姓名:陈宇轩
生日:1990.01
家乡:湖北省武汉市
联系方式:Yuxuan.chen@whu.edu.cn
主要研究领域:
1.超轻植物基混凝土;
2.气凝胶;
3.纳米氧化硅;
4.超高性能混凝土。
教育工作经历:
2024年7月-至今 武汉大学,土木建筑工程学院,特聘副研究员
2022年1月-2024年7月 武汉大学,土木建筑工程学院,海外引进博士后,研究课题:超强竹基纤维在超高性能混凝土中的应用。
2021年11月-至今 埃因霍温理工大学,客座博士后,研究课题:气凝胶超保温建筑材料。
2016年11月 至2021年11月 埃因霍温理工大学,建筑环境学院,土木工程材料,博士, 研究课题:可持续高性能建筑材料。
2015年10月 至2016年10月 埃因霍温理工大学, 建筑环境学院, 助理研究员,研究课题:芒草轻质混凝土的隔热吸声性能研究。
2012年09月 至2015年06月 武汉理工大学材料科学与工程学院,硅酸盐建筑材料国家重点实验室,硕士,研究课题:LDHs插层材 料提高混凝土抗氯离子侵蚀性能的研究。
2008年09月 至2012年06月 武汉理工大学,材料科学与工程学院,材料化学,本科。
主持或参与科研项目经历:
2023 年-2025 年 国家自然科学基金青年项目,30万元,主持
2023 年-2024 年 博士后国际交流计划引进项目,60万元,主持
2023 年-2024 年 中国博士后科学基金第71批面上资助,8万元,主持
2021 年-2025 年 荷兰任务驱动研究、发展和创新计划 Mission Driven Research, Development and Innovation (MOOI),高端建筑结构隔绝技术—先进材料和制备方法,100w欧元,参与
2016 年-2017 年 欧盟地平线科研项目,生物基3D打印混凝土研究,参与
2013 年-2016 年 国家自然科学基金面上项目, 固碳插层材料抑制混凝土碳化反应的基础研究,参与
讲授课程:
土木工程材料
高等建筑材料
先进土木工程材料
奖励荣誉:
国家建设高水平大学公派博士研究生,留学基金委,4年资助,2017-2021。
武汉理工大学奖学金,2010/2011/2014。
代表成果:
[1]. Mengyu Zhu, Qingliang Yu*, S. R. van der Laan, Yuxuan Chen*, Dipotassium hydrogen phosphate activated Al-rich steel slag: The role of layered double hydroxides and aluminum hydrate gel, Cement and Concrete Research, 189 (2025) 107783.
[2]. Jiayu Huang, Yuxuan Chen*, H.J.H. Brouwers, Qingliang Yu, Stabilization of Amorphous Calcium Carbonate (ACC) in Carbonated Recycled Cement Powder Based on Colophony Encapsulation, ACS Sustainable Chemistry & Engineering, 13 (2025) 30: 11913–11933.
[3]. Lulu Cheng, Yuxuan Chen*, Zhaoping Song, Qian Deng, Qingliang Yu*, Effects of relative humidity on carbonation kinetics and strength development of carbonated wollastonite composites containing sodium tripolyphosphate, Cement and Concrete Composites, 155 (2025) 105831.
[4]. Jiaxin Yi, Shaojun Fu, Jiayu Huang, Yuxuan Chen*, Synergistic modification of recycled aggregate using carbonation and hydrophobic Nano-Silica: Effect on interfacial performance of recycled aggregate concrete, Journal of Building Engineering, 107 (2025) 112740.
[5]. Xuan Ling, Yuxuan Chen*, Katrin Schollbach, H.J.H. Brouwers, Carbonation of digested sewage sludge-based sealing material in a final landfill cover system: Role of waterglass and additional industrial, Process Safety and Environmental Protection, 201 (2025) 107475.
[6]. L. Cheng, Y.X. Chen*, Z. Song, L. Zhang, Q. Yu*, High performance CaCO3-based composites using sodium tripolyphosphate as phase controlling additive: Bamboo fiber driven high strength development, Construction and Building Materials, 445 (2024) 137961.
[7]. H. Gao, L. Jin, Y.X. Chen*, Q. Chen, X. Liu, Q. Yu*, Rheological behavior of 3D printed concrete: Influential factors and printability prediction scheme, Journal of Building Engineering, 91 (2024) 109626.
[8]. L.L. Cheng, Y.X. Chen, Q. Yu*, Application of bio-inspired materials in CO2 sequestration of cementitious construction materials, in: F. Pacheco-Torgal, C. Shi, A. Palomo (Eds.), Carbon Dioxide Sequestration Cem. Constr. Mater., 2nd ed., Woodhead Publishing, London, 2024: p. 428. (共同一作)
[9]. Y.X. Chen, L. Zhang, K. Wei, H. Gao, Z. Liu, Y. She, F. Chen, H. Gao, Q. Yu*, Rheology control and shrinkage mitigation of 3D printed geopolymer concrete using nanocellulose and magnesium oxide, Construction and Building Materials, 429 (2024) 136421.
[10]. L. Cheng, Y.X. Chen*, T. Liu, H.J.H. Brouwers, Q. Yu*, Understanding the CaCO3 phase transition of carbonated wollastonite composites caused by sodium tripolyphosphate: From amorphous to crystalline, Cement and Concrete Composites, 148 (2024) 105477.
[11]. X. Ling, K. Schollbach, Y.X. Chen*, H.J.H. Brouwers, The effect of nano-silica and silica fume on the sodium carbonate-activated slag system containing air pollution control residues, Waste Management, 176 (2024) 52–63.
[12]. Y.X. Chen, Q. Yu*, Surface modification of miscanthus fiber with hydrophobic silica aerogel for high performance bio-lightweight concrete, Construction and Building Materials, 411 (2024) 134478.
[13]. H. Gao, Y.X. Chen*, Q. Chen, Q. Yu*, Thermal and mechanical performance of 3D printing functionally graded concrete: The role of SAC on the rheology and phase evolution of 3DPC, Construction and Building Materials, 409 (2023) 133830.
[14]. S. Li, Y.X. Chen*, H.J.H. Brouwers, Q. Yu*, Effects of amorphous silica on mechanical contribution of coarse aggregates in UHPC: From micromechanics to mesoscale fracture and macroscopic strength, Cement and Concrete Composites, 142 (2023) 105225.
[15]. Y. She, Y.X. Chen*, L. Li, L. Xue, Q. Yu*, Understanding the generation and evolution of hydrophobicity of silane modified fly ash / slag based geopolymers, Cement and Concrete Composites, 142 (2023) 105206.
[16]. Y.X. Chen, K.M. Klima, H.J.H. Brouwers, Q. Yu*, Effect of silica aerogel on thermal and acoustic insulation of geopolymer foam concrete: Towards the role of different particle size, Composites Part B: Engineering, 242 (2022) 110048.
[17]. Y.X. Chen, S. Li*, B. Mezari, E.J.M. Hensen, R. Yu, K. Schollbach, H.J.H. Brouwers, Q. Yu*, Effect of highly dispersed colloidal olivine nano-silica on early age properties of ultra-high performance concrete, Cement and Concrete Composites, 131 (2022) 104564.
[18]. Y.X. Chen, G. Liu*, K. Schollbach, H.J.H. Brouwers, Development of cement-free bio-based cold-bonded lightweight aggregates (BCBLWAs) using steel slag and miscanthus powder via CO2 curing, Journal of Cleaner Production, 322 (2021).
[19]. Y.X. Chen, S. Sepahvand, F. Gauvin, K. Schollbach, H.J.H. Brouwers, Q. Yu*, One-pot synthesis of monolithic silica-cellulose aerogel applying a sustainable sodium silicate precursor, Construction and Building Materials, 293 (2021).
[20]. Y.X. Chen*, Y. Hendrix, K. Schollbach, H.J.H. Brouwers, A silica aerogel synthesized from olivine and its application as a photocatalytic support, Construction and Building Materials, 248 (2020) 118709.
[21]. Y.X. Chen, F. Wu, Q. Yu*, H.J.H. Brouwers, Bio-based ultra-lightweight concrete applying miscanthus fibers: Acoustic absorption and thermal insulation, Cement and Concrete Composites, 114 (2020) 103829.
[22]. A. Lazaro, Y.X. Chen*, C. Verhoeven, Y. Hendrix, One-step synthesis of ordered mesoporous silica from olivine and its pore size tailoring, Journal of Cleaner Production, (2019).(共同一作)
[23]. Y.X. Chen, R. Yu*, X. Wang, J. Chen, Z. Shui, Evaluation and optimization of Ultra-High Performance Concrete (UHPC) subjected to harsh ocean environment: Towards an application of Layered Double Hydroxides (LDHs), Construction and Building Materials, 177 (2018) 51–62.
[24]. Y.X. Chen, Q.L. Yu*, H.J.H. Brouwers, Acoustic performance and microstructural analysis of bio-based lightweight concrete containing miscanthus, Construction and Building Materials, 157 (2017) 839–851.
[25]. Y.X. Chen, Z. Shui, W. Chen*, Q. Li, G. Chen, Effect of MgO content of synthetic slag on the formation of Mg-Al LDHs and sulfate resistance of slag-fly ash-clinker binder, Construction and Building Materials, 125 (2016) 766–774.
[26]. 陈宇轩, 水中和, 陈伟, 段平, 陈国玮, LDHs改性偏高岭土基地聚物涂料对混凝土耐久性的影响研究, 硅酸盐通报. 34 (2015) 1968–1973.
[27]. Y.X. Chen, Z. Shui, W. Chen*, G. Chen, Chloride binding of synthetic Ca-Al-NO3 LDHs in hardened cement paste, Construction and Building Materials, 93 (2015) 1051–1058.
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