【代表性學術著作、論文】 1. Xiaoyang Chen, Tingting Zhang, Wanli Bi, C.R. Cheeseman. Effect of tartaric acid and phosphoric acid on the water resistance of magnesium oxychloride (MOC) cement [J]. Construction and Building Materials, 2019, 213:528-536. (IF=7.693, SCI, 1區(qū), Q1, Top)
2. Xiaoyang Chen, Tingting Zhang, C.R. Cheeseman, et al. Production of rapid-hardening magnesium oxysulfate cement containing boric acid [J]. Journal of Materials in Civil Engineering, 2022, 34(5): 04022045. (IF=3.651, SCI, 3區(qū), Q2)
3. Xiaoyang Chen, Shaoyan Wang, C.R. Cheeseman, Tingting Zhang, et al. Improved low-carbon magnesium oxysulfate cement pastes containing boric acid and citric acid [J]. Cement and Concrete Composites, 2022, 134: 104813. (IF=10.5, SCI, 1區(qū), Q1, Top)
4. Mengze Xu, Xiaoyang Chen*, Lu Han. Effect of tartaric acid on the early hydration process and water resistance of magnesium oxychloride cement [J]. Journal of Building Engineering, 2023, 66: 105838.(IF=7.144, SCI, 2區(qū), Q1)通訊作者
5. Xiaoyang Chen, Bing Chen, Jun Chang, Shaoyan Wang, et al. Improved mechanical strength of magnesium oxysulfate cement using ferric sulfate [J]. Journal of Building Engineering, 2023, 76, 106007.(IF=7.144, SCI, 2區(qū), Q1)
6. Shaoyan Wang, Wanli Bi, Xiaoyang Chen*, et al. Study of using quartz powder as a mineral admixture to produce magnesium oxysulfate cement [J]. Minerals, 2023, 13, 1240.(IF=3.2, SCI, 3區(qū), Q2)通訊作者
7. Tingting Zhang, C.R. Cheeseman, Xiaoyang Chen*, et al. Hydration and strength development in magnesium oxysulfate cement incorporating silicic acid [J]. Composites Part B-Engineering, 2024, 268, 111081. (IF=13.1, SCI, 1區(qū), Q1, Top)通訊作者
8. Kairong Jin, Xiaoyang Chen, Xiangming Zhou, et al. Performance of magnesium oxysulfate (MOS) cement with granite powders after combined sulfate and chloride attacks [J]. Construction and Building Materials, 366, 2023: 130141. (IF=7.693, SCI, 1區(qū), Q1, Top)
9. Mengmeng Yang, Zhaofeng Chen, Xiaoyang Chen, et al. Hierarchically porous networks structure based on flexible SiO2 nanofibrous aerogel with excellent low frequency noise absorption [J]. Ceramics International, 49(1), 2023: 301-308. (IF=5.2, SCI, 2區(qū), Q1)
10. Zhiqi Hu, Jun Chang, Xiaoyang Chen, et al. Preparation of magnesium oxysulfate cement with semidry carbonation high calcium content light-burned magnesium (Ca-LBM) [J]. Construction and Building Materials, 408, 2023: 133664. (IF=7.693, SCI, 1區(qū), Q1, Top)
11. Kairong Jin, Xiangming Zhou, Xiaoyang Chen, et al. Impact of Cl- on the performance of magnesium oxysulfate cement [J]. Construction and Building Materials, 430, 2024: 136472. (IF=7.693, SCI, 1區(qū), Q1, Top)
12. 陳嘯洋, 畢萬利, 張婷婷, 等. 檸檬酸對氯氧鎂水泥的改性 [J]. 硅酸鹽學報, 2019, 47(7): 884-890. (EI檢索)
13. 陳嘯洋, 常鈞, 王紹艷, 等. 硅酸對硫氧鎂水泥耐水性能的影響 [J]. 硅酸鹽學報, 2023, 51(8): 2017-2026. (EI檢索)
14. 高鶴天, 陳嘯洋, 余紅發(fā), 等. 金屬陽離子對氯氧鎂水泥耐水性的影響 [J]. 硅酸鹽學報, 2022, 50(11): 2826-2834. (EI檢索)
15. 周俊峰, 陳嘯洋, 陳兵, 等. 煅燒沸石粉對硫氧鎂水泥耐水性的影響 [J]. 建筑材料學報, 2024, 27(3): 197-205. (EI檢索)
16. 許星星, 陳嘯洋*, 等. 提鈦尾渣對氯氧鎂水泥耐水性的影響 [J]. 硅酸鹽通報, 2022, 41(5): 152-159. (北大核心)通訊作者
【專利】 1. 一種利用脫硫液制備冬季可施工的復合硫氧鎂水泥的方法. 2022年, 中國發(fā)明專利, 授權號: CN113772978A。
2. 一種磷酸鐵硫氧鎂復合水泥基3D打印材料的制備方法. 2023年, 中國發(fā)明專利, 授權號: CN114524658A。
3. 含有機大分子的硫氧鎂膠凝材料及其制備方法. 2023年, 中國發(fā)明專利, 授權號: CN114477813A。
【標準】 1. T/CMMA 8-2020,鎂質膠凝材料制品 硫氧鎂平板. 2021年, 中國-團體標準(已實施)。
2. T/CMMA 9-2023,鎂質膠凝材料制品用氧化鎂. 2023年, 中國-團體標準(已實施)。
【主要科研項目】 1. 國家重點研發(fā)計劃項目(2022YFC3803100)
2. 遼寧省教育廳科研支持項目(JDL201908)