Presentation

International Conferences

13. J. W. Yang et al., "Multifunctional Nano-Heterogeneous Ni(OH)2/NiFe Catalysts on Silicon Photoanode toward Efficient Water and Urea Oxidation

The 21th International Nanotech Symposium & Exhibition (NANO KOREA 2023), Goyang, South Korea, 2023.07.07 (Oral)

12. J. W. Yang et al., "Multifunctional Nano-Heterogeneous Ni(OH)2/NiFe Catalysts on Silicon Photoanode toward Efficient Water and Urea Oxidation" 

The 7th International Conference on Electronic Materials and Nanotechnology for Green Environment (ENGE 2022), Jeju, South Korea, 2022.11.07 (Oral)

11. J. W. Yang et al., "Tailored Indium Oxide Nanostructures for Efficient Charge Separation in Water Splitting Photoanodes" 

Bunsen Colloquim: New Horizons in Solid State Ionics, Aachen, Germany, 2022.07.28 (Poster)

10. J. W. Yang et al., "Near-Complete Charge Separation in BiVO4-based Heterostructure Photoanodes toward Spontaneous Solar Water Oxidation" 

The 20th International Nanotech Symposium & Exhibition (NANO KOREA 2022), Goyang, South Korea, 2022.07.06 (Poster)

9. J. W. Yang et al., "Boosted Photoelectrochemical Water Splitting by BiVO4 Nanodots on In2O3 Nanorods" 

The 16th International Conference on Nanostructured Materials (NANO2022), Sevilla, Spain, 2022.06.06 (Oral)

8. J. W. Yang et al., "Boosted Photoelectrochemical Water Splitting by BiVO4 Nanodots on In2O3 Nanorods" 

The 2022 Spring Meeting of the Materials Research Society (MRS), Hawaii, United States, 2022.05.08 (Poster)

7. J. W. Yang et al., "Near-Complete Charge Separation in BiVO4-based Heterostructure Photoanodes toward Spontaneous Solar Water Oxidation" 

The 6th International Conference on Advanced Electromaterials (ICAE 2021), Jeju, South Korea, 2021.11.09 (Poster) [Best Poster Award]

6. J. W. Yang et al., "Near-Complete Charge Separation in BiVO4-based Heterostructure Photoanodes toward Spontaneous Solar Water Oxidation" 

The 12th Recent Progress in Graphene and Two-dimensional Materials Research Conference (RPGR 2021), Seoul, South Korea, 2021.09.13 (Poster)

5. J. W. Yang et al., "Near-Complete Charge Separation in BiVO4-based Heterostructure Photoanodes toward Spontaneous Solar Water Oxidation" 

The 19th International Nanotech Symposium & Exhibition (NANO KOREA 2021), Goyang, South Korea, 2021.07.07 (Poster)

4. J. W. Yang et al., "Zero-Bias Photoelectrochemical Water Splitting Device via Heterogeneous Photoanodes/Perovskite Solar Cell in Tandem" 

The 8th International Congress on Ceramics (ICC8), Virtual, South Korea, 2021.04.25 (Oral)

3. J. W. Yang et al., "Zero-Bias Photoelectrochemical Water Splitting Photoanode in Tandem with Perovskite/Si Solar Cell over 7.3% Solar-to-Hydrogen Conversion Efficiency" 

The 6th International Conference on Electronic Materials and Nanotechnology for Green Environment (ENGE 2020), Jeju, South Korea, 2020.11.04 (Oral)

2. J. W. Yang et al., "BiVO4/MeOx Heterogeneous Photoanodes for Efficient Photoelectrochemical Water Splitting via Electrochemical Synthesis"

The 2019 Spring Meeting of the European Materials Research Society (E-MRS), Nice, France, 2019.05.29 (Oral)

1. J. W. Yang et al., "BiFeO3-based Heterogeneous Anodes for Efficient Photoelectrochemical Water Oxidation via Electrochemical Synthesis" 

The 5th International Conference on Electronic Materials and Nanotechnology for Green Environment (ENGE 2018), Jeju, South Korea, 2018.11.13 (Poster)

Korean Domestic Conferences

11. J. W. Yang et al., "Boosted Photoelectrochemical Water Splitting by BiVO4 Nanodots on In2O3 Nanorods

The 2022 Summer Conference of the Korean Institute of Electrical and Electronic Material Engineers, Pyeongchang, South Korea, 2022.06.23 (Oral) [Best Paper Award]

10. J. W. Yang et al., "Boosted Photoelectrochemical Water Splitting by BiVO4 Nanodots on In2O3 Nanorods" 

The 2022 Spring Meeting of the Korean Ceramic Society, Yeosu, South Korea, 2022.04.13 (Poster)

9. J. W. Yang et al., "Boosted Photoelectrochemical Water Splitting by BiVO4 Nanodots on In2O3 Nanorods" 

The 2022 Spring Conference of the Korean Sensors Society, Seoul, South Korea, 2022.04.06 (Poster)

8. J. W. Yang et al., "Near-Complete Charge Separation in BiVO4-based Heterostructure Photoanodes toward Spontaneous Solar Water Oxidation" 

The 2021 Summer Conference of the Korean Institute of Electrical and Electronic Material Engineers, Pyeongchang, South Korea, 2021.06.30 (Poster)

7. J. W. Yang et al., "Near-Complete Charge Separation in BiVO4-based Heterostructure Photoanodes toward Spontaneous Solar Water Oxidation" 

The 28th Korean Conference on Semiconductors, Virtual, South Korea, 2021.01.27 (Oral)

6. J. W. Yang et al., "Zero-Bias Photoelectrochemical Water Splitting Device via Heterogeneous Photoanodes/Perovskite Solar Cell in Tandem" 

The 2020 Spring Meeting of the Korean Ceramic Society, Virtual, South Korea, 2020.07.07 (Poster)

5. J. W. Yang et al., "BiVO4/MeOx Heterogeneous Photoanodes for Efficient Photoelectrochemical Water Splitting via Electrochemical Synthesis" 

Nano Convergence Conference 2020, Chuncheon, South Korea, 2020.01.16 (Poster)

4. J. W. Yang et al., "BiVO4/MeOx Heterogeneous Photoanodes for Efficient Photoelectrochemical Water Splitting via Electrochemical Synthesis" 

The 2019 Fall Meeting of the Korean Ceramic Society, Seoul, South Korea, 2019.11.13 (Poster)

3. J. W. Yang et al., "BiVO4/MeOx Heterogeneous Photoanodes for Efficient Photoelectrochemical Water Splitting via Electrochemical Synthesis" 

The 2019 Fall Conference of the Korean Sensors Society, Gangneung, South Korea, 2019.08.28 (Poster)

2. J. W. Yang et al., "BiVO4/MeOx Heterogeneous Photoanodes for Efficient Photoelectrochemical Water Splitting via Electrochemical Synthesis" 

The 2019 Summer Conference of the Korean Institute of Electrical and Electronic Material Engineers, Hoengseong, South Korea, 2019.06.19 (Poster)

1. J. W. Yang et al., "BiVO4/MeOx Heterogeneous Photoanodes for Efficient Photoelectrochemical Water Splitting via Electrochemical Synthesis

The 2019 Fall Conference of the Materials Research Society of Korea, Pyeongchang, South Korea, 2019.05.15 (Poster)