2014年8月——2018年7月 清华大学化学工程系 学士
2018年8月——2023年6月 清华大学化学工程系 博士
2023年6月——至今 南京理工大学化学与化工学院 副教授
本课题组常年招收相关领域博士研究生和硕士研究生。
欢迎咨询:liuby@njust.edu.cn
研究方向:
非均相催化剂设计、反应机理研究等,主要聚焦于新型催化剂的设计与开发、金属有机框架材料(MOFs)的表征与化学特性研究,关注于C1化学、生物质转化、DFT指导的催化剂设计。
科研项目:
1. 长链烯烃非均相氢甲酰化催化剂设计及反应机理研究,国家自然科学基金青年项目(2025-2027)
2. 端烯烃和内烯烃羰基化至醛催化机理研究,中央高校基本科研业务费项目(2024-2026)
以第一作者或通讯作者在Chem、Nat. Commun.、ACS Catal.、Nano Lett.、Chem. Eng. J.等期刊发表SCI论文10篇。
2024:
[11] Liu B†*, Sun Y†, Li M, et al. Molecular Understanding of Heterogeneous Hydroformylation on Rh1/CeO2: Morphology Effects, ACS Catal., 2024, 14, 21, 15956-15964.
[10] Liu B*, Lan X, Zhong Q, Wang T* Metal Phosphide: An Atypical Catalytic Site, ACS Catal., 2024, 14, 2, 757-775.
2023:
[9] Liu B, Chen X*, Huang N, et al. Imaging the Dynamic Influence of Functional Groups on Metal-Organic Frameworks, Nat. Commun., 2023, 14, 4835.
[8] Liu B†, Chen X†*, Huang N†, et al. Interaction Between Single Metal Atoms and UiO-66 Framework Revealed by Low-dose Imaging, Nano Lett., 2023, 23, 5, 1787-1793.
2022:
[7] Liu B, Wang Y, Huang N, et al. Heterogeneous Hydroformylation of Alkenes by Rh-based Catalysts, Chem, 2022, 8, 10, 2630-2658.
[6] Liu B, Huang N, Wang Y, et al. Regioselectivity Regulation of Styrene Hydroformylation over Rh-based Phosphides: Combination of DFT Calculations and Kinetic Studies, Chem. Eng. J., 2022, 441, 136101.
[5] Liu B, Wang Y, Liu S, et al. Understanding the Facet Effects of Heterogeneous Rh2P Catalysts for Styrene Hydroformylation, Catal. Sci. Technol., 2022, 12, 20, 6112-6119.
2021:
[4] Liu B, Huang N, Wang Y, et al. Insights into the Activity Screening and Hydroformylation Kinetics of Rh-Based Bimetallic Phosphides, ACS Catal., 2021, 11, 24, 15235–15243.
[3] Liu B, Wang Y, Huang N, et al. Activity Promotion of Rh8–xCoxP4 Bimetallic Phosphides in Styrene Hydroformylation: Dual Influence of Adsorption and Surface Reaction, ACS Catal., 2021, 11, 15, 9850–9859.
[2] Liu B, Huang N, Wang Y, et al. Promotion of Inorganic Phosphorus on Rh Catalysts in Styrene Hydroformylation: Geometric and Electronic Effects, ACS Catal., 2021, 11, 3, 1787–1796.
2020及以前:
[1] Liu B, Xiao D, Wang Y, et al. Correlating C═ C, C═ O, and C═ N Hydrogenation Activity with Hydrogen Binding Energies on Ni–Fe Bimetallic Catalysts, J. Phys. Chem. C, 2020, 124, 34, 18595–18603