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1. Khurram A, Lifu Yan, Yuming Yin, Lingling Zhao, Betar Gallant. Promoting Amine Activated Electrochemical CO2 Conversion with Alkali Salts. The Journal of Physical Chemistry C, 2019, 123(30): 18222-18231. (SCI)
2. Chen, Chao, Lingling Zhao*, Xuan Wu, and Jingfan Wang. Numerical and Experimental Study on Oxy-fuel Coal and Biomass Co-firing in a Bubbling Fluidized Bed. Energy & Fuels, 2019, 33, 5829-5839. (SCI)
3. Chen, Chao, Xuan Wu, and Lingling Zhao*. Simulation of Coal and Biomass Cofiring with Different Particle Density and Diameter in Bubbling Fluidized Bed under O2/CO2 Atmospheres. Journal of Combustion 2018 (2018). (ESCI)
4. Jingfan Wang, Lingling Zhao*, Mingchao Wang, Shangchao Lin.Molecular insights into early nuclei and interfacial mismatch during vapor deposition of hybrid perovskites on titanium dioxide substrate. Crystal Growth & Design, 2017, 17(12), 6201-6211. (SCI)
5. Tian Tian, Shangchao Lin, Siyu Li, Lingling Zhao, Elton J. G. Santos, Chih-Jen Shih. Doping-driven wettability of two-dimensional materials: a multiscale theory. Langmuir. 2017, 33(44): 12827-12837. (SCI)
6. Chao Chen, Lingling Zhao*, Jingfan Wang, Shangchao Lin. Reactive molecular dynamics simulations of biomass pyrolysis and combustion under various oxidative and humidity environments. Industrial & Engineering Chemistry Research. 2017, 56(43): 12276-12288. (SCI)
7. Jiayuan Ji,Lingling Zhao*,Lu Tao, Shangchao Lin. Molecular Gibbs surface excess and CO2-hydrate density determine the strong temperature- and pressure-dependent supercritical CO2−brine interfacial tension. J. Phys. Chem. B. 2017, 121 (25), 6200–6207. (SCI)
8. Lingling Zhao*, Shang Xu, Mingchao Wang, Shangchao Lin. Probing the thermodynamic stability and phonon transport in two-dimensional hexagonal aluminum nitride monolayer. J. Phys. Chem. C. 2016, 120(48), 27675-27681. (SCI)
9. Lingling Zhao*, Jiayuan Ji, Lu Tao, Shangchao Lin. Ionic effects on supercritical CO2−brine interfacial tensions: molecular dynamics simulations and a universal correlation with ionic strength, temperature and pressure. Langmuir. 2016, 32(36), 9188-9196. (SCI)
10. Lingling Zhao*, Lu Tao, and Shangchao Lin. Molecular dynamics characterizations of the supercritical CO2-mediated hexane-brine interface. Industrial & Engineering Chemistry Research, 2015, 54(9), 2489-2496. (SCI)
11. Lingling Zhao*, Shangchao Lin, Jonathan D. Mendenhall, Pak K. Yuet and Daniel Blankschtein, Molecular dynamics investigation of the various atomic force contributions to the interfacial tension at the supercritical CO2–water interface, J. Phys. Chem. B. 2011,115(19),6076-6087. (SCI)
12. Lingling Zhao*, Jos Derksen, Rajender Gupta. Simulations of axial mixing of liquids in a long horizontal pipe for industrial applications. Energy & Fuels, 2010, 24 (11), 5844-5850. (SCI)
13. Wang, HY; Bi, XL; Zhao, LL; Zhou, QT; Kim, HT. A study on thermal stress deformation using analytical methods based on the temperature distribution of storage material in a rotary air-preheater. Applied Thermal Engineering, 2009, 29(11-12), 2350-2357. (SCI)
14. Hongyue Wang, Lingling Zhao, Zhigao Xu. Analysis on thermal stress deformation of rotary air-preheater in a thermal power plant. Korean Journal of Chemical Engineering, 2009, 26(3), 833-839. (SCI)
15. Lingling Zhao*, Qiangtai Zhou, Changsui Zhao. Flame characteristics in a novel petal swirl burner. Combustion and flame. 2008,155, 277-288. (SCI)
16. Hongyue Wang, Lingling Zhao, Zhigao Xu, Wongee Chun, Hyung Taek Kim. The study on heat transfer model of tri-sectional rotary air preheater based on the semi-analytical method. Applied Thermal Engineering. 2008, 28, 1882-1888. (SCI)
17. Hongyue Wang, Lingling Zhao, Qiangtai Zhou, Zhigao Xu, Hyung Taek Kim. Exergy analysis on the irreversibility of rotary air preheater in thermal power plant. Energy.2008, 33, 647-656. (SCI)
18. 吴轩, 赵伶玲*, 陈超. O2/CO2气氛下鼓泡流化床多粒径煤与生物质混燃模拟[J]. 燃烧科学与技术, 2018(6).
19. 季佳圆, 赵伶玲*. 范德华力对Lennard-Jones体黏弹性的影响[J]. 化工学报, 2018, 69(8): 3331-3337. (EI)
20. 陈超, 赵伶玲*, 王镜凡. 甲胺铅碘钙钛矿物性及制备过程的分子模拟[J]. 化工学报, 2018, 69(6). (EI)
21. 陈有福, 徐颂梅, 管诗骈, 丁建良, 姚旭东, 赵伶玲*等. 炉膛火焰中心位置与下水冷壁出口壁温关系研究[J]. 热力发电, 2018, 47(6).
22. 陈有福, 徐颂梅, 管诗骈, 丁建良, 姚旭东, 赵伶玲*等. 基于水冷壁壁温的炉膛火焰中心位置预测方法[J]. 发电设备, 2018, 32(3):163-167.
23. 徐上,赵伶玲*, 蔡庄立,等. 二维氮化铝材料传热性能的模拟研究[J]. 化工学报, 2017, 68(9):3321-3327. (EI)
24. 季佳圆, 赵伶玲*, 李偲宇. 离子对CO2-盐水系统界面特性的影响[J]. 化工学报, 2017, 68(1):223-229. (EI)
25. 季佳圆, 赵伶玲*, 李偲宇. 温度及压强对CO2-盐水系统界面张力的影响[J]. 化工学报, 2017, 68(7):2880-2885. (EI)
26. 罗闽, 赵伶玲*, 李偲宇. 空气预热器硫酸氢铵积灰的数值研究[J]. 动力工程学报, 2016, 36(11):883-888.
27. 赵伶玲*, 方博, 贾青,等. 流化床O2/CO2气氛木屑与煤混燃的数值模拟研究[J]. 太阳能学报, 2016, 37(1):178-184. (EI)
28. 钟磊, 赵伶玲*, 储墨. 鳍片管磨损特性的数值研究[J]. 动力工程学报, 2016, 36(5):389-394.
29. 陶璐, 赵伶玲*, 赵长遂. 余热锅炉入口烟道结构优化设计[J]. 锅炉技术, 2015, 46(4):12-17.
30. 陶璐, 赵伶玲*, 王镜凡. CO2浓度对混溶态(CO2+正己烷)/盐水界面微观特性的影响[J]. 化工学报, 2015, 66(7):2601-2606. (EI)
31. 陈惠超, 王芳, 赵伶玲*. 粉煤灰改性钙基吸收剂循环碳酸化实验研究[J]. 中国电机工程学报, 2015, 35(20):5251-5257.
32. 赵伶玲*, 陶璐, 盛洁,等. 原子间作用力对超临界CO2-水界面张力影响的研究[J]. 工程热物理学报, 2014, 35(10):1992-1996. (EI)