个人简介
教育背景
学士 200606 北京师范大学 化学
联合培养博士生 201004 日本东北大学 化学
博士 201107 清华大学 化学
工作履历
201107 - 201512 清华大学核研院 助理研究员
201512- 至今 清华大学核研院 副教授
研究概况
201701 - 202012 高温气冷堆燃料元件生产关键工艺和技术优化研究 国家重大专项
201101 - 201912 球形燃料元件辐照后性能研究 国家重大专项
201501 - 201712 基于聚集荧光增强机理的铀酰离子荧光探针的设计合成及在核燃料循环中的分析应用 国家自然科学基金
201503 - 201712 用于高氨氮环境的铀吸附材料合成及吸附机理研究 清华大学自主科研
201201 - 201412 席夫碱介孔二氧化硅薄膜的合成及其对铀酰离子的富集与检测性能研究 高等学校博士学科点专项科研基金
200801 - 201312 球形燃料元件生产关键设备和工艺研究 国家重大专项
奖励与荣誉
2019 中国核能行业协会科学技术奖 一等奖 高温气冷堆球形燃料元件规模化制造关键技术研发及应用
2019 清华大学先进工作者
2016 国际热室技术研讨会“最佳报告奖”
2015 中国核学会年度优秀学术论文
2013 中国核学会年度优秀学术论文
2012 第六届高温气冷堆国际会议(HTR-2012)“最佳青年研究奖”
2012 北京核学会年会“最佳青年科技论文奖”
研究领域
复杂体系锕系元素分离及分析技术研究
燃料后处理首端机理及过程研究
近期论文
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Zhang Chi&; Chen Xiaotong*; Liu Bing*; Jiao Zengtong; Fan Luhao; Xu Gang; Wang Taowei; He Linfeng; Qi Meili; Lu Zhenming; Zhao Hongsheng; Yin Zaizhe; Tang Yaping. The electrochemical deconsolidation mechanism of graphite matrix in HTGR spherical fuel elements . J. Nucl. Mater. 2019, 525, 1-6.
Fan Luhao; Zhang Chi; Jiao Zengtong; He Linfeng; Qi Meili; Xu Gang; Chen Xiaotong*. Pore Structure of Matrix Graphite and Its Effect on Ag Diffusion . Chi. J. Appl. Chem. 2019, 36(12), 1430-1438.
Chen Xiaotong*; Lu Zhenming; Zhao Hongsheng; Liu Bing; Zhu Junguo; Tang Chunhe. The Electric Current Effect on Electrochemical Deconsolidation of Spherical Fuel Elements. Sci. Tech. Nucl. Ins. 2017, 2126876.
Chen Xiaotong*; Peng Lu; Feng Mengli; Xiang Yu; Tong Aijun; He Linfeng; Liu Bing; Tang Yaping. An aggregation induced emission enhancement-based ratiometric fluorescent sensor for detecting trace uranyl ion (UO22+) and the application in living cells imaging. J. Lumin. 2017, 186, 301-306.
Chen Xiaotong*; He Linfeng; Liu Bing; Tang Yaping; Tang Chunhe. The uranium recovery from UO2 kernel production effluent. Nucl. Eng. Des. 2016, 310, 187-191.
Chen Xiaotong*; He Linfeng; Liu Bing; Tang Yaping. The development of a materials for uranium sorption in NH3/N environment. J. Radioanal. Nucl. Chem. 2016, 307, 211-215.
Chen Xiaotong*; He Linfeng; Liu Bing; Tang Yaping. Effective uranium (VI) sorption from alkaline media using bi-functionalized silica-coated magnetic nanoparticles. RSC Advances, 2015, 5, 56658-56665.
Chen Xiaotong*, Tong Aijun. Helogenated salicylaldehyde azines: the heavy atom effect on aggregation –induced emission enhancement properties. J. Lumin. 2014, 145, 737-740.
Chen Xiaotong*; Quan Ying; Wang Yang; Liu Bing; Tang Yaping. Treatment of Uranium-containing Process Wastewater With High Concentration Nitrate by Silica Gel Adsorption Method. Atom. Energ. Sci. Tech. 2014, 48(11), 1928-1932.
Chen Xiaotong*; He Linfeng; Liu Rongzheng; Zhang Chi&; Wang Yang; Liu Bing; Tang Yaping. Trace analysis of uranyl ion (UO22+) in aqueous solution by fluorescence turn-on detection via aggregation induced emission enhancement effect. Anal. Chim. Acta 2014, 847, 50-55.
Chen Xiaotong*; Quan Ying; Liu Bing; Tang Yaping. Treatment of uranium-containing process wastewater with high-level by UF-RO-EDI. Technology of Water Treatment, 2014, 40, 93-95.
Chen Xiaotong*; Quan Ying; Wang Yang, Liu Bing; Tang Yaping. Treatment of uranium-containing process wastewater with high concentration nitrate by silica gel adsorption method. Atomic Energy Science and Technology, 2014, 48, 1928-1932.
Chen Xiaotong*; Tong Aijun. Modification of silica nanoparticles with fluorescein hydrozide for Cu(II) sensing. Dyes. Pigments, 2012, 95, 776-783.