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고동연 교수

Dong-Yeun Koh

KAIST 생명화학공학과 · 환경과학

연구실 소개

고동연 교수의 연구실은 에너지 효율적인 분리 기술과 지속 가능한 에너지 자원 개발을 핵심으로 삼고 있습니다. 특히 유기 액체 분리에 응용 가능한 탄소 분자체 여과막, 메탄 하이드레이트에서의 메탄 직접 회수 기술, 그리고 CO₂ 대체를 통한 메탄 하이드레이트의 안정적 변환 기반의 에너지 추출 기술을 연구하고 있습니다. 또한, MXene 기반 웨어러블 수화젤을 활용한 고성능 생체 센서 기술 개발을 통해 에너지와 환경 문제 해결에 기여하고자 합니다.

탄소 분자체 여과막메탄 하이드레이트CO₂ 대체웨어러블 센서에너지 회수

연구 현황

논문 수
138
총 인용 수
3,243
최근 5년 논문
60
주요 분야
환경과학

연구 성과 추이

표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.

5개년 연도별 논문 게재 수
60총합
2022
2023
2024
2025
2026
5개년 연도별 피인용 수
630총합
20222023202420252026

주요 논문

15
1
논문|인용수 284·2016
Reverse osmosis molecular differentiation of organic liquids using carbon molecular sieve membranes
Dong‐Yeun Koh, Benjamin A. McCool, H. W. Deckman, Ryan P. Lively
SJR Q1Science

Liquid-phase separations of similarly sized organic molecules using membranes is a major challenge for energy-intensive industrial separation processes. We created free-standing carbon molecular sieve membranes that translate the advantages of reverse osmosis for aqueous separations to the separation of organic liquids. Polymer precursors were cross-linked with a one-pot technique that protected the porous morphology of the membranes from thermally induced structural rearrangement during carboni

Mechanical EngineeringEngineering
2
논문|인용수 283·2015
Energy-efficient natural gas hydrate production using gas exchange
Dong‐Yeun Koh, Hyery Kang, Jong-Won Lee, Youngjune Park, Se-Joon Kim, Jaehyoung Lee, Joo Yong Lee, Huen Lee
SJR Q1Applied Energy
Environmental ChemistryEnvironmental Science
3
논문|인용수 211·2023
Highly Oxidation‐Resistant and Self‐Healable MXene‐Based Hydrogels for Wearable Strain Sensor
Ari Chae, G. Murali, Seul‐Yi Lee, Jeonghwan Gwak, Seon Joon Kim, Yong Jin Jeong, Hansol Kang, Seongmin Park, Seongmin Park, Albert S. Lee, Dong‐Yeun Koh, Insik In
SJR Q1Advanced Functional MaterialsOA

Abstract Very recently, MXene‐based wearable hydrogels have emerged as promising candidates for epidermal sensors due to their tissue‐like softness and unique electrical and mechanical properties. However, it remains a challenge to achieve MXene‐based hydrogels with reliable sensing performance and prolonged service life, because MXene inevitably oxidizes in water‐containing system of the hydrogels. Herein, catechol‐functionalized poly(vinyl alcohol) (PVA‐CA)‐based hydrogels is proposed to inhib

Biomedical EngineeringEngineering
4
논문|인용수 137·2012
Recovery of Methane from Gas Hydrates Intercalated within Natural Sediments Using CO2 and a CO2/N2 Gas Mixture
Dong‐Yeun Koh, Hyery Kang, Dae‐Ok Kim, Juwoon Park, Minjun Cha, Huen Lee
SJR Q1ChemSusChem

The direct recovery of methane from massive methane hydrates (MHs), artificial MH-bearing clays, and natural MH-bearing sediments is demonstrated, using either CO(2) or a CO(2)/N(2) gas mixture (20 mol % of CO(2) and 80 mol % of N(2), reproducing flue gas from a power plant) for methane replacement in complex marine systems. Natural gas hydrates (NGHs) can be converted into CO(2) hydrate by a swapping mechanism. The overall process serves a dual purpose: it is a means of sustainable energy-sourc

Environmental ChemistryEnvironmental Science
5
논문|인용수 108·2019
CO2 Absorption Using Membrane Contactors: Recent Progress and Future Perspective
Chong Yang Chuah, Kyunam Kim, Junghyun Lee, Dong‐Yeun Koh, Tae‐Hyun Bae
SJR Q1Industrial & Engineering Chemistry Research

CO2 absorption is a key to alleviating the environmental consequences of fossil fuel combustion, which is a major source of global CO2 emission. Membrane contactors have showcased several competitive advantages in CO2 absorption over conventional gas–liquid contactors (e.g., packed towers), such as a large mass-transfer area and a safe operation owing to the membranes that physically separate the gas and liquid phases. This Review discusses the state-of-the-art studies related to CO2 absorption

Mechanical EngineeringEngineering
6
논문|인용수 72·2014
One‐dimensional productivity assessment for on‐field methane hydrate production using CO2/N2 mixture gas
Dong‐Yeun Koh, Yun‐Ho Ahn, Hyery Kang, Seongmin Park, Joo Yong Lee, Joo Yong Lee, Se‐Joon Kim, Jaehyoung Lee, Jaehyoung Lee, Huen Lee
SJR Q1AIChE JournalOA

The direct recovery of methane from gas hydrate‐bearing sediments is demonstrated, where a gaseous mixture of CO 2 + N 2 is used to trigger a replacement reaction in complex phase surroundings. A one‐dimensional high‐pressure reactor (8 m) was designed to test the actual aspects of the replacement reaction occurring in natural gas hydrate (NGH) reservoir conditions. NGH can be converted into CO 2 hydrate by a “replacement mechanism,” which serves double duty as a means of both sustainable energy

Environmental ChemistryEnvironmental Science
7
논문|인용수 69·2013
Tuning Cage Dimension in Clathrate Hydrates for Hydrogen Multiple Occupancy
Dong‐Yeun Koh, Hyery Kang, Jiwon Jeon, Yun‐Ho Ahn, Youngjune Park, Hyungjun Kim, Huen Lee
SJR Q1The Journal of Physical Chemistry C

As hydrogen molecules enter the clathrate hydrate body, the ubiquitous dodecahedral cavity (5 12 ) is too small to allow anything but single occupancy thermodynamically. The possibility that H 2 double occupancy can occur in the dodecahedral cavity has been suggested and is still under debate. Here we uncover the unique feature of multiple occupancy of the hydrogen molecule in a dodecahedral cavity as induced by tuning the cage dimensions. The guest promoter population in the hydrate matrix spon

Environmental ChemistryEnvironmental Science
8
letter|인용수 52·2015
Membranes at the limit
Dong‐Yeun Koh, Ryan P. Lively
SJR Q1Nature Nanotechnology
Materials ChemistryMaterials Science
9
논문|인용수 48·2022
Electron-mediated control of nanoporosity for targeted molecular separation in carbon membranes
Banseok Oh, Hyeokjun Seo, Jihoon Choi, Sunggyu Lee, Dong‐Yeun Koh
SJR Q1Nature CommunicationsOA

Abstract Carbon molecular sieve (CMS) membranes are considered game-changers to overcome the challenges that conventional polymeric membranes face. However, CMS membranes also confront a challenge in successfully separating extremely similar-sized molecules. In this article, high-precision tuning of the microstructure of CMS membranes is proposed by controlled electron irradiation for the separation of molecules with size differences less than 0.05 nm. Fitting CMS membranes for targeted molecula

Materials ChemistryMaterials Science
10
논문|인용수 46·2021
Controlled Synthesis of Metal–Organic Frameworks in Scalable Open-Porous Contactor for Maximizing Carbon Capture Efficiency
Young Hun Lee, YongSung Kwon, Chaehoon Kim, Young‐Eun Hwang, Minkee Choi, YouIn Park, Aqil Jamal, Dong‐Yeun Koh
SJR Q1JACS AuOA

Metal-organic frameworks (MOFs) are a class of microporous materials that have been highlighted with fast and selective sorption of gas molecules; however, they are at least partially unstable in the scale-up process. Here, we report a rational shaping of MOFs in a scalable architecture of fiber sorbent. The long-standing stability challenge of MOFs was resolved by using stable metal oxide precursors that are subject to controlled surface oxide dissolution-growth chemistry during the Mg-based MO

Inorganic ChemistryChemistry
11
논문|인용수 43·2013
Multiple guest occupancy in clathrate hydrates and its significance in hydrogen storage
Dong‐Yeun Koh, Hyery Kang, Huen Lee
SJR Q1Chemical Communications

We report a new concept of structural transformation combined with tuning phenomena which together result in a significant increase in the hydrogen storage capacity in an icy material. It is necessary to investigate the use of a fully water-soluble structure H (sH) former so as to observe how hydrogen molecules are stably loaded into hydrate cages.

Environmental ChemistryEnvironmental Science
12
논문|인용수 36·2022
Tunable Ti3C2Tx MXene-Derived TiO2 Nanocrystals at Controlled pH and Temperature
Ari Chae, Sehyun Doo, Daesin Kim, Tae Yun Ko, Taegon Oh, Seon Joon Kim, Dong‐Yeun Koh, Chong Min Koo
SJR Q1Langmuir

While two-dimensional (2D) Ti<sub>3</sub>C<sub>2</sub>T<sub><i>x</i></sub> MXene in aqueous dispersions spontaneously oxidizes into titanium dioxide (TiO<sub>2</sub>) nanocrystals, the crystallization mechanism has not been comprehensively understood and the resultant crystal structures are not controlled among three representative polymorphs: anatase, rutile, and brookite. In this study, such control on the lattice structures and domain sizes of the MXene-derived TiO<sub>2</sub> crystallites is

Materials ChemistryMaterials Science
13
논문|인용수 33·2017
Sub-ambient air separation via Li+ exchanged zeolite
Dong‐Yeun Koh, Brian R. Pimentel, Vinod P. Babu, Neil A. Stephenson, Siew Wah Chai, Andrew Rosinski, Ryan P. Lively
SJR Q1Microporous and Mesoporous MaterialsOA
Electrical and Electronic EngineeringEngineering
14
논문|인용수 33·2024
Ultrathin organosiloxane membrane for precision organic solvent nanofiltration
Jihoon Choi, Keonwoo Choi, YongSung Kwon, Daehun Kim, Youngmin Yoo, Sung Gap Im, Dong‐Yeun Koh
SJR Q1Nature CommunicationsOA

Abstract Promising advances in membrane technology can lead to energy-saving and eco-friendly solutions in industrial sectors. This work demonstrates a highly selective membrane with ultrathin and highly interconnected organosiloxane polymer nanolayers by initiated chemical vapor deposition to effectively separate solutes within the molecular weight range of 150–300 g mol −1 . We optimize the poly(1,3,5,7-tetravinyl-1,3,5,7-tetramethylcyclotetrasiloxane) membrane by adjusting both the thickness

Water Science and TechnologyEnvironmental Science
15
논문|인용수 33·2019
2D-enabled membranes: materials and beyond
Taehoon Hyun, Jin-Hong Jeong, Ari Chae, Young Kwan Kim, Dong‐Yeun Koh
BMC Chemical EngineeringOA

Membranes could reform the field of molecular separations by enabling new low energy manufacturing technologies. This review article discusses the current state of the art and the potential in the 2D-enabled membrane separation processes by highlighting emerging and existing areas in which robust 2D materials significantly impact the energy-efficient separation process. Analysis of 2D-enabled membrane classes and prospective materials for 2D-enabled membranes are also discussed with emphasis on

Materials ChemistryMaterials Science

대표 연구 분야

Environmental ChemistryMechanical EngineeringMaterials ChemistryInorganic ChemistryElectrical and Electronic EngineeringWater Science and Technology

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