Patents by Inventor Joo-Hong Jin

Joo-Hong Jin 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: 20240120459
    Abstract: A method of preparing a positive electrode active material having a high ratio of charge and discharge capacity at a charge end voltage of 4.1 V to 4.175 V to charge and discharge capacity at a charge end voltage of 4.2 V to 4.275 V and having an excellent initial charge and discharge capacity is provided.
    Type: Application
    Filed: November 24, 2022
    Publication date: April 11, 2024
    Applicant: LG Chem, Ltd.
    Inventors: Min Kyu You, Sun Sik Shin, Joo Hong Jin, June Woo Lee, Ji A Shin, Min Joo Park
  • Patent number: 11367871
    Abstract: The present invention provides a positive electrode active material for a secondary battery which includes a lithium transition metal oxide, wherein the positive electrode active material has three peaks in a differential graph (ERC curve) obtained by differentiating a pH value against an amount of acid (HCl) added, which is obtained by pH titration of 10 g of the lithium transition metal oxide using 0.5 M HCl, wherein a y-axis (dpH/dml) value of a first peak at the smallest x-axis value among the three peaks is ?1.0 or less.
    Type: Grant
    Filed: September 19, 2018
    Date of Patent: June 21, 2022
    Inventors: In Seong Ju, Wang Mo Jung, Byung Chun Park, Joo Hong Jin, Ju Kyung Shin, Ji Hye Kim, So Ra Baek, Tae Gu Yoo
  • Publication number: 20220140320
    Abstract: A positive electrode includes: a positive electrode active material layer formed on a surface of a positive electrode current collector, including two types of positive electrode active materials with different average particle diameters (D50), a conductive material, and a binder; and a carbon nanotube coating layer formed on a surface of the positive electrode active material layer, including carbon nanotubes and a binder: The two types of positive electrode active materials include first positive electrode active material particles which have an average particle diameter (D50) of 8 ?m to 20 ?m and second positive electrode active material particles in the form of a single particle which have a smaller average particle diameter (D50) than the average particle diameter (D50) of the first positive electrode active material particles, and the positive electrode active material layer and the carbon nanotube coating layer are formed in a thickness ratio of 90:10 to 99:1.
    Type: Application
    Filed: August 11, 2020
    Publication date: May 5, 2022
    Applicant: LG Chem, Ltd.
    Inventors: Joo Hong Jin, Min Kyu You, Sun Sik Shin, Kyung Lok Lee, Ji A Shin
  • Publication number: 20220131155
    Abstract: A positive electrode includes: a positive electrode active material layer formed on a surface of a positive electrode current collector, including two types of positive electrode active materials with different average particle diameters (D50), a conductive material, and a binder; and a carbon-based coating layer formed on a surface of the positive electrode active material layer. The two types of positive electrode active materials are each represented by Chemical Formula 1 below. The carbon-based coating layer includes a sphere-type conductive material and a binder, where the binder is included in an amount of 5 parts by weight or more and less than 10 parts by weight with respect to 100 parts by weight of the carbon-based coating layer. Li1+aNixCoyMzO2 ??[Chemical Formula 1] In Chemical Formula 1, 0?a?0.5, 0<x<1, 0<y<1, 0<z<1, and M is at least one of Mn and Al.
    Type: Application
    Filed: August 11, 2020
    Publication date: April 28, 2022
    Applicant: LG Chem, Ltd.
    Inventors: Joo Hong Jin, Min Kyu You, Sun Sik Shin, Kyung Lok Lee, Ji A Shin
  • Patent number: 10608251
    Abstract: The present disclosure relates to a positive electrode active material which reduces lithium by-products and improves structural stability and includes a lithium-nickel based transition metal composite oxide in which an alkaline earth metal having oxidation number of +2 is doped and a phosphate coated layer formed on the outer surface of the composite oxide. Accordingly, a second battery including the positive electrode active material has excellent capacity characteristics, and also improves structural stability during charging/discharging and prevents swelling, thereby being capable of exhibiting excellent life characteristics. Therefore, the present invention may be easily applied to industry in need thereof, and particularly to electric vehicles industry requiring high capacity and long-term life characteristics.
    Type: Grant
    Filed: February 26, 2015
    Date of Patent: March 31, 2020
    Assignee: LG Chem, Ltd.
    Inventors: Jin Hyung Lim, Ho Suk Shin, Dong Hun Lee, Hyun Jin Oh, Joo Hong Jin, Wang Mo Jung
  • Publication number: 20200028168
    Abstract: The present invention provides a positive electrode active material for a secondary battery which includes a lithium transition metal oxide, wherein the positive electrode active material has three peaks in a differential graph (ERC curve) obtained by differentiating a pH value against an amount of acid (HCl) added, which is obtained by pH titration of 10 g of the lithium transition metal oxide using 0.5 M HCl, wherein a y-axis (dpH/dml) value of a first peak at the smallest x-axis value among the three peaks is ?1.0 or less.
    Type: Application
    Filed: September 19, 2018
    Publication date: January 23, 2020
    Applicant: LG Chem, Ltd.
    Inventors: In Seong Ju, Wang Mo Jung, Byung Chun Park, Joo Hong Jin, Ju Kyung Shin, Ji Hye Kim, So Ra Baek, Tae Gu Yoo
  • Patent number: 10529985
    Abstract: Provided are a method of preparing a cathode active material including coating a surface of a lithium transition metal oxide with a lithium boron oxide by dry mixing the lithium transition metal oxide and a boron-containing compound and performing a heat treatment, and a cathode active material prepared thereby. A method of preparing a cathode active material according to an embodiment of the present invention may easily transform lithium impurities present in a lithium transition metal oxide into a structurally stable lithium boron oxide by performing a heat treatment near the melting point of a boron-containing compound. Also, a coating layer may be formed in which the lithium boron oxide is uniformly coated in an amount proportional to the used amount of the boron-containing compound even at a low heat treatment temperature.
    Type: Grant
    Filed: August 8, 2018
    Date of Patent: January 7, 2020
    Assignee: LG Chem, Ltd.
    Inventors: Hyun Jin Oh, Ho Suk Shin, Jin Hyung Lim, Dong Hun Lee, Joo Hong Jin, Wang Mo Jung
  • Patent number: 10243208
    Abstract: Disclosed are a precursor of an electrode active material for a lithium secondary battery, in which a metal material ionizable through electrolytic decomposition is uniformly coated on a surface of a primary precursor formed of a transition metal hydrate, and a method of preparing the same.
    Type: Grant
    Filed: November 26, 2013
    Date of Patent: March 26, 2019
    Assignee: LG Chem, Ltd.
    Inventors: Dae Jin Lee, Joo Hong Jin, Woo Yeon Kong, Sun Sik Shin, Wang Mo Jung
  • Publication number: 20180351169
    Abstract: Provided are a method of preparing a cathode active material including coating a surface of a lithium transition metal oxide with a lithium boron oxide by dry mixing the lithium transition metal oxide and a boron-containing compound and performing a heat treatment, and a cathode active material prepared thereby. A method of preparing a cathode active material according to an embodiment of the present invention may easily transform lithium impurities present in a lithium transition metal oxide into a structurally stable lithium boron oxide by performing a heat treatment near the melting point of a boron-containing compound. Also, a coating layer may be formed in which the lithium boron oxide is uniformly coated in an amount proportional to the used amount of the boron-containing compound even at a low heat treatment temperature.
    Type: Application
    Filed: August 8, 2018
    Publication date: December 6, 2018
    Applicant: LG Chem, Ltd.
    Inventors: Hyun Jin Oh, Ho Suk Shin, Jin Hyung Lim, Dong Hun Lee, Joo Hong Jin, Wang Mo Jung
  • Patent number: 10090522
    Abstract: Provided herein is a precursor of a transition metal oxide, including a core unit and a shell unit, wherein the core unit includes a compound of chemical formula 1 below, and the shell unit includes a compound of chemical formula 2 below.
    Type: Grant
    Filed: November 2, 2015
    Date of Patent: October 2, 2018
    Assignee: LG Chem, Ltd.
    Inventors: Ho-Suk Shin, Byung-Chun Park, Sang-Min Park, Joo-Hong Jin
  • Patent number: 10056605
    Abstract: Provided are a method of preparing a cathode active material including coating a surface of a lithium transition metal oxide with a lithium boron oxide by dry mixing the lithium transition metal oxide and a boron-containing compound and performing a heat treatment, and a cathode active material prepared thereby. A method of preparing a cathode active material according to an embodiment of the present invention may easily transform lithium impurities present in a lithium transition metal oxide into a structurally stable lithium boron oxide by performing a heat treatment near the melting point of a boron-containing compound. Also, a coating layer may be formed in which the lithium boron oxide is uniformly coated in an amount proportional to the used amount of the boron-containing compound even at a low heat treatment temperature.
    Type: Grant
    Filed: October 29, 2014
    Date of Patent: August 21, 2018
    Assignee: LG Chem, Ltd.
    Inventors: Hyun Jin Oh, Ho Suk Shin, Jin Hyung Lim, Dong Hun Lee, Joo Hong Jin, Wang Mo Jung
  • Publication number: 20180183046
    Abstract: Provided are a positive electrode active material having a concentration gradient in which concentrations of nickel and manganese are gradually changed from a center of a particle to a surface thereof, and a peak appears at 235° C. or more when heat flow of the positive electrode active material is measured by differential scanning calorimetry, a method of preparing the positive electrode active material, and a lithium secondary battery including the positive electrode active material.
    Type: Application
    Filed: December 27, 2017
    Publication date: June 28, 2018
    Applicant: LG Chem, Ltd.
    Inventors: Joo Hong Jin, Ju Kyung Shin, In Seong Ju, Wang Mo Jung, Byung Chun Park
  • Patent number: 9905841
    Abstract: Disclosed are a cathode active material and a lithium secondary battery including the same, and a method of manufacturing the cathode active material, the method including: (a) manufacturing a lithium metal oxide according to formula 1 below: Li1+zNiaMnbCo1?(a+b)O2??(1) wherein 0?z?0.1, 0.1?a?0.8, 0.1?b?0.8 and a+b<1; (b) dry mixing the lithium metal oxide, and a precursor including zirconium and fluorine; and (c) changing the precursor including zirconium and fluorine into ZrO2 and substituting some of oxygen (O) anions with F by heat-treatment after dry mixing of step (b), wherein the cathode active material is coated with ZrO2 and F.
    Type: Grant
    Filed: August 6, 2014
    Date of Patent: February 27, 2018
    Assignee: LG Chem, Ltd.
    Inventors: Joo Hong Jin, Dae Jin Lee, Sun Sik Shin, Woo Yeon Kong, Wang Mo Jung
  • Publication number: 20170301916
    Abstract: Provided herein is a precursor of a transition metal oxide, including a core unit and a shell unit, wherein the core unit includes a compound of chemical formula 1 below, and the shell unit includes a compound of chemical formula 2 below.
    Type: Application
    Filed: November 2, 2015
    Publication date: October 19, 2017
    Applicant: LG Chem, Ltd.
    Inventors: Ho-Suk Shin, Byung-Chun Park, Sang-Min Park, Joo-Hong Jin
  • Patent number: 9776879
    Abstract: The present invention provides a method for treating the particle surface of a cathode active material for a lithium secondary battery, the method comprising (a) preparing a cathode active material having a lithium compound; (b) generating a plasma from a gas comprising at least one of a fluorine-containing gas and a phosphorus-containing gas as a part of a reactive gas; and (c) removing lithium impurities present on the particle surface of the cathode active material with the plasma. In accordance with the present invention, the amount of the lithium impurities present on the particle surface of the cathode active material can be reduced to suppress a side reaction of the lithium impurities and an electrolyte.
    Type: Grant
    Filed: October 10, 2013
    Date of Patent: October 3, 2017
    Assignee: LG Chem, Ltd.
    Inventors: Sung-Joong Kang, Hong-Kyu Park, Joo-Hong Jin, Dae-Jin Lee
  • Publication number: 20160293951
    Abstract: The present disclosure relates to a positive electrode active material which reduces lithium by-products and improves structural stability and includes a lithium-nickel based transition metal composite oxide in which an alkaline earth metal having oxidation number of +2 is doped and a phosphate coated layer formed on the outer surface of the composite oxide. Accordingly, a second battery including the positive electrode active material has excellent capacity characteristics, and also improves structural stability during charging/discharging and prevents swelling, thereby being capable of exhibiting excellent life characteristics. Therefore, the present invention may be easily applied to industry in need thereof, and particularly to electric vehicles industry requiring high capacity and long-term life characteristics.
    Type: Application
    Filed: February 26, 2015
    Publication date: October 6, 2016
    Applicant: LG Chem, Ltd.
    Inventors: Jin Hyung Lim, Ho Suk Shin, Dong Hun Lee, Hyun Jin Oh, Joo Hong Jin, Wang Mo Jung
  • Publication number: 20160181593
    Abstract: Disclosed are a cathode active material and a lithium secondary battery including the same, and a method of manufacturing the cathode active material, the method including: (a) manufacturing a lithium metal oxide according to formula 1 below: Li1+zNiaMnbCo1?(a+b)O2 ??(1) wherein 0?z?0.1, 0.1?a?0.8, 0.1?b?0.8 and a+b<1; (b) dry mixing the lithium metal oxide, and a precursor including zirconium and fluorine; and (c) changing the precursor including zirconium and fluorine into ZrO2 and substituting some of oxygen (O) anions with F by heat-treatment after dry mixing of step (b), wherein the cathode active material is coated with ZrO2 and F.
    Type: Application
    Filed: August 6, 2014
    Publication date: June 23, 2016
    Applicant: LG Chem, Ltd.
    Inventors: Joo Hong Jin, Dae Jin Lee, Sun Sik Shin, Woo Yeon Kong, Wang Mo Jung
  • Publication number: 20160013476
    Abstract: Provided are a method of preparing a cathode active material including coating a surface of a lithium transition metal oxide with a lithium boron oxide by dry mixing the lithium transition metal oxide and a boron-containing compound and performing a heat treatment, and a cathode active material prepared thereby. A method of preparing a cathode active material according to an embodiment of the present invention may easily transform lithium impurities present in a lithium transition metal oxide into a structurally stable lithium boron oxide by performing a heat treatment near the melting point of a boron-containing compound. Also, a coating layer may be formed in which the lithium boron oxide is uniformly coated in an amount proportional to the used amount of the boron-containing compound even at a low heat treatment temperature.
    Type: Application
    Filed: October 29, 2014
    Publication date: January 14, 2016
    Inventors: Hyun Jin Oh, Ho Suk Shin, Jin Hyung Lim, Dong Hun Lee, Joo Hong Jin, Wang Mo Jung
  • Publication number: 20150280225
    Abstract: Disclosed are a precursor of an electrode active material for a lithium secondary battery, in which a metal material ionizable through electrolytic decomposition is uniformly coated on a surface of a primary precursor formed of a transition metal hydrate, and a method of preparing the same.
    Type: Application
    Filed: November 26, 2013
    Publication date: October 1, 2015
    Applicant: LG CHEM, LTD.
    Inventors: Dae Jin Lee, Joo Hong Jin, Woo Yeon Kong, Sun Sik Shin, Wang Mo Jung
  • Publication number: 20140050656
    Abstract: The present invention provides a method for treating the particle surface of a cathode active material for a lithium secondary battery, the method comprising (a) preparing a cathode active material having a lithium compound; (b) generating a plasma from a gas comprising at least one of a fluorine-containing gas and a phosphorus-containing gas as a part of a reactive gas; and (c) removing lithium impurities present on the particle surface of the cathode active material with the plasma. In accordance with the present invention, the amount of the lithium impurities present on the particle surface of the cathode active material can be reduced to suppress a side reaction of the lithium impurities and an electrolyte.
    Type: Application
    Filed: October 10, 2013
    Publication date: February 20, 2014
    Applicant: LG CHEM, LTD.
    Inventors: Sung-Joong Kang, Hong-Kyu Park, Joo-Hong Jin, Dae-Jin Lee