Patents by Inventor Chil Seong Ah

Chil Seong Ah 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: 20100098966
    Abstract: The present invention relates to a process of preparing a nanogap electrode and a nanogap device using the same, and a preparing process according to the present invention is characterized in that reduced metal is grown by reduction reaction from a metal ion in solution on the surface of a metal pattern with a predetermined shape. A method of preparing a nanogap electrode according to the present invention has an advantage that nanogap electrodes having a gap distance of 1-100 nm, which are difficult to prepare by a conventional method, can be easily prepared in a reproducible and uniform manner.
    Type: Application
    Filed: August 3, 2006
    Publication date: April 22, 2010
    Inventors: Chil Seong Ah, Yong Ju Yun, Jun Sung Lee, Hyung Ju Park, Dong Han Ha, Wan Soo Yun
  • Publication number: 20100090197
    Abstract: Provided are a method of manufacturing a semiconductor nanowire sensor device and a semiconductor nanowire sensor device manufactured according to the method. The method includes preparing a first conductive type single crystal semiconductor substrate, forming a line-shaped first conductive type single crystal pattern from the first conductive type single crystal semiconductor substrate, forming second conductive type epitaxial patterns on both sidewalls of the first conductive type single crystal pattern, and forming source and drain electrodes at both ends of the second conductive type epitaxial patterns.
    Type: Application
    Filed: June 30, 2009
    Publication date: April 15, 2010
    Applicant: Electonics and Telecommunications Research Institute
    Inventors: Chan-Woo PARK, Chang-Geun AHN, Jong-Heon YANG, In-Bok BAEK, Chil-Seong AH, An-Soon KIM, Tae-Youb KIM, Gun-Yong SUNG, Seon-Hee PARK
  • Publication number: 20100090254
    Abstract: Provided is a biosensor which can detect a specific biomaterial by an interaction between target molecules and probe molecules, and a manufacturing method thereof. The biosensor includes: a first conductive semiconductor substrate; a second conductive doping layer formed on the semiconductor substrate; an electrode formed on top of both opposite ends of the doping layer; and probe molecules immobilized on the doping layer.
    Type: Application
    Filed: November 22, 2007
    Publication date: April 15, 2010
    Applicant: Electronics and Telecommunications Research Institute
    Inventors: Chang-Geun Ahn, Seongjae Lee, Jong-Heon Yang, In-Bok Baek, Han-Young Yu, Chil-Seong Ah, Ansoon Kim, Chan-Woo Park, Seon-Hee Park, Taehyoung Zyung
  • Publication number: 20100080932
    Abstract: Provided is a method for selectively functionalizing unmodified solid surface, not oxidized and nitrified, into an aldehyde group, and a method for immobilizing an active material such as bio material or functional material on the functionalized aldehyde solid surface through strong and stable chemical bonding. Differently from a conventional method immobilizing deoxyribonucleic acid (DNA) using a cross linker, the method of the present invention does not require a cross linker reaction step to thereby shorten a process. Also, since a cross linker is absent, the monomolecular layer on the surface of a device is thin, which reduces a perturbation effect by molecular layer. This is useful in fabrication of molecular electronic devices and bio-active devices.
    Type: Application
    Filed: May 14, 2007
    Publication date: April 1, 2010
    Applicant: Electronics and Telecommunications Research Institute
    Inventors: An-soon Kim, Han-Young Yu, In-Bok Baek, Jong-Heon Yang, Chang-Geun Ahn, Chan-Woo Park, Seong-Jae Lee, Chil-Seong Ah
  • Publication number: 20100050866
    Abstract: There are provided a nanowire filter, a method for manufacturing the same, a filtering apparatus having the same, and a method for removing material adsorbed on the nanowire filter. The filtering apparatus includes: a filter having a supporting member and a plurality of nanowires supported on the supporting member and arranged in a crystallized state; and a body into which the filter is inserted and secured, and which has an inlet for guiding an introduced fluid to the filter and an outlet for discharging the fluid filtered through the filter to the outside.
    Type: Application
    Filed: September 20, 2007
    Publication date: March 4, 2010
    Applicant: Electronics and Telecommunications Research Instiitute
    Inventors: Han-Young Yu, An-Soon Kim, Chil-Seong Ah, In-Bok Baek, Jong-Heon Yang, Chang-Geun Ahn, Seong-Jae Lee, Tae-Hyoung Zyung
  • Publication number: 20100013030
    Abstract: Provided is a biosensor with a three-dimensional multi-layered structure, a method for manufacturing the biosensor, and a biosensing apparatus including the biosensor. The biosensing apparatus includes: a chamber having an inlet through which a fluid containing a biomaterial enters and an outlet through which the fluid exits; and a plurality of biosensors inserted and fixed in the chamber. Each biosensor includes: a support unit having a fluid channel through which a fluid containing a biomaterial flows; and a sensing unit disposed on the support unit in such a way that the sensing unit is exposed three-dimensionally in the fluid channel of the support unit, the sensing unit being surface-treated with a reactive material that is to react with the biomaterial flowing through the fluid channel.
    Type: Application
    Filed: August 30, 2007
    Publication date: January 21, 2010
    Applicant: Electronics and Telecommunicatins Research Institute
    Inventors: Han-Young Yu, An-Soon Kim, Chil-Seong Ah, Jong-Heon Yang, In-Bok Baek, Chang-Geun Ahn, Seong-Jae Lee, Jin-Ho Yun
  • Publication number: 20100015718
    Abstract: Provided are a substrate for analyzing the coverage of self-assembled molecules and a method for analyzing the coverage of the self-assembled molecules in nanowire and nanochannel patterned on solid surface, solid surface, or bulk solid surface by using the nanoparticles. According to the method, the presence of specific functional groups of self-assembled molecules and the degree of reaction can be analyzed by introducing nanoparticles to a biomaterial immobilization substrate including self-assembled molecules and measuring the number of gold nanoparticles existing on the surface.
    Type: Application
    Filed: November 26, 2007
    Publication date: January 21, 2010
    Inventors: Chil-Seong Ah, Ansoon Kim, Han-Young Yu, Chang-Geun Ahn, Jong-Heon Yang, In-Bok Baek, Chan-Woo Park, Seongjae Lee
  • Patent number: 7557044
    Abstract: Disclosed herein is a method of fabricating nano-components using nanoplates, including the steps of: printing a grid on a substrate using photolithography and Electron Beam Lithography; spraying an aqueous solution dispersed with nanoplates onto the grid portion to position the nanoplates on the substrate; depositing a protective film of a predetermined thickness on the substrate and the nanoplates positioned on the substrate; ion-etching the nanoplates deposited with the protective film by using a Focused Ion Beam (FIB) or Electron Beam Lithography; and eliminating the protective film remaining on the substrate using a protective film remover after the ion-etching of the nanoplates, and a method of manufacturing nanomachines or nanostructures by transporting such nano-components using a nano probe and assembling with other nano-components.
    Type: Grant
    Filed: October 31, 2005
    Date of Patent: July 7, 2009
    Assignee: Korean Research Institute of Standards and Science
    Inventors: Yong Ju Yun, Chil Seong Ah, Dong Han Ha, Hyung Ju Park, Wan Soo Yun, Kwang Cheol Lee, Gwang Seo Park
  • Publication number: 20090152596
    Abstract: Provided are a semiconductor Field-Effect Transistor (FET) sensor and a method of fabricating the same. The method includes providing a semiconductor substrate, forming a sensor structure having a fin-shaped structure on the semiconductor substrate, injecting ions for electrical ohmic contact into the sensor structure, and depositing a metal electrode on the sensor structure, immobilizing a sensing material to be specifically combined with a target material onto both sidewall surfaces of the fin-shaped structure, and forming a passage on the sensor structure such that the target material passes through the fin-shaped structure.
    Type: Application
    Filed: August 20, 2008
    Publication date: June 18, 2009
    Applicant: Electronics and Telecommunications Research Institute
    Inventors: Jong Heon YANG, In Bok Baek, Chang Geun Ahn, Chan Woo Park, An Soon Kim, Han Young Yu, Chil Seong Ah, Tae Youb Kim, Myung Sim Jun, Moon Gyu Jang
  • Publication number: 20090152598
    Abstract: Provided are a biosensor using a silicon nanowire and a method of manufacturing the same. The silicon nanowire can be formed to have a shape, in which identical patterns are continuously repeated, to enlarge an area in which probe molecules are fixed to the silicon nanowire, thereby increasing detection sensitivity. In addition, the detection sensitivity can be easily adjusted by adjusting a gap between the identical patterns of the silicon nanowire depending on characteristics of target molecules, without adjusting a line width of the silicon nanowire in the conventional art. Further, the gap between the identical patterns of the silicon nanowire can be adjusted depending on characteristics of the target molecule to differentiate detection sensitivities, thereby simultaneously detecting various detection sensitivities.
    Type: Application
    Filed: September 29, 2008
    Publication date: June 18, 2009
    Applicant: Electronics and Telecommunications Research Institute
    Inventors: In Bok BAEK, Jong Heon Yang, Chang Geun Ahn, Han Young Yu, Chil Seong Ah, Chan Woo Park, An Soon Kim, Tae Youb Kim, Moon Gyu Jang, Myung Sim Jun
  • Publication number: 20070126001
    Abstract: An organic semiconductor device and a method of fabricating the same are provided. The device includes: a first electrode; an electron channel layer formed on the first electrode; and a second electrode formed on the electron channel layer, wherein the electron channel layer comprises: a lower organic layer formed on the first electrode; a nano-particle layer formed on the lower organic layer and including predetermined sizes of nano-particles that are spaced a predetermined distance apart from each other; and an upper organic layer formed over the nano-particle layer. Accordingly, a highly integrated organic semiconductor device can be fabricated by a simple fabrication process, and nonuniformity of devices due to threshold voltage characteristics and downsizing of the device can resolved, so that a semiconductor device having excellent performance can be implemented.
    Type: Application
    Filed: August 1, 2006
    Publication date: June 7, 2007
    Inventors: Sung-Yool Choi, Min Ki Ryu, Ansoon Kim, Chil Seong Ah, Han Young Yu
  • Publication number: 20070126045
    Abstract: A memory device including a dielectric thin film having a plurality of dielectric layers and a method of manufacturing the same are provided. The memory device includes: a bottom electrode; at least one dielectric thin film disposed on the bottom electrode and having a plurality of dielectric layers with different charge trap densities from each other; and an top electrode disposed on the dielectric thin film. Therefore, a memory device, which can be readily manufactured by a simple process and can be highly integrated using its simple structure, can be provided.
    Type: Application
    Filed: December 1, 2006
    Publication date: June 7, 2007
    Inventors: Sung-Yool Choi, Min Ki Ryu, Ansoon Kim, Chil Seong Ah, Han Young Yu