胡孟良,博士,讲师
Email:humengliang6@126.com
基本信息
博士,研究方向为:电催化能源转化系统和热管理领域的应用研究。近年来,在国际学术期刊上发表SCI论文20多篇,其中以第一作者或通讯作者发表论文10篇。
教育经历
2022-2026 中山大学 博士
2018-2021 华南农业大学 硕士
2014-2018 南阳师范学院 学士
工作履历
2026-至今 南阳师范学院化学与制药工程学院 讲师
研究方向
生物质材衍生的多孔碳材料,原位生长纳米复合材料,应用在电催化电解水领域;竞争增材策略制备多孔金属基材料,应用在电催化电解水和热管理领域。
学术成果
(1) Mengliang Hu, Weiqi Tang, Mou Xu, et al. Competitive Additive-Strategy Modulating Superaerophobic/Superhydrophilic Porous Copper for Enhanced Liquid Replenishment and Gas Evolution. ACS Nano, 2025, 19, 34998−35014.
(2) Mengliang Hu, Weiqi Tang, Shu-shen Lyu, et al. Additively Manufactured Micro/Multi-Scale Porous Copper: Enhanced Mass Transport for High-Performance Hydrogen Evolution. Nano Letters, 2026, 26, 1237−1245.
(3) Mengliang Hu, Yuanpeng Qian, Shuhui Yu, et al. Amorphous MoS2 decorated Ni3S2 with a core–shell structure of urchin-like on nickel-foam efficient hydrogen evolution in acidic and alkaline media. Small, 2023, 2305948.
(4) Mengliang Hu, Yuanpeng Qian, Rumeng Zhang, et al. Interfacial electronic modulation of NiCo decorated nano-flowered MoS2 on carbonized wood as a remarkable bifunctional electrocatalyst for boosting overall water splitting. Journal of Colloid and Interface Science, 2025, 677, 729–738.
(5) Mengliang Hu, Qingyao Yang, Shuhui Yu, et al. Under-water “superaerophobic” Surface phosphorus-induced CoFe-LDH decorated wood-based porous carbon: an advanced alkaline electrode for high-performance overall water splitting. Fuel, 2025, 383, 133804.
(6) Mengliang Hu, Zhinan Wang, Mingli Li, et al. In-situ “encapsulation” of Mo:Mo2C with nano-mosaic structure on wood-derived carbon for hydrogen evolution reaction. International Journal of Hydrogen Energy, 2023, 48, 8819-8829.
(7) Mengliang Hu, Zhinan Wang, Mingli Li, et al. Nanosheet MoS2‑Decorated MoO2 on porous carbon as electrodes for efficient hydrogen evolution. ACS Appl. Nano Mater. 2022, 5, 8175−8183.
(8) Mengliang Hu, Zhinan Wang, Mingli Li, et al. Nano-pom-pom multiphasic MoS2 grown on carbonized wood as electrode for efficient hydrogen evolution in acidic and alkaline media. International Journal of Hydrogen Energy, 2021, 46, 28087-28097.
(9) Yuanpeng Qian1, Mengliang Hu1, Liping Li, et al. Graphene oxide decorated nickel-cobalt nanosheet structures based on carbonized wood for electrocatalytic hydrogen evolution. International Journal of Hydrogen Energy. 2023, 48, 13543-13554.
(10) Liufang He, Mengliang Hu*, Shuqi Cao, et al. MoS2 nanoflowers decorated MoO2 on carbon electrode with electron-abundant reinforcement effect for boosting electrocatalytic hydrogen production. J. Electroanal. Chem. 2025, 986, 119099.