Browse by Subject Electrocatalyst

Showing results 1 to 32 of 32

1
A robust enzymeless glucose sensor based on tin nickel sulfide nanocomposite modified electrodes

Chandrasekaran, Nivedhini Iswarya; Harshiny, M.; Thangasamy, Pitchai; Matheswaran, Manickam, APPLIED PHYSICS A-MATERIALS SCIENCE & PROCESSING, v.127, no.1, pp.20, 2021-01

2
Combinatorial Search for Quaternary Methanol Tolerant Oxygen Electro-Reduction Catalyst

Jeon, M. K.; Liu, J. H.; Lee, Ki-Rak; Lee, J. W.; McGinn, P. J.; Woo, Seong-Ihl, FUEL CELLS, v.10, no.1, pp.93 - 98, 2010-02

3
Cu-Pd alloy nanoparticles as highly selective catalysts for efficient electrochemical reduction of CO2 to CO

Mun, Yeongdong; Lee, Seunghyun; Cho, Ara; Kim, Seongbeen; Han, Jeong Woo; Lee, Jinwoo, APPLIED CATALYSIS B-ENVIRONMENTAL, v.246, pp.82 - 88, 2019-06

4
Deciphering mass transport behavior in membrane electrode assembly by manipulating porous structures of atomically dispersed Metal-Nx catalysts for High-Efficiency electrochemical CO2 conversion

Lee, Seunghyun; Jeon, Ye Eun; Lee, Seonggyu; Lee, Wonhee; Kim, Seongbeen; Choi, Jaeryung; Park, Jinkyu; et al, CHEMICAL ENGINEERING JOURNAL, v.464, 2023-05

5
Degradation mechanism of electrocatalyst during long-term operation of PEMFC

Chung, Chul Goo; Kim, Lim; Sung, Yong Wook; Lee, Jinwoo; Chung, Jong Shik, INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, v.34, no.21, pp.8974 - 8981, 2009-11

6
Development of a PrBaMn2O5+delta-La0.8Sr0.2Ga0.85Mg0.15O3-delta composite electrode by scaffold infiltration for reversible solid oxide fuel cell applications

Kwon, Youngjin; Kang, Sungmin; Bae, Joongmyeon, INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, v.45, no.3, pp.1748 - 1758, 2020-01

7
Effect of heat treatment on PtRu/C catalyst for methanol electro-oxidation

Jeon, Min-Ku; Lee, Ki-Rak; Jeon, Hee-Jung; Woo, Seong-Ihl, JOURNAL OF APPLIED ELECTROCHEMISTRY, v.39, no.9, pp.1503 - 1508, 2009-09

8
Effect of surface composition of Pt-Fe nanoparticles for oxygen reduction reactions

Chung, Young-Hoon; Chung, Dong Young; Jung, Namgee; Park, Hee-Young; Sung, Yung-Eun; Yoo, Sung Jong, INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, v.39, no.27, pp.14751 - 14759, 2014-09

9
Electrocatalysts supported on multiwalled carbon nanotubes for direct borohydride-hydrogen peroxide fuel cell

Oh, Taek Hyun; Jang, Bosun; Kwon, Sejin, INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, v.39, no.13, pp.6977 - 6986, 2014-04

10
Electrocatalytic and bioelectroanalytical system based on metal deposition = 금속 증착에 기반한 전기화학 촉매와 생전기분석에 대한 연구link

Hwang, Seong-Pil; 황성필; et al, 한국과학기술원, 2005

11
Electrocatalytic effect of NiO nanoparticles evenly distributed on a graphite felt electrode for vanadium redox flow batteries

Yun, Nari; Park, Jung Jin; Park, O Ok; Lee, Ki Bong; Yang, Jung Hoon, ELECTROCHIMICA ACTA, v.278, pp.226 - 235, 2018-07

12
Enhanced Methanol Tolerance of Highly Pd rich Pd-Pt Cathode Electrocatalysts in Direct Methanol Fuel Cells

Choi, Baeck; Nam, Woo-Hyun; Chung, Dong Young; Park, In-Su; Yoo, Sung Jong; Song, Jae Chun; Sung, Yung-Eun, ELECTROCHIMICA ACTA, v.164, pp.235 - 242, 2015-05

13
Fabrication of 3D nanostructured electrocatalysts for fuel cell electrodes via proximity-field nanoPatterning = 근접장 나노패터닝 기술을 통한 3차원 다공성 전극소재 제작 및 연료전지 응용link

Hyun, Gayea; 현가예; et al, 한국과학기술원, 2016

14
Hierarchical and ultrathin copper nanosheets synthesized via galvanic replacement for selective electrocatalytic carbon dioxide conversion to carbon monoxide

Pan, Jing; Sun, Yuanmiao; Deng, Peiling; Yang, Fan; Chen, Shenghua; Zhou, Qitao; Park, Ho Seok; et al, APPLIED CATALYSIS B-ENVIRONMENTAL, v.255, 2019-10

15
Insight into the superior activity of bridging sulfur-rich amorphous molybdenum sulfide for electrochemical hydrogen evolution reaction

Lee, Cheol-Ho; Lee, Sungho; Kang, Gil-Seong; Lee, Youn-Ki; Park, Gwan Gyu; Lee, Doh C.; Joh, Han-Ik, APPLIED CATALYSIS B-ENVIRONMENTAL, v.258, 2019-07

16
Investigation of Pt/WC/C catalyst for methanol electro-oxidation and oxygen electro-reduction

Jeon, Min-Ku; Lee, Ki-Rak; Lee, Won-Su; Daimon, Hideo; Nakahara, Akemi; Woo, Seong-Ihl, JOURNAL OF POWER SOURCES, v.185, no.2, pp.927 - 931, 2008-12

17
Iterative redox activation promotes interfacial synergy in an Ag/CuxO catalyst for oxygen reduction

Park, Youngtae; Shin, Kihyun; Lee, Changsoo; Lee, Sang-Yeon; Lee, Yong-Kul; Kim, Chang-Hee; Cho, Hyun-Seok; et al, CHEMICAL ENGINEERING JOURNAL, v.446, 2022-10

18
Machine learning filters out efficient electrocatalysts in the massive ternary alloy space for fuel cells

Park, Youngtae; Hwang, Chang-Kyu; Bang, Kihoon; Hong, Doosun; Nam, Hyobin; Kwon, Soonho; Yeo, Byung Chul; et al, APPLIED CATALYSIS B-ENVIRONMENTAL, v.339, 2023-12

19
Nanostructure engineering of Cu electrocatalyst for the selective C2+hydrocarbons in electrochemical CO2 reduction

Kanase, Rohini Subhash; Lee, Kelvin Berm; Arunachalam, Maheswari; Sivasankaran, Ramesh Poonchi; Oh, Jihun; Kang, Soon Hyung, APPLIED SURFACE SCIENCE, v.584, 2022-05

20
Ni(OH)2NiOOH 2D-nanosheets tailored with FeOOH nanorods: A synergy of morphological engineering towards bifunctional overall water splitting

Shanmugapriya, Sathyanarayanan; Surendran, Subramani; Moon, Dae Jun; Kim, Joon Young; Lee, Hyunjung; Jesudass, Sebastian Cyril; Veeramani, Krishnan; et al, INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, v.54, pp.1552 - 1562, 2024-02

21
NiFe-oxide electrocatalysts for the oxygen evolution reaction on Ti doped hematite photoelectrodes

Kleiman-Shwarsctein, Alan; Hu, Yong-Sheng; Stucky, Galen D.; McFarland, Eric W., ELECTROCHEMISTRY COMMUNICATIONS, v.11, no.6, pp.1150 - 1153, 2009-06

22
Non-noble metal electrocatalysts for oxygen reduction reaction : DFT study on transition metal nitrides = 비 귀금속 산소환원반응 촉매: 전이금속질화물에 대한 밀도 범함수 이론 연구link

Hong, Doosun; Lee, Hyuck Mo; et al, 한국과학기술원, 2017

23
Orientation and interface control of various two-dimensional materials and its electrochemical applications = 다양한 2차원 물질들의 배향구조분석 및 계면제어를 통한 전기화학 응용 연구link

Kim, Seon Joon; 김선준; et al, 한국과학기술원, 2017

24
Oxygen vacancy enables electrochemical N-2 fixation over WO3 with tailored structure

Sun, Zhenyu; Huo, Rupeng; Choi, Changhyeok; Hong, Song; Wu, Tai-Sing; Qiu, Jieshan; Yan, Chao; et al, NANO ENERGY, v.62, pp.869 - 875, 2019-08

25
Palladium oxide as a novel oxygen evolution catalyst on BiVO4 photoanode for photoelectrochemical water splitting

Kim, Jin Hyun; Jang, Ji Wook; Kang, Hyun Joon; Magesh, Ganesan; Kim, Jae Young; Kim, Ju Hun; Lee, Jinwoo; et al, JOURNAL OF CATALYSIS, v.317, pp.126 - 134, 2014-08

26
Performance evaluation of direct borohydride-hydrogen peroxide fuel cells with electrocatalysts supported on multiwalled carbon nanotubes

Oh, Taekhyun; Jang, Bosun; Kwon, Se-Jin, ENERGY, v.76, pp.911 - 919, 2014-11

27
Performance improvement of direct methanol fuel cells via anodic treatment using various organic acids

Jeon, Min-Ku; Lee, Ki-Rak; Woo, Seong-Ihl, KOREAN JOURNAL OF CHEMICAL ENGINEERING, v.30, no.7, pp.1410 - 1414, 2013-07

28
Promotion of electrochemical oxygen evolution reaction by chemical coupling of cobalt to molybdenum carbide

Kim, MinJoong; Kim, Sunghyun; Song, DongHoon; Oh, Se-Kwon; Chang, Kee Joo; Cho, EunAe, APPLIED CATALYSIS B-ENVIRONMENTAL, v.227, pp.340 - 348, 2018-07

29
Soft-template synthesis of mesoporous non-precious metal catalyst with Fe-N-X/C active sites for oxygen reduction reaction in fuel cells

Mun, Yeongdong; Kim, Min Jeong; Park, Shin-Ae; Lee, Eunsung; Ye, Youngjin; Lee, Seonggyu; Kim, Yong-Tae; et al, APPLIED CATALYSIS B-ENVIRONMENTAL, v.222, pp.191 - 199, 2018-03

30
Structural Effectiveness of AgCl-decorated Ag Nanowires Enhancing Oxygen Reduction

Choi, Suyeon; Park, Youngtae; Choi, Jung Woo; Lee, Changsoo; Cho, Hyun-Seok; Kim, Chang-Hee; Koo, Jahyun; et al, ACS SUSTAINABLE CHEMISTRY & ENGINEERING, v.9, no.22, pp.7519 - 7528, 2021-06

31
Synthesis of template-induced hollow nanostructures and study on their heterogeneous catalytic properties = 주형을 통한 중공 나노 구조체의 합성과 불균일계 촉매적 특성에 관한 연구link

Choi, Bu-Seo; 최부서; et al, 한국과학기술원, 2016

32
Ternary Pt45Ru45M10/C (M=Mn, Mo and W) catalysts for methanol and ethanol electro-oxidation

Jeon, Min-Ku; Lee, Ki-Rak; Woo, Seong-Ihl, KOREAN JOURNAL OF CHEMICAL ENGINEERING, v.26, no.4, pp.1028 - 1033, 2009-07

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