
基本信息
姓 名:王倩倩
性 别:女
出生年月:1988年2月
籍 贯:山东潍坊
职 称:副教授、硕导
电子邮箱:qqwang at njtech.edu.cn
办公地点:润德楼A304
学缘与工作经历
2020/07-至今, 南京工业大学,副教授
2017/11-2020/6,南京工业大学,讲师
2015/12-2017/10,南京工业大学,博士后
2016/07-2017/10,德国不来梅大学,博士后,合作导师A. Lüttge
2014/04-2015/06,西班牙巴斯克大学,访问博士, 合作导师H. Manzano
2010/09-2015/12,南京工业大学,博士,导师:沈晓冬
教学与科研简介
承担本科生《计算机在材料科学中的应用》、《无机非金属材料工学》和研究生《信息检索》等课程教学。完成校级教改项目1项,参与国家及省级一流课程《无机非金属材料工学》课程建设及教学改革项目,发表教改论文多篇。校企共建研究生工作站多个。指导本科生和研究生获得多项科研奖励:第三届中国研究生“双碳”创新与创意大赛二等奖(2024,国赛B类),“江煤科技杯”第四届江苏省大学生节能减排社会实践与科技竞赛二等奖(2024,省赛B类)及校级科创比赛多项,The 10th International Symposium on Cement and Concrete最佳口头报告(2022,姚泽群)和国家奖学金(2024,吕健辉)等。个人获得第五届全国土木工程材料教师讲课比赛三等奖、校本科毕业设计(论文)优秀指导教师、院“创新创业优秀指导教师”和“教学改革先进个人”等。
长期从事低碳/负碳胶凝材料开发、尾矿及冶炼渣资源化利用、材料多尺度计算模拟和防水材料等方面开展研究工作。近年来,在Cement and Concrete Research,Applied Surface Science, Corrosion Science, Construction and building materials和Journal of Physical Chemistry C等学术期刊上发表SCI一区/二区高水平学术论文二十余篇。申请并授权发明专利多项,参与团体标准编制2项。Green and smart mining engineering期刊青年编委。中国建材工业经济研究会尾矿资源化产业分会常务理事。获2019年中国硅酸盐学会中国建筑材料联合会基础研究类一等奖。获2023年中国黄金协会科学技术奖一等奖。入选2022年盐城市“科技副总”。依托材料化学工程国家重点实验室、教育部无机非金属材料与应用创新团队、国家新材料测试评价平台复合材料行业中心和建材行业集料碱活性研究测试中心等国家级和省级科研平台和团队,主持或在研项目多项:
(1)高性能土木工程国家重点实验室开放基金项目,2022-2024,主持
(2)国家自然科学基金面上项目,基于多尺度计算与表征研究高介稳多晶型阿利特水化机理,58万,2021-2024,主持
(3)国家重点研发计划政府间国际科技创新合作中乌项目子课题,2021-2023,主持
(4)国家重点研发计划政府间国际科技创新合作中美项目子课题,2022-2024,主持
(5)国家自然科学基金山东联合基金子课题,2019-2022,主持
(6)国家自然科学基金青年基金,硅酸钙矿物水化反应位点计算及活性调控理论研究,20万,2017-2020,主持
(7)与矿冶集团、中建、中交和中铁等合作项目5项,主持
近五年发表论文
[1] X. Chen, S. Wei, Q. Wang*, et al., Morphology prediction of portlandite: Atomistic simulations and experimental research, Applied Surface Science 502 (2020) 144296.
[2]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.
[3] 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.
[4] 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.
[5] 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.
[6] 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.
[7] B. Qian, H. Liu, B. Ma, Q. Wang*et al., Bulk trash to nano treasure: Synthesis of two-dimensional brucite nanosheet from high-magnesium nickel slag, Journal of Cleaner Production 333 (2022) 130196.
[8] 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).
[9] 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).
[10] 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).
[11] 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.
[12] 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).
[13] 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).
[14] 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.
[15] 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).
[16] 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).
[17] X. Li, X. Shen, Q. Wang*, et al., Influence of surface orientation on the variability of olivine dissolution rates, Applied Surface Science 655 (2024).
[18] 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).
[19] 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.
[20] 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).
[21] 王立川, 李景, 于长彬, 王倩倩et al., 角闪岩弃碴机制砂和石粉掺量对混凝土性能的影响机理 [J] 硅酸盐通报, 43(01) (2024) 246-256.
[22] 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 [J] 材料导报, (2024) 1-15.
[23] 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 [J] 混凝土与水泥制品, (12) (2024) 1-8.
授权代表性发明专利
[1] 一种硅酸盐水泥熟料及其制备方法,ZL202011228838.8
[2] 一种水泥熟料中阿利特晶体结构调控方法,ZL202011228814.2
[3] 一种混凝土自清洁有机无机杂化防水涂料及其制备方法, ZL202310104671.1
[4] 一种铜镍渣3d打印免烧碳化陶粒及其制备方法, ZL202310104674.5
[5] 一种低成本大掺量镍渣基负碳胶凝材料及其固碳方法, ZL202310763960.2