廖振成

研究領域
本實驗室的研究以 計算化學與材料模擬 為核心,結合理論計算、材料設計與資料分析,探討能源、催化與新穎材料的性質與反應機制。希望透過電腦模擬,從原子與分子層級理解材料如何運作,並進一步協助設計更有效率的功能材料。
目前研究方向包括以下幾個主題:
1. 高熵材料與高熵合金設計
2. 能源催化與電化學反應機制
3. 奈米材料與表面反應
4. 第一原理計算與材料模擬
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完整介紹
學歷
| 學校 | 系所 | 學位 |
|---|---|---|
| 國立臺灣師範大學 | 化學系 | 博士 |
| 國立臺灣師範大學 | 化學系 | 碩士 |
| 國立臺灣師範大學 | 化學系 | 博士 |
經歷
| 期間 | 單位 | 部門 | 職稱 |
|---|---|---|---|
| 2026.02~ | 輔仁大學 | 化學系 | 專案助理教授 |
| 2024.08~2026.01 | 中國文化大學 | 化學工程與材料工程學系 | 專案助理教授 |
獲獎經歷
研究領域
學術著作
1. “The roles of various Fe–Cu bimetallic nanoclusters in controlling the C2 selectivity for the CO reduction reaction – a DFT study”, Chen-Cheng Liao, Meng-Chi Hsieh, Yung-Yi Huang, Cheng-Yu Tu and Chun-Chih Chang *, Phys. Chem. Chem. Phys., 2025, 27, 4234
2. “Simultaneously Boosting Direct and Indirect Urea Oxidation of Nickel Hydroxide via Strategic Yttrium Doping”, Tzu-Ho Wu,* Bo-Wei Hou, Yi-Ying Lee, Meng-Che Tsai, Chen-Cheng Liao, and Chun-Chih Chang, ACS Appl. Mater. Interfaces 2024, 16, 50937−50947
3. “Modulating the Catalytic Selectivity for Urea Production in CO2 and N2 Reduction Reaction through Cu19@Ru60 Core/Shell Nanoparticle: A DFT Study”, Chen-Cheng Liao, Yung-Yi Huang, and Chun-Chih Chang*, J. Phys. Chem. C 2024, 128, 12093−12100
4.”A Computational Perspective on Carbon-Carbon Bond Formation by Single Cu Atom on Pd(111) Surface for CO Electrochemical Reduction”, Chen-Cheng Liao, Tsung-Han Tsai, Chun-Chih Chang*, Ming-Kang Tsai*, Inorganics 2023
5.”The Use of Plate-type Electric Force Field for the Explicit Simulations of Electrochemical CO Dimerization on Cu(111) Surface”, Chen-Cheng Liao, Tsung-Han Tsai, Chun-Chih Chang*, Ming-Kang Tsai*, Chem Phys 2023
6. “Predicting the emission wavelength of organic molecules using a combinatorial QSAR and machine learning approach”, Zong-Rong Ye, I.-Shou Huang, Yu-Te Chan, Zhong-Ji Li, Chen-Cheng Liao,
Hao-Rong Tsai, Meng-Chi Hsieh, Chun-Chih Chang and Ming-Kang Tsai *, RSC Adv., 2020, 10, 23834
7.”Superior Stability and Emission Quantum Yield (23% ± 3%) of Single-Layer 2D Tin Perovskite TEA2SnI4 via Thiocyanate Passivation”, Jin-Tai Lin, Yu-Kai Hu, Cheng-Hung Hou, Chen-Cheng Liao, Wei-Tsung Chuang, Ching-Wen Chiu,* Ming-Kang Tsai,* Jing-Jong Shyue,* and Pi-Tai Chou,* small 2020, 2000903
8.”Harnessing Dielectric Confinement on Tin Perovskites to Achieve Emission Quantum Yield up to 21%”, Jin-Tai Lin, Chen-Cheng Liao, Chia-Shuo Hsu, Deng-Gao Chen, Hao Ming Chen,* Ming-Kang Tsai,* Pi-Tai Chou,* Ching-Wen Chiu,* J. Am. Chem. Soc. 2019, 141, 10324-10330
9.”Highly Efficient Nitrogen and Carbon Coordinated N-Co-C Electrocatalyst on Reduced Graphene Oxide Derived from Vitamin-B12 for Hydrogen Evolution Reaction”, Sabhapathy Palani, Chen-Cheng Liao, Wei-Fu Chen,* Tsu-chin Chou, Indrajit Shown, Amr Sabbah, Yan-Gu Lin, Jyh-Fu Lee, Ming-Kang Tsai, Kuei Hsien Chen,* Li-Chyong Chen,* J. Mat. Chem. A 2019, 7, 7179-7185
10.”Ethane Oxidative Dehydrogenation Mechanism on MoO3(010) Surface: A First-Principle Study Using On-site Coulomb Correction”, Chen-Cheng Liao, Chun-Chih Chang, YongMan Choi,* and Ming-Kang Tsai,* Surface Science 2018, 674, 45-50


