1. Journal Articles13

Showing results 1 to 13 of 13

  • Kim, Beomil
  • Tan, Ying Chuan
  • Ryu, Yeonkyeong
  • Jang, Kyuseon
  • Abbas, Hafiz Ghulam
  • Kang, Taehyeok
  • Choi, Hyeonuk
  • Lee, Kug-Seung
  • Park, Sojung
  • Kim, Wooyul
  • et al
  • 2023-07
  • Kim, Beomil. (2023-07). Trace-Level Cobalt Dopants Enhance CO2 Electroreduction and Ethylene Formation on Copper. ACS Energy Letters, 8(8), 3356–3364. doi: 10.1021/acsenergylett.3c00418
  • American Chemical Society
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  • Yu, Jeong-Hoon
  • Singh, Kiran Pal
  • Kim, Se-Jun
  • Kang, Tong-Hyun
  • Lee, Kug-Seung
  • Kim, Hyungjun
  • Ringe, Stefan
  • Yu, Jong-Sung
  • 2023-03
  • Yu, Jeong-Hoon. (2023-03). Active and stable PtP2-based electrocatalysts solve the phosphate poisoning issue of high temperature fuel cells. Journal of Materials Chemistry A, 11(12), 6413–6427. doi: 10.1039/d2ta09110k
  • Royal Society of Chemistry
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  • Kastlunger, Georg
  • Wang, Lei
  • Govindarajan, Nitish
  • Heenen, Hendrik H.
  • Ringe, Stefan
  • Jaramillo, Thomas
  • Hahn, Christopher
  • Chan, Karen
  • 2022-04
  • Kastlunger, Georg. (2022-04). Using pH Dependence to Understand Mechanisms in Electrochemical CO Reduction br. ACS Catalysis, 12(8), 4344–4357. doi: 10.1021/acscatal.1c05520
  • American Chemical Society
  • View : 448
  • Download : 0
  • Tetteh, Emmanuel Batsa
  • Gyan-Barimah, Caleb
  • Lee, Ha-Young
  • Kang, Tong-Hyun
  • Kang, Seonghyeon
  • Ringe, Stefan
  • Yu, Jong-Sung
  • 2022-06
  • Tetteh, Emmanuel Batsa. (2022-06). Strained Pt(221) Facet in a PtCo@Pt-Rich Catalyst Boosts Oxygen Reduction and Hydrogen Evolution Activity. ACS Applied Materials & Interfaces, 14(22), 25246–25256. doi: 10.1021/acsami.2c00398
  • American Chemical Society
  • View : 659
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On the importance of the electric double layer structure in aqueous electrocatalysis

  • Shin, Seung-Jae
  • Kim, Dong Hyun
  • Bae, Geunsu
  • Ringe, Stefan
  • Choi, Hansol
  • Lim, Hyung-Kyu
  • Choi, Chang Hyuck
  • Kim, Hyungjun
  • 2022-01
  • Shin, Seung-Jae. (2022-01). On the importance of the electric double layer structure in aqueous electrocatalysis. Nature Communications, 13(1). doi: 10.1038/s41467-021-27909-x
  • Nature Publishing Group
  • View : 572
  • Download : 124
  • Ringe, Stefan
  • 2021-11
  • Ringe, Stefan. (2021-11). Approaching in-depth mechanistic understanding of electrochemical hydrogen conversion from computational simulations. Chem Catalysis, 1(6), 1160–1162. doi: 10.1016/j.checat.2021.10.019
  • Elsevier BV
  • View : 468
  • Download : 0

Implicit Solvation Methods for Catalysis at Electrified Interfaces

  • Ringe, Stefan
  • Hormann, Nicolas G.
  • Oberhofer, Harald
  • Reuter, Karsten
  • 2022-06
  • Ringe, Stefan. (2022-06). Implicit Solvation Methods for Catalysis at Electrified Interfaces. doi: 10.1021/acs.chemrev.1c00675
  • American Chemical Society
  • View : 330
  • Download : 7
  • Song, H.
  • Tan, Y.C.
  • Kim, B.
  • Ringe, Stefan
  • Oh, J.
  • 2021-11
  • Song, H. (2021-11). Tunable Product Selectivity in Electrochemical CO2Reduction on Well-Mixed Ni-Cu Alloys. ACS Applied Materials & Interfaces, 13(46), 55272–55280. doi: 10.1021/acsami.1c19224
  • American Chemical Society
  • View : 393
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  • Kim, Mun Kyoung
  • Lee, Hojeong
  • Won, Jong Ho
  • Sim, Woohyeong
  • Kang, Shin Joon
  • Choi, Hansaem
  • Sharma, Monika
  • Oh, Hyung-Suk
  • Ringe, Stefan
  • Kwon, Youngkook
  • et al
  • 2022-02
  • Kim, Mun Kyoung. (2022-02). Design of less than 1 nm Scale Spaces on SnO2 Nanoparticles for High-Performance Electrochemical CO2 Reduction. Advanced Functional Materials, 32(8). doi: 10.1002/adfm.202107349
  • John Wiley & Sons Ltd.
  • View : 522
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Selective electrochemical reduction of nitric oxide to hydroxylamine by atomically dispersed iron catalyst

  • Kim, Dong Hyun
  • Ringe, Stefan
  • Kim, Haesol
  • Kim, Sejun
  • Kim, Bupmo
  • Bae, Geunsu
  • Oh, Hyung-Suk
  • Jaouen, Frederic
  • Kim, Wooyul
  • Kim, Hyungjun
  • et al
  • 2021-03
  • Kim, Dong Hyun. (2021-03). Selective electrochemical reduction of nitric oxide to hydroxylamine by atomically dispersed iron catalyst. Nature Communications, 12(1), 1856. doi: 10.1038/s41467-021-22147-7
  • Nature Publishing Group
  • View : 488
  • Download : 86
  • Sa, Young Jin
  • Jung, Hyejin
  • Shin, Dongyup
  • Jeong, Hu Young
  • Ringe, Stefan
  • Kim, Hyungjun
  • Hwang, Yun Jeong
  • Joo, Sang Hoon
  • 2020-10
  • Sa, Young Jin. (2020-10). Thermal Transformation of Molecular Ni2+-N-4 Sites for Enhanced CO2 Electroreduction Activity. doi: 10.1021/acscatal.0c02325
  • American Chemical Society
  • View : 656
  • Download : 0
  • Thomas Ludwig
  • Joseph A. Gauthier
  • Colin F. Dickens
  • Kristopher S. Brown
  • Stefan Ringe
  • Karen Chan
  • Jens K. Nørskov
  • 2020-11
  • Thomas Ludwig. (2020-11). Atomistic Insight into Cation Effects on Binding Energies in Cu-Catalyzed Carbon Dioxide Reduction. doi: 10.1021/acs.jpcc.0c07004
  • American Chemical Society
  • View : 401
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  • Lee, Mi-Young
  • Ringe, Stefan
  • Kim, Hyungjun
  • Kang, Seoktae
  • Kwon, Youngkook
  • 2020-09
  • Lee, Mi-Young. (2020-09). Electric Field Mediated Selectivity Switching of Electrochemical CO2 Reduction from Formate to CO on Carbon Supported Sn. ACS Energy Letters, 5(9), 2987–2994. doi: 10.1021/acsenergylett.0c01387
  • American Chemical Society
  • View : 662
  • Download : 0
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