论文著作:
[1] Q. Wang*, J. Lv, L. Guo, et al., Chemical activation of ultramafic tailings for improved large-scale CO2 sequestration in mine backfill, Constr Build Mater 492 (2025).
[2] Z. Tian, Q. Wang*, S. Hou, et al., Effects of multi-sized glass fiber-reinforced polymer waste on hydration and mechanical properties of cement-based materials, Journal of Building Engineering 102 (2025).
[3] Z. Lin, K. Liu, Q. Wang*, et al., Enhancing Corrosion Inhibition Performance of Steel Bars with Modified MgAl-NO2-Layered Double Hydroxide Preparation Methods, Journal of Materials Engineering and Performance (2025).
[4] C. Zheng, Z. Zhang*, Y. Zhu, Q. Wang et al., Leaching behavior of lithium slag at various pH conditions, Cement and Concrete Composites 159 (2025) 105985.
[5] Q. Wang*, H. Zhao, Z. Tian, et al., Variations in chloride ion sorption within Layered double hydroxides engineered with different cation types, Applied Surface Science 655 (2024).
[6] Q. Wang*, Z. Yao, L. Guo, et al., Exploring the potential of olivine-containing copper–nickel slag for carbon dioxide mineralization in cementitious materials, International Journal of Minerals, Metallurgy and Materials 31(3) (2024) 562-573.
[7] Q. Wang*, K. Ma, Z. Yao, et al., Study on the Carbon Dioxide Sequestration Properties of High‐Magnesium Nickel Slag‐Based Cementitious Backfill Materials, Advances in Civil Engineering 2024(1) (2024).
[8] X. Li, X. Shen,Q. Wang*, et al., Influence of surface orientation on the variability of olivine dissolution rates, Applied Surface Science 655 (2024).
[9] H. Li, Q. Wang*, H. Manzano, et al., Mineral dissolution mechanism of alite polymorphs from ReaxFF molecular dynamics and 29Si NMR investigations, Applied Surface Science 655 (2024).
[10] Y. Jin, H. Li, J. Chen, Q. Wang et al., Microscopic Properties of Asphalt and Polyethylene at an Extraordinary High Dosage through Molecular Dynamics Simulation, Buildings 14(1) (2024).
[11] L. Guo, X. Peng, Q. Wang, et al., Research progress on carbon dioxide mineralization sequestration technology by tailings, Green and Smart Mining Engineering 1(3) (2024) 307-321.
[12] C. Sun, Z. Yao, Q. Wang*, et al., Theoretical study on the organic acid promoted dissolution mechanism of forsterite mineral, Applied Surface Science 614 (2023).
[13] A. Lu, W. Xu, Q. Wang, et al., Effect of Different Expansive Agents on the Deformation Properties of Core Concrete in a Steel Tube with a Harsh Temperature History, Materials 16(5) (2023).
[14] X. Li, E.T. Pedrosa, Q. Wang*, et al., Discontinuous Dissolution Mechanism of Olivine Deduced from a Topography Observation Method, Langmuir 39(51) (2023) 19008-19015.
[15] J. Du, Y. Jin, S. Hou, Q. Wang et al., Effect of component characteristics on mechanical properties of asphalt: A molecular dynamics study, Case Studies in Construction Materials 18 (2023).
[16] J. Zhao, C. Sun, Q. Wang*, et al., Thermodynamic, mechanical, and electronic properties of ettringite and AFm phases from first-principles calculations, Constr Build Mater 350 (2022).
[17] C. Shi, B. Qian, Q. Wang*, et al., Structure analysis of beta dicalcium silicate via scanning transmission electron microscope (STEM), Constr Build Mater 348 (2022).
[18] B. Qian, H. Liu, B. Ma, et al., Q. Wang, Bulk trash to nano treasure: Synthesis of two-dimensional brucite nanosheet from high-magnesium nickel slag, Journal of Cleaner Production 333 (2022) 130196.
[19] J. Claverie, Q. Wang*, S. Kamali-Bernard, et al., Assessment of the reactivity and hydration of Portland cement clinker phases from atomistic simulation: A critical review, Cement and Concrete Research 154 (2022) 106711.
[20] J. Zheng, S. Wei, Q. Wang*, et al., Kinetics of alite formation and ye’elimite decomposition in alite-ye’elimite cement clinker, Chemical Papers 75(11) (2021) 5983-5993.
[21] Q. Wang*, Z. Ye, Y. Hu, et al., Effect of gypsum dosage on the hydration and strength of alite-ye’elimite cement synthesized at 1300 °C, Constr Build Mater 287 (2021) 123063.
[22] X. Li, Q. Wang*, X. Shen, et al., Multiscale investigation of olivine (0 1 0) face dissolution from a surface control perspective, Applied Surface Science 549 (2021) 149317.
[23] 王倩倩,戴航, 李利平, 王海彦, et al., 高氯盐加速侵蚀下水泥-水玻璃双液浆结石体耐久性研究, 44(9) (2025) 3137-3146.
[24] 叶梦煊, 谷雷雷, 张梅, 王倩倩et al., 混凝土表面喷涂类有机无机杂化抗碳化剂制备及性能, 材料导报, (2024) 1-15.
[25] 吉久发, 叶梦煊, 曹志国, 王倩倩et al., 高低温环境下混凝土有机-无机复合抗裂养护剂的制备及性能研究, 混凝土与水泥制品, (12) (2024) 1-8.
[26]叶智远, 王倩倩. 铝硅酸盐固废胶凝材料制备及其性能, 28(5) (2020) 658-668.