博士,硕士生导师,副教授,材化学院学术副院长,中国科学院大学、宁波大学兼职硕士生导师。2019年于华东理工大学化工学院获得工学博士学位;同年7月进入中国科学院宁波材料技术与工程研究所从事博士后研究,2021年出站并晋升为副研究员。2022年入选宁波市领军和拔尖人才培养工程,同年以“学术骨干”高层次人才加入宁波工程学院材化学院。2023年,入选宁波市青年科技创新领军人才。
近年来主持国家自然科学基金面上项目、中国博士后面上基金、宁波市 2025科技重大专项和宁波市自然科学基金等项目,参与国家科技部国际合作与交流专项、国家重点研发计划和国家自然科学基金面上等项目。已在Angew. Chem. Int. Ed.、ACS Catal.和Chem. Eng. J等著名期刊上发表文章50余篇,并获授权国家发明专利5件。现为国家自然科学基金项目、浙江省和宁波市项目通讯评审专家,ACS Appl.Mater. Inter.、Nanoscale 和 Chem. Commun.等多种国际著名期刊的审稿人。
科研方向:
(1)取代硝基芳烃/硝基萘选择性催化加氢制备芳胺/萘胺催化剂开发
(2)不饱和醛酮/酯催化选择性加氢制醇催化剂的开发
(3)多氯苯加氢脱氯催化剂开发
(4)木质素衍生酚类化合物加氢脱氧制备高附加值化学品催化剂的开发
(5)乙烯和丁烯岐化制丙烯催化剂的开发
代表性成果:
(1)低含量蛋壳型Pd基催化剂的开发与催化选择性加氢应用
主持研制的蛋壳型Pd催化剂(球型、三叶草型和拉西环型),在200毫升固定床装置上,连续高空速下运行100小时,丁二酸二甲酯选择性保持98%以上,顺丁二酸二甲酯转化率为100 %,未见明显失活,展现优异稳定性。

(2)低含量蛋壳型Pd基催化剂的开发与催化加氢脱氯应用
主持研制的蛋壳型Pd@Al2O3/C催化剂(球型、三叶草型和拉西环型)在六氯苯加氢脱氯制环己烷/苯反应中连续稳定运行500 h(200毫升催化剂装填量),展现了优异的应用前景。

(3)蛋壳型WO3基催化剂的开发与应用
研制的蛋壳型SiO2@WO3催化剂(在9万吨/年丙烯工业装置侧线实验中连续稳定运行500 h,丙烯收率与进口巴斯夫催化剂性能相当。

主持科研项目:
1.铱-金属氧化物催化剂中界面效应在硝基芳烃选择性加氢反应中的作用机制研究,国家自然科学基金委/面上项目,22072171,2021.01-2024.12。
2.金属-酸双功能核壳型纳米反应器的构筑与酚类生物油加氢脱氧性能研究,宁波市科技局/青年科技创新领军人才,2024QL017,2024.06-2027.06。
3.平管型固体氧化物燃料电池的氨气发电关键技术研究,宁波市科技局/重大专项,20212ZDYF020031,2022.01-2024.12。
4.MOx(M=Fe、Co和Ni)改性的Ir/Al2O3催化剂的合成与生物质转化的研究,中国博士后面上项目,2020M671830,2020.04-2021.12。
5.介孔SiO2封装Pd-MOx(M=Mo、Sn)杂化体纳米反应器的合成及其苯酚选择性加氢性能的研究,宁波市自然科学基金,2020.07-2022.06。
6.新型金属-氧化物纳米杂化体催化剂的合成、金属与氧化物间强相互作用及应用的基础研究,宁波市自然科学基金,2013.07-2015.06。
7.甲醛与乙炔反应合成1, 4-丁炔二醇新型催化剂及工艺技术开发,企业横向。
8.多氯苯高压液相催化加氢技术开发,企业横向。
代表性学术论文:
[1] Zhang, Y.; Liu, J.; Wang, S.; Yu, Z.; Zhang, H.; Wang, D.; Zhu, L.; Wu, C.; Yu, H.*, Enhanced selective hydrogenation of acetophenone over KIT-6 supported Pd-MOx (M = Fe, Co, Ni) hybrid nanostructures. Catalysis Science & Technology 2025, 15 (23), 7244-7250.
[2] Zhang, L.; Yu, H.*; Han, L.; Tao, K., Vacancy engineering of metal-organic framework derivatives for supercapacitors and electrochemical water splitting. Chemical Communications 2025, 61 (49), 8830-8842.
[3] Zhang, L.; Wang, Y.; Yu, H.; Han, L.; Tao, K., One-pot synthesis of MoS2 nanoflakes wrapped 2D zeolitic imidazolate Framework-derived cobalt sulfide nanosheet arrays for high-performance asymmetric supercapacitors. Applied Surface Science 2025, 704, 163508.
[4] Zhang, L.; Luo, F.; Yang, C.; Yu, H.*; Tao, K., Binder-free metal-organic framework-based core–shell arrays for supercapacitors. Dalton Transactions 2025, 54 (47), 17400-17413.
[5] Su, F.; Nie, J.; Yu, H.*; Yue, S.; Guo, J.; Wu, C., Enhancing Piezo-Catalytic Hydrogen Evolution on BiOCl through UV Irradiation. Inorganic Chemistry 2025, 64 (18), 9195-9203.
[6] Li, K.; Wang, Q.; Zhao, Q.; Yu, H.*; Yin, H., Porous Silica Nanoreactors Encapsulating Pd-SnOx Hybrid Nanostructures for the Catalytic Reduction of 4-Nitrophenol. Industrial & Engineering Chemistry Research 2025, 64 (18), 9120-9129.
[7] Li, J.; Wang, S.; Yu, Z.; Zhang, H.; Zhu, L.; Wu, C.; Yu, H.*, Catalytic Enhancement Through Interfacial Engineering: Ir-MoOx Nanocrystals on Silica for Nitroaromatic Hydrogenation. Industrial & Engineering Chemistry Research 2025, 64 (22), 10844-10851.
[8] Chen, B.; Hu, J.; Yu, Z.; Zhu, L.; Wu, C.; Yu, H.*, Improving the Activity and Selectivity of Ir/SiO2 for the Selective Hydrogenation of Unsaturated Carbonyl Compounds by SnO2 Promotion. Industrial & Engineering Chemistry Research 2025, 64 (2), 1181-1188.
[9] Yu, H.*; Wang, S.; Zhu, L.; Wu, C., One-pot synthesis of Pt@Sn core-shell nanocatalysts for the hydrogenation of halonitrobenzene to produce haloaniline with ultra-high selectivity. Applied Surface Science 2024, 643, 158729.
[10] Wang, S.; Wu, B.; Zhang, Q.; Li, Y.; Zhu, L.; Yu, H.*; Yin, H., Design of Pt@Sn core–shell nanocatalysts for highly selective hydrogenation of cinnamaldehyde to prepare cinnamyl alcohol. Chemical Engineering Journal 2024, 488, 151019.
[11] Ding, F.; Yu, H.*; Tu, R.; Li, S.; Chen, L.; Li, B.; Guo, J.; Wu, C., Engineering Au-Pt atomic alloy cocatalysts for enhanced H2 production from photo-reforming of lignocellulosic biomass wastes. Chemical Engineering Journal 2024, 496, 154260.
[12] Zhang, F.; Wu, C.; Wang, S.; Wang, S.; Li, T.; Zou, L.; Yu, H.*; Yin, H., Tailoring the activity and selectivity of Rh/SiO2 for the selective hydrogenation of phenol by CoOx promotion. Catalysis Science & Technology 2022, 12 (7), 2257-2264.
[13] Yang, F.; Yu, H.*; Wu, C.; Wang, S.; Li, T.; Yin, H., RhCu Bimetallic Nanoparticles in Hollow Carbon Spheres for Catalytic Halonitrobenzene Chemoselective Hydrogenation. ACS Applied Nano Materials 2022, 5 (8), 11627-11635.
[14] Wang, S.; Wu, C.; Yu, H.*; Chu, Y.; Wang, S.; Li, T.; Yin, H., Tuning the catalytic performance of Pt/SiO2 catalysts by CoOx modification for selective hydrogenations of unsaturated carbonyl compounds. Applied Surface Science 2022, 606, 154867.
[15] Yu, H.; Zhao, J.; Wu, C.; Yan, B.; Zhao, S.; Yin, H.; Zhou, S., Highly Efficient Ir-CoOx Hybrid Nanostructures for the Selective Hydrogenation of Furfural to Furfuryl Alcohol. Langmuir 2021, 37 (5), 1894-1901.
[16] Yu, H.*; Yu, Z.; Yang, F.; Yan, X.; Yin, H., Enhanced strong metal-support interactions between Pt and WO3-x nanowires for the selective hydrogenation of p-chloronitrobenzene. New Journal of Chemistry 2021, 45 (38), 18065-18069.
[17] Yu, H.*; Wu, C.; Yuan, X.; Yang, F.; Zhang, F.; Yin, H., Hollow and mesoporous aluminosilica-encapsulated Pt-CoOx for the selective hydrogenation of substituted nitroaromatics. Chemical Communications 2021, 57 (72), 9116-9119.
[18] Yu, H.*; Wu, C.; Wang, S.; Li, T.; Yin, H., Transition Metal Oxide-Modified Ir Nanoparticles Supported on SBA-15 Silica for Selective Hydrogenation of Substituted Nitroaromatics. ACS Applied Nano Materials 2021, 4 (7), 7213-7220.
[19] Yang, F.; Wu, C.; Yu, H.*; Wang, S.; Li, T.; Yan, B.; Yin, H., The fabrication of hollow ZrO2 nanoreactors encapsulating Au-Fe2O3 dumbbell nanoparticles for CO oxidation. Nanoscale 2021, 13 (14), 6856-6862.
[20] Zhao, P.-P.; Chen, J.; Yu, H.-B.; Cen, B.-H.; Wang, W.-Y.; Luo, M.-F.; Lu, J.-Q., Insights into propane combustion over MoO3 promoted Pt/ZrO2 catalysts: The generation of Pt-MoO3 interface and its promotional role on catalytic activity. Journal of Catalysis 2020, 391, 80-90.
[21] Wang, S.; Wu, C.; Yu, H.*; Li, T.; Yan, X.; Yan, B.; Yin, H., Fabrication of Ir-CoOx@mesoporous SiO2 Nanoreactors for Selective Hydrogenation of Substituted Nitroaromatics. ACS Applied Materials & Interfaces 2020, 12 (8), 9966-9976.
[22] Yu, H.; Tang, W.; Li, K.; Zhao, S.; Yin, H.; Zhou, S., Enhanced Catalytic Performance for Hydrogenation of Substituted Nitroaromatics over Ir-Based Bimetallic Nanocatalysts. ACS Applied Materials & Interfaces 2019, 11 (7), 6958-6969.
[23] Yu, H.; Tang, W.; Li, K.; Yin, H.; Zhao, S.; Zhou, S., Design of Cu-based intermetallic nanocrystals for enhancing hydrogenation selectivity. Chemical Engineering Science 2019, 196, 402-413.
[24] Li, Q.#; Yu, H.#; Li, K.; Yin, H.; Zhou, S., Controlled Synthesis and Enhanced Catalytic Activity of Well-Defined Close-Contact Pd-ZnO Nanostructures. Langmuir 2019, 35 (19), 6288-6296.
[25] Li, K.; Wei, J.; Yu, H.; Xu, P.; Wang, J.; Yin, H.; Cohen Stuart, M. A.; Wang, J.; Zhou, S., A Generic Method for Preparing Hollow Mesoporous Silica Catalytic Nanoreactors with Metal Oxide Nanoparticles inside Their Cavities. Angewandte Chemie International Edition 2018, 57 (50), 16458-16463.
参加国际国内学术会议情况:
申请者围绕先进界面催化材料的设计和催化选择性加氢应用领域,积极参加第16届国际催化大会(2016)、第十七届全国青年催化学术会议(2018)、第十九届全国催化学术会议(2019)、中国化学会第32届学术年会(2021)和第二十一届全国催化学术会议(2023);参加第八届(2024)和第九届(2025)国际烯烃及聚烯烃大会,并做口头报告。
电子邮箱:hongboyu@nbut.edu.cn