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教學研究
◆期刊論文
1. Dai, Y.-M., Ting, Y.-C., & Chang, C.-M.* (2026). Machine learning-enhanced PID control optimization for battery thermal management: Integrating FiPy simulation with XGBoost surrogate modeling. International Communications in Heat and Mass Transfer, 178, Article 111678.
本人為通訊作者。
2. Dai, Y.-M., Ting, Y.-C., & Chang, C.-M.* (2026). Coupled electrothermal transport analysis based on finite-volume modeling and surrogate-assisted parametric exploration. Chemical Engineering Science, 332, Article 124064.
本人為通訊作者。
3. Dai, Y.-M., Ting, Y.-C., & Chang, C.-M.* (2026). Surrogate-based prediction of pressure limit violations in drum boilers: A failure-prevention perspective. Results in Engineering, 29, Article 109213.
本人為通訊作者。
4. Dai, Y.-M., Ting, Y.-C., Chang, C.-M.*, & Huang, C.-T. (2026). Open-source electro-thermo-mechanical simulation and XGBoost surrogate design of bimetallic actuators. Case Studies in Thermal Engineering, 77, Article 107625.
本人為通訊作者。
5. Dai, Y.-M., Chen, J.-S., Chang, C.-M., & Jehng, J.-M. (2025). Excellent charge separation over Ag@Ag₂O/GO heterostructures for boosting CO₂ photoreduction. Journal of the Taiwan Institute of Chemical Engineers, 176, Article 106267.
6. Chang, C.-M., Zheng, Z.-J., Jehng, J.-M., Lai, D.-H., & Dai, Y.-M.* (2025). Promoted charge separation in heterojunctions of BiₓGaᵧOᵥ/g-C₃N₄ for improved photocatalytic CO₂ reduction. Applied Surface Science, 708, Article 163652.
本人為第一作者。
7. Dai, Y.-M., Ting, Y.-C., Chang, C.-M.*, & Huang, C.-T. (2025). Thermal management analysis of fast-charging lithium-ion battery packs: Effects of cooling strategies. Next Energy, 9, Article 100465.
本人為通訊作者。
8. Yu, R.-S., Wu, P.-H., Dai, Y.-M., Chang, C.-M., Lai, D.-H., & Jehng, J.-M. (2025). Synergistic photocatalysis of ZnTiO₃/Cu/3D-g-C₃N₄ heterostructures for boosting CO₂ photoreduction. Surface and Coatings Technology, 513, Article 132521.
9. Dai, Y.-M., Chen, W.-J., & Chang, C.-M. (2024). Construction of heterostructured nanorods-like ZnO/g-C₃N₄ nanocomposite to obtain enhanced photocatalytic properties. Optical Materials, 148, Article 114925.
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