrate on opposite sides of the gate electrode. A lower conductive plug is disposed through a lower inter-layer dielectric (ILD) layer and contacting a first source/drain region. A capping layer is disposed directly on the lower conductive plug. An upper inter-layer dielectric (ILD) layer is disposed over the capping layer and the lower ILD layer. An upper conductive plug is disposed through the upper ILD layer and directly on the capping layer.
    Type: Application
    Filed: July 28, 2022
    Publication date: November 17, 2022
    Inventors: Cheng-Wei Chang, Sung-Li Wang, Yi-Ying Liu, Chia-Hung Chu, Fang-Wei Lee
  • Publication number: 20220367660
    Abstract: The present disclosure describes a method for forming metallization layers that include a ruthenium metal liner and a cobalt metal fill. The method includes depositing a first dielectric on a substrate having a gate structure and source/drain (S/D) structures, forming an opening in the first dielectric to expose the S/D structures, and depositing a ruthenium metal on bottom and sidewall surfaces of the opening. The method further includes depositing a cobalt metal on the ruthenium metal to fill the opening, reflowing the cobalt metal, and planarizing the cobalt and ruthenium metals to form S/D conductive structures with a top surface coplanar with a top surface of the first dielectric.
    Type: Application
    Filed: May 14, 2021
    Publication date: November 17, 2022
    Applicant: Taiwan Semiconductor Manufacturing Co., Ltd.
    Inventors: Shuen-Shin Liang, Chih-Chien Chi, Chien-Shun Liao, Keng-Chu Lin, Kai-Ting Huang, Sung-Li Wang, Yi-Ying Liu, Chia-Hung Chu, Hsu-Kai Chang, Cheng-Wei Chang
  • Patent number: 11462471
    Abstract: In some embodiments, the present disclosure relates to an integrated circuit device. A transistor structure includes a gate electrode separated from a substrate by a gate dielectric and a pair of source/drain regions disposed within the substrate on opposite sides of the gate electrode. A lower conductive plug is disposed through a lower inter-layer dielectric (ILD) layer and contacting a first source/drain region. A capping layer is disposed directly on the lower conductive plug. An upper inter-layer dielectric (ILD) layer is disposed over the capping layer and the lower ILD layer. An upper conductive plug is disposed through the upper ILD layer and directly on the capping layer.
    Type: Grant
    Filed: April 9, 2020
    Date of Patent: October 4, 2022
    Assignee: Taiwan Semiconductor Manufacturing Company, Ltd.
    Inventors: Cheng-Wei Chang, Sung-Li Wang, Yi-Ying Liu, Chia-Hung Chu, Fang-Wei Lee
  • Publication number: 20220301858
    Abstract: A method of forming a semiconductor device includes forming a first conductive feature on a bottom surface of an opening through a dielectric layer. The forming the first conductive feature leaves seeds on sidewalls of the opening. A treatment process is performed on the seeds to form treated seeds. The treated seeds are removed with a cleaning process. The cleaning process may include a rinse with deionized water. A second conductive feature is formed to fill the opening.
    Type: Application
    Filed: March 18, 2021
    Publication date: September 22, 2022
    Inventors: Cheng-Wei Chang, Min-Hsiu Hung, Chun-I Tsai, Ken-Yu Chang, Yi-Ying Liu
  • Patent number: 11424185
    Abstract: A semiconductor device includes a gate electrode, a source/drain structure, a lower contact contacting either of the gate electrode or the source/drain structure, and an upper contact disposed in an opening formed in an interlayer dielectric (ILD) layer and in direct contact with the lower contact. The upper contact is in direct contact with the ILD layer without an interposing conductive barrier layer, and the upper contact includes ruthenium.
    Type: Grant
    Filed: July 31, 2020
    Date of Patent: August 23, 2022
    Assignee: TAIWAN SEMICONDUCTOR MANUFACTURING CO., LTD.
    Inventors: Cheng-Wei Chang, Chia-Hung Chu, Kao-Feng Lin, Hsu-Kai Chang, Shuen-Shin Liang, Sung-Li Wang, Yi-Ying Liu, Po-Nan Yeh, Yu Shih Wang, U-Ting Chiu, Chun-Neng Lin, Ming-Hsi Yeh
  • Publication number: 20220189825
    Abstract: A semiconductor device includes a substrate, two semiconductor fins protruding from the substrate, an epitaxial feature over the two semiconductor fins and connected to the two semiconductor fins, a silicide layer over the epitaxial feature, a barrier layer over the silicide layer, and a metal layer over the barrier layer. The barrier layer includes a metal nitride. Along a boundary between the barrier layer and the metal layer, an atomic ratio of oxygen to metal nitride is about 0.15 to about 1.0.
    Type: Application
    Filed: February 21, 2022
    Publication date: June 16, 2022
    Inventors: Cheng-Wei Chang, Yu-Ming Huang, Ethan Tseng, Ken-Yu Chang, Yi-Ying Liu
  • Patent number: 11257712
    Abstract: A method includes providing a structure that includes a semiconductor substrate, an epitaxial source/drain feature over the semiconductor substrate, and one or more dielectric layers over the epitaxial source/drain feature; etching a hole into the one or more dielectric layer to expose a portion of the epitaxial source/drain feature; forming a silicide layer over the portion of the epitaxial source/drain feature; forming a conductive barrier layer over the silicide layer; and applying a plasma cleaning process to at least the conductive barrier layer, wherein the plasma cleaning process uses a gas mixture including N2 gas and H2 gas and is performed at a temperature that is at least 300° C.
    Type: Grant
    Filed: May 13, 2020
    Date of Patent: February 22, 2022
    Assignee: TAIWAN SEMICONDUCTOR MANUFACTURING CO., LTD.
    Inventors: Cheng-Wei Chang, Yu-Ming Huang, Ethan Tseng, Ken-Yu Chang, Yi-Ying Liu
  • Publication number: 20220052157
    Abstract: A semiconductor device with dual side source/drain (S/D) contact structures and methods of fabricating the same are disclosed. The semiconductor device includes first and second S/D regions, a nanostructured channel region disposed between the first and second S/D regions, a gate structure surrounding the nanostructured channel region, first and second contact structures disposed on first surfaces of the first and second S/D regions, a third contact structure disposed on a second surface of the first S/D region, and an etch stop layer disposed on a second surface of the second S/D region. The third contact structure includes a metal silicide layer, a silicide nitride layer disposed on the metal silicide layer, and a conductive layer disposed on the silicide nitride layer.
    Type: Application
    Filed: January 29, 2021
    Publication date: February 17, 2022
    Applicant: Taiwan Semiconductor Manufacturing Co., Ltd.
    Inventors: Cheng-Wei CHANG, Shuen-Shin Liang, Sung-Li Wang, Hsu-Kai Chang, Chia-Hung Chu, Chien-Shun Liao, Yi-Ying Liu
  • Publication number: 20220052168
    Abstract: A method according to the present disclosure includes receiving a workpiece including a gate structure, a first source/drain (S/D) feature, a second S/D feature, a first dielectric layer over the gate structure, the first S/D feature, the second S/D feature, a first S/D contact over the first S/D feature, a second S/D contact over the second S/D feature, a first etch stop layer (ESL) over the first dielectric layer, and a second dielectric layer over the first ESL, forming a S/D contact via through the second dielectric layer and the first ESL to couple to the first S/D contact, forming a gate contact opening through the second dielectric layer, the first ESL, and the first dielectric layer to expose the gate structure, and forming a common rail opening adjoining the gate contact opening to expose the second S/D contact, and forming a common rail contact in the common rail opening.
    Type: Application
    Filed: December 4, 2020
    Publication date: February 17, 2022
    Inventors: Cheng-Wei Chang, Hong-Ming Wu, Chen-Yuan Kao, Li-Hsiang Chao, Yi-Ying Liu
  • Publication number: 20210407925
    Abstract: The present disclosure describes a method for the fabrication of ruthenium conductive structures over cobalt conductive structures. In some embodiments, the method includes forming a first opening in a dielectric layer to expose a first cobalt contact and filling the first opening with ruthenium metal to form a ruthenium contact on the first cobalt contact. The method also includes forming a second opening in the dielectric layer to expose a second cobalt contact and a gate structure and filling the second opening with tungsten to form a tungsten contact on the second cobalt contact and the gate structure. Further, the method includes forming a copper conductive structure on the ruthenium contact and the tungsten contact, where the copper from the copper conductive structure is in contact with the ruthenium metal from the ruthenium contact.
    Type: Application
    Filed: November 17, 2020
    Publication date: December 30, 2021
    Applicant: Taiwan Semiconductor Manufacturing Co., Ltd.
    Inventors: Cheng-Wei CHANG, Chien-Shun LIAO, Sung-Li WANG, Shuen-Shin LIANG, Shu-Lan CHANG, Yi-Ying LIU, Chia-Hung CHU, Hsu-Kai CHANG
  • Publication number: 20210358804
    Abstract: A method includes providing a structure that includes a semiconductor substrate, an epitaxial source/drain feature over the semiconductor substrate, and one or more dielectric layers over the epitaxial source/drain feature; etching a hole into the one or more dielectric layer to expose a portion of the epitaxial source/drain feature; forming a silicide layer over the portion of the epitaxial source/drain feature; forming a conductive barrier layer over the silicide layer; and applying a plasma cleaning process to at least the conductive barrier layer, wherein the plasma cleaning process uses a gas mixture including N2 gas and H2 gas and is performed at a temperature that is at least 300° C.
    Type: Application
    Filed: May 13, 2020
    Publication date: November 18, 2021
    Inventors: Cheng-Wei Chang, Yu-Ming Huang, Ethan Tseng, Ken-Yu Chang, Yi-Ying Liu
  • Publication number: 20210202399
    Abstract: A semiconductor device includes a gate electrode, a source/drain structure, a lower contact contacting either of the gate electrode or the source/drain structure, and an upper contact disposed in an opening formed in an interlayer dielectric (ILD) layer and in direct contact with the lower contact. The upper contact is in direct contact with the ILD layer without an interposing conductive barrier layer, and the upper contact includes ruthenium.
    Type: Application
    Filed: July 31, 2020
    Publication date: July 1, 2021
    Inventors: Cheng-Wei CHANG, Chia-Hung CHU, Kao-Feng LIN, Hsu-Kai CHANG, Shuen-Shin LIANG, Sung-Li WANG, Yi-Ying LIU, Po-Nan YEH, Yu Shih WANG, U-Ting CHIU, Chun-Neng LIN, Ming-Hsi YEH
  • Publication number: 20210098366
    Abstract: In some embodiments, the present disclosure relates to an integrated circuit device. A transistor structure includes a gate electrode separated from a substrate by a gate dielectric and a pair of source/drain regions disposed within the substrate on opposite sides of the gate electrode. A lower conductive plug is disposed through a lower inter-layer dielectric (ILD) layer and contacting a first source/drain region. A capping layer is disposed directly on the lower conductive plug. An upper inter-layer dielectric (ILD) layer is disposed over the capping layer and the lower ILD layer. An upper conductive plug is disposed through the upper ILD layer and directly on the capping layer.
    Type: Application
    Filed: April 9, 2020
    Publication date: April 1, 2021
    Inventors: Cheng-Wei Chang, Sung-Li Wang, Yi-Ying Liu, Chia-Hung Chu, Fang-Wei Lee
  • Patent number: 10269926
    Abstract: A method includes placing a wafer in a wafer holder, placing the wafer holder on a loadport of a deposition tool, connecting the wafer holder to a front-end interface unit of the deposition tool, purging the front-end interface unit with nitrogen, and depositing a metal layer on the wafer in the deposition tool.
    Type: Grant
    Filed: August 24, 2016
    Date of Patent: April 23, 2019
    Assignee: Taiwan Semiconductor Manufacturing Company, Ltd.
    Inventors: Yi-Ying Liu, Chun-Wen Nieh, Yu-Sheng Wang, Yu-Ting Lin, Wei-Yu Chen
  • Publication number: 20180061959
    Abstract: A method includes placing a wafer in a wafer holder, placing the wafer holder on a loadport of a deposition tool, connecting the wafer holder to a front-end interface unit of the deposition tool, purging the front-end interface unit with nitrogen, and depositing a metal layer on the wafer in the deposition tool.
    Type: Application
    Filed: August 24, 2016
    Publication date: March 1, 2018
    Inventors: Yi-Ying Liu, Chun-Wen Nieh, Yu-Sheng Wang, Yu-Ting Lin, Wei-Yu Chen