IP Library Granted Patent US 12,235,230
Granted Patent B2
US 12,235,230 · App. 17/719,623 · Granted Feb 25, 2025

Carbon-based optical sensor element for measuring greenhouse gas concentration

Inventors: Young Suk Oh (Seogwipo-si, KR); Su Ryon Shin (Wellesley, MA); Hyun Young Jung (Jinju-si, KR); Sang Won Joo (Seogwipo-si, KR); Hae Young Lee (Seogwipo-si, KR); Chang Kee Lee (Seoul, KR); Yeon Hee Kim (Seogwipo-si, KR); Chu Yong Chung (Seogwipo-si, KR)
Assignee: National Institute of Meteorological Sciences
G01N23/227B82Y15/00G01N33/0036G01N2223/084G01N2223/638
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Quick Facts
Patent No.
US 12,235,230
App. No.
17/719,623
Granted
Feb 25, 2025
Kind
B2
Abstract

This application relates to an optical sensor element. In one aspect, the optical sensor element includes a graphite column including one or more graphite rods. The optical sensor element may also include one or more first graphene layers partly or entirely covering each of both ends of the graphite column. The optical sensor element may further include one or more second graphene layers partly or entirely covering the outer circumferential surface of the graphite column. This application also relates to an optical sensor for measuring the concentration of a greenhouse gas and the optical sensor includes the optical sensor element.

Claims (13)

1. An optical sensor element comprising:

a graphite column comprising two or more graphite rods;

one or more first graphene layers partially or entirely covering each of first and second ends of the graphite column; and

one or more second graphene layers partially or entirely covering an outer circumferential surface of the graphite column.

2. The optical sensor element of claim 1 , wherein the graphite column has a bundle structure in which the two or more graphite rods are arranged side by side.

3. The optical sensor element of claim 1 ,

wherein a surface of each of the two or more graphite rods is covered with one or more graphene layers.

4. The optical sensor element of claim 1 , wherein incidence light is configured to cause excitation to generate photoelectrons at the first end of the graphite column and wherein the photoelectrons are configured to vertically move toward the second end of the graphite column through the graphite column and along the surface of the graphite column.

5. The optical sensor element of claim 1 , wherein current density is configured to linearly increase with intensity of incident light due to movement of photoelectrons.

6. An optical sensor for measuring a concentration of a greenhouse gas, the optical sensor comprising an optical sensor element, the optical sensor element comprising:

a graphite column comprising one or more graphite rods;

one or more first graphene layers partially or entirely covering each of first and second ends of the graphite column; and

one or more second graphene layers partially or entirely covering an outer circumferential surface of the graphite column.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 15, 2022
From: OH, YOUNG SUK; SHIN, SU RYON; JUNG, HYUN YOUNG; JOO, SANG WON; LEE, HAE YOUNG; LEE, CHANG KEE; KIM, YEON HEE; CHUNG, CHU YONG
To: NATIONAL INSTITUTE OF METEOROLOGICAL SCIENCES
Reel/Frame 059610/0784 →
Continuity (1)
Related Publication 20230168213A1 · Jun 1, 2023
References Cited (4)
US 9090476B2 · Chang · 2015 [cited by examiner]
US 9746373B2 · Oh · 2017 [cited by examiner]
US 11692932B2 · Lievois · 2023 [cited by examiner]
Kim et al., “Ambient CO [cited by applicant]