Xuqinghong头像

Xuqinghong

Professor

Research direction: Synthesis and Functionalization of Porous Materials

Department Secretary

Education: Ph.D

10 Access

  • Email: xuqh@mail.buct.edu.cn
  • Office : No.620 in Comprehensive Building in Chaoyang Campus

Introduction

Qinghong Xu, male, professor and doctoral supervisor at Beijing University of Chemical Technology, renowned teacher in experimental teaching at Beijing University of Chemical Technology.

Qinghong Xu  was admitted as a graduate student in Organic Chemistry at Jilin University in 1995 and obtained a master's degree in 1998; In 1998, he was admitted to the doctoral program in Inorganic Chemistry at Jilin University and obtained a Doctor of Science degree in July 2001. From August 2001 to August 2002, he worked as a postdoctoral researcher at the High School of Chemistry in Montpellier (CNRS) in France. From October 2002 to October 2004, and worked as a JSPS Foreigner Special Researcher at the Department of Chemistry in Osaka University, Japan. He joined the School of Chemistry at Beijing University of Chemical Technology in November 2004.

As to the research area. In the past years, he mainly worked in the field of porous materials and achieved remarkable research results in synthesis and functional applications of porous materials. he has undertaken and completed multiple Natural Science Foundation projects of China and China National Petroleum Corporation fund projects, and published more than 90 SCIE papers. He have been granted 7 patents, and some of his research results have been industrialized.

As to teaching. he responses for the basic chemistry experiment course in Beijing University of Chemical Technology. He has in-depth research on organization, management and discipline construction of Chemistry Experiment Teaching. He has published multiple papers in experimental teaching, such as in University Chemistry. As a guiding teacher, He has won several awards in the Beijing University Student Chemistry Experiment Competition, North China University Student Chemistry Experiment Innovation Competition and National University Student Chemistry Experiment Innovation Competition. He is one of the first batch renowned teachers in experimental teaching in Beijing University of Chemical Technology.


Education

Work Experience

Social Position

Social Activities

Research

With the idea of serving motherland by through scientific research, He engaged in scientific research work actively in the past years and achieved rich results. His research mainly focuses on the following aspects:

(1) Synthesis of layered porous organic-inorganic composite functional materials. The research in this area mainly focuses on the modification and self-assembly in molecular sieve porous materials, surface modification and functionalization of layered phosphates (such as zirconium phosphate and zirconium phosphonate), and the synthesis of functional materials with efficient catalysis, adsorption and catalytic active center carriers, etc. Especially after backed to China in 2004, his research focuse on the synthesis and properties of new organic zirconium phosphonate, exploring the synthesis rules of this type material from two-dimensional layered to three-dimensional pore structures. A series of organic zirconium phosphonate optoelectronic, superhydrophobic and high adsorption materials with novel structures have been synthesized, which fills the gap in international research on organic phosphonate zirconium materials. More than 70 papers were published in this field and 7 national authorized patents have been obtained. Some results were published in internationally renowned journals such as Chemistry of Materials, Journal of Material Chemistry, Industrial&Engineering Chemistry Research, Sensors and Actors B, Microporous and Mesoporous Materials, Materials Chemistry and Physics, and Applied Surface Science.

(2) The research on integrated synthesis of polyolefin metallocene catalysts and supports is another area to solve the problem of olefin polymerization catalysts easily detach from supports. The proposal of this innovative idea was immediately recognized by experts, and this research approach was also supported by the Natural Science Foundation of China, which was supported in 2014. The research have successfully solved the problem on reduction of catalyst activity caused by the detachment of active centers from the support during the polymerization process, which provides technical support for China to develop high-performance olefin polymerization catalysts. This research has obtained four national invention patent authorizations and published nearly 10 papers.

 (3) Research on the synthetic method to ultrafine nanoparticles. Research on ultrafine nanoparticles is always a hot topic in academic community, for the ultrafine nanoparticle has exhibit special and excellent properties. On basis of previous research on the characteristic of polyhydroxy compounds easily form molecular cages in aqueous solutions to achieve limited-area synthesis to nanoparticles. The particle size of nanoparticle synthesized is less than 10 nanometers. The research achievement has received high attention from domestic and foreign experts and it has developed into a universal method to synthesize ultrafine nanoparticles. More than ten related research papers were published, most of them published in top international journals.


Teaching

The main undergraduate courses undertaken. He has undertaken undergraduate courses such as University Chemistry, New Functional Materials, Progress in Functional Materials and University Chemistry Experiments since 2005,. University Chemistry is a compulsory course for non-chemical major students, and University Chemistry Experiments is a compulsory course for chemistry majors and related majors students.

The graduate teaching courses undertaken. He has undertaken the master's degree course Inorganic Organic Composite Materials Chemistry since 2007.

 Lectures for undergraduate students in Changping Campus. Two lectures are given to undergraduate students in Changping Campus every year.

Undergraduate courses, such as Inorganic Chemistry, Organic Chemistry, Environmental Chemistry, and University Chemistry Experiments, He can undertake. The graduate program depends on specific teaching requirements.


Postgraduates

Funding

1. Research on uranium erbium matrix separation technology (2024.01-2025.01). Commissioned by enterprises and institutions as a scientific and technological project.

2. Development of synthesis technology for bistriphenylsilyl chromate (2022.06-2024.07). Commissioned by enterprises and institutions as a scientific and technological project.

3. Research on the synthesis and loading process of high hydrogen sensitivity metallocene polypropylene catalysts (2018.11-2019.12). Commissioned by enterprises and institutions as a scientific and technological project.

4. Construction of integrated synthesis method for heterogeneous metallocene catalysts for alkene copolymerization (2014.01-2016.12). From Natural Science Foundation of China.

5. A method for preparing spinel shaped ferrite under mild conditions (2011.01-2015.07). Commissioned by enterprises and institutions as a technology project.

6. Research on spherical layer porous zirconium phosphonate polyolefin catalyst carrier (2010.05-2012.05). Commissioned by enterprises and institutions as a scientific and technological project.

7. Research and development of new polypropylene catalyst external electron donor (2009.01-2010.12). Commissioned by enterprises and institutions as a scientific and technological project.

8. In situ Synthesis of Polyolefin Catalysts on Carriers (2012.12-2013.07). Ministry of Education College Student Science and Technology Training Program Project.

9. Synthesis and Characterization of Ferromagnetic Nanowires (November 2011.11-2012.12). Ministry of Education College Student Science and Technology Training Program Project.

10. Synthesis and Property Study of Organic Zirconium Phosphate Porous Materials with Multiple Coordination Groups (2010.10-2011.09). National College Student Science and Technology Training Program of the Ministry of Education.

11. Directional Grafting of Spinel shaped Ferrite on Single Crystal Silicon Surface and Optoelectronic Conversion of Composite Semiconductors (January 2007.01- 2009.12). National Natural Science Foundation of China Project.

12. Ministry of education's research initiation fund for returned overseas (2006.01-2006.12).


Vertical Project

Horizontal Project

Publications

1. Jianjun Zhao, Nana Liu, Yanzhi Sun, Qinghong Xu*, Junqing Pan. Journal of Energy Storage, 2023, 73, 109070.  IF: 9.4

2. Qinghong Xu,Ziqi Sun,Rui Tian,Kaitao Liand Chao Lu. Chem. Commun., 2023, 59, 2652.  IF: 4.9

3. KeMa, Yuli Gao, Jianjun Yi, Meng Cui, Haijun Hao, Qinghong Xu*. J Am Ceram Soc., 2023,106, 2679–2688.  IF: 3.9

4. Xiaolong Dong, Yuli Gao, Fenghua Zu, Jianjun Yi, Suyun Li, Shan Fu, Haijun Hao, Qinghong Xu*. Silicon, 2022, 14, 12541–12551.  IF: 3.4

5. Ke Ma, Haiwei Cui, Annan Zhou, Honghua Wu, Xiaolong Dong, Qinghong Xu*. Microporous and Mesoporous Materials, 2021, 323, 111164.  IF: 5.2

6. Annan Zhou, Jinzhou Li, Guohui Wang, Qinghong Xu*. Applied Surface Science, 2020, 506, 144570.  IF: 6.7

7. Qiannan Feng, Feng Liu, Jiongliang Yuan, Qinghong Xu*Int. J. Electrochem. Sci., 2020, 15, 2863–2873.  IF: 3.7

8. Qinghong Xu, Jiali Liang,Xu Teng,Xin Yue,Ming Lei, Caifeng Ding and Chao Lu. Chem. Commun.,2019, 55, 5563-5566.  IF: 4.9

9. Guohui Wang, Ruiqi Huang, Annan Zhou, Qinghong Xu. Solid State Sciences, 2019, 95, 105933.  IF: 3.5

10. Guohui Wang, Annan Zhou, Qinghong Xu.Solid State Sciences, 2019, 91, 54–60.  IF: 3.5

11. Nan Jing, Haiyan Li, Hao Yu, Zhiwei Yan, Zhuo Wang, and Qinghong Xu*. J. Nanosci. Nanotechnol., 2019, 19, 780–785.  IF: 3.7

12. Nan Jing, An-Nan Zhou, Ying-Qiao Xiang, Qing-Hong Xu*. Materials Chemistry and Physics, 2018, 205, 480–486.  IF: 4.6

13. Annan Zhou, Nan Jing, Guohui Wang, and Qinghong Xu*. Ind. Eng. Chem. Res., 2018, 57, 15031−15038.  IF: 3.4

14. Nan Jing, Annan Zhou, Qinghong Xu*. Journal of Hazardous Materials, 2018, 353, 89–98.  IF: 13.6

15. Zhihao Si, Song Hu, Di Cai,a Peiyong Qin and Qinghong Xu*.RSC Adv., 2018, 8, 51275135.  IF: 3.9

16. Qinghong Xu, Shanshan Yuan,Li Zhu,Jian Hao and Yongge Wei. Chem. Commun., 2017, 53, 5283–5286.  IF: 4.9

17. Yingqiao Xiang, Yingying Li, Xintong Zhang, Annan Zhou, Nan Jing and Qinghong Xu*. RSC Adv., 2017, 7, 3161931627.  IF: 3.9

18. Annan Zhou, Yuejuan Zhang, Yasai Shi and Qinghong Xu.RSC Adv., 2017, 7, 5586655873.  IF: 3.9

19. Abubaker Abutartour, Lotfia El Majdoub, Yashai Shi, Nili Li, Qinghong Xu*Journal of Inorganic Materials, 2017, 32(3), 305–312.  IF: 1.7

20. Yingqiao Xiang, Tiantian Li, Qinghong Xu*. Chinese Journal of Inorganic Chemistry, 2017, 33(4), 615–622.  IF: 0.7

21. Yuan Yuan, Jianjun Yi, Yujian Shi and Qinghong Xu*. Chinese Journal of Inorganic Chemistry, 2017, 33124, 2329–2337.  IF: 0.7

22. Yasai Shi, Yuan Yuan, Qinghong Xu*, Jianjun Yi. Applied Surface Science, 2016, 383, 126–132. IF: 6.7

23. Lotfia El Majdoub, Yasai Shi, Yuan Yuan, Annan Zhou, Abubaker Abutartour, Qinghong Xu*. Applied Surface Science, 2015, 353, 376–381.  IF: 6.7

24. Abubaker Abutartour, Yunjie Jia, Lotfia El Majdoub, Qinghong Xu*. Microporous and Mesoporous Materials, 2014, 196, 1–7.  IF: 5.2.

25. Lijun Dong, Chunling Ge, Peiyong Qin*, Yan Chen, Qinghong Xu*. Solid State Sciences, 2014, 31: 815.  IF: 3.5.

26. Yan Chen, Nili Li, Shijing Mo, and Qinghong Xu*. Ind. Eng. Chem. Res., 2013, 52: 1619016196.  IF: 3.4.

27. Shijing Mo, Xiuqiao Zhao, Yan Chen, Liang Liu, Ruiwei Wang, Qinghong Xu*. Materials Chemistry and Physics, 2013, 140: 228-235.  IF: 4.6

28. Qing-Hong Xu, Dong-Mei Xu, Mei-Yu Guan, Ying Guo, Qi Qi, Guo-Dong Li.Sensors and Actuators B,2013, 177, 1134–1141.  IF: 8.4.

29. Yunjie Jia, Yuejuan Zhang, Runwei Wang, Faying Fan, Qinghong Xu.*Applied Surface Science,2012, 258, 2551– 2561.  IF: 6.7.

30. Yunjie Jia, Yuejuan Zhang, Ruiwei Wang, Jianjun Yi, Xu Feng,and Qinghong Xu*.Ind. Eng. Chem. Res., 2012, 51, 1226612273.  IF: 3.4.

31. Yuejuan Zhang, Jianjun Yi, Qinghong Xu*.Solid State Sciences, 2011, 13: 54-58.  IF: 3.5.

32. Xuemei Ji, Yao Liu, Minglei Li, David G. Evans, Qinghong Xu*. Solid State Sciences, 2011, 13, 404408.   IF: 3.5.

33. Mariana Fernandes, Sónia S. Nobre, Xu Qinghong, Carole Carcel, Jean Nicolas Cachia, Xavier Cattoën, José M. Sousa, Rute A. S. Ferreira, Luís D. Carlos, Celso V. Santilli, Michel Wong Chi Man, and Verónica de Zea Bermudez. J. Phys. Chem. B, 2011, 115 (37), 10877–10891.  IF: 3.377.

34. Yaqing Zhang, Minglei Li, Xuemei Ji, Qinghong Xu*. Solid State Sciences, 2010, 12, 361–366.   IF: 3.5.

35. Qinghong Xu*, Yaqing Zhang, Jianjun Yi, Yuan Yuan, Samawar Mansur. Microporous and Mesoporous Materials,2009, 119, 68–74.   IF: 5.2

36. Qinghong Xu*, Yabo Wei, Yao Liu, Xuemei Ji, Lan Yang, Mingguang Gu. Solid State Sciences, 2009, 11, 472–478.  IF: 3.5.

37. Xuemei Ji, Minglei Li, Yuxue Zhao, Yabo Wei, Qinghong Xu*.Solid State Sciences, 2009, 11, 1170–1175.   IF: 3.5.

38. Yuxue Zhao Yabo Wei, Wensheng Yang, Pudun Zhang, Xin Zhou, Qinghong Xu*. J. Mater. Sci. Technol., 2008, 24(2), 157160.   IF: 10.9.

39. Qinghong Xu*, Yuxue Zhao, Yabo Wei, Wensheng Yang, Feng Li, Mingguang Gu. Solid State Sciences, 2008, 10, 337345.   IF3.5

40. Yuan Yuan, Jianjun Yi, Chenglin Maand Qinghong Xu*. J. Mater. Sci. Technol., 2007, 23(5), 717720.  IF: 10.9.

41. Qinghong Xu*, Yuan Yuan, Jianjun Yi, Chenglin Ma. Solid State Sciences,2007, 9, 732736.   IF3.5.

42. Q.H. Xu*, Y.X. Zhao, F. Huang, Z.Q. Zhang, Y.B. Wei. Surface Science, 2007, 601, 1709–1715.  IF: 1.9

43. Masato Ohashi, Akihiro Yagyu, Qinghong Xu, and Kazushi Mashima. Chemistry Letters, 2006, 35(8), 954-955.  IF: 2.331

44. Xu Qinghong, J.J.E. Moreau and Michel Wong Chi Man, Journal of Sol-Gel Science and Technology, 2004, 32, 111–115.  IF: 2.5

45.   Qinghong Xu*, Wenjun Wu, Hongwu Li, Liansheng Li, Shouhua Feng, Ruren Xu.Solide State Science., 2003, 5, 777782.  IF: 3.5.

46.   Qinghong Xu*, Hongwu Li, Liansheng Li, Yongcun Zou and Ruren Xu. Chem.J.Chinese Univ., 2003, 24(10), 17581760.  IF: 0.954.

47. Qinghong Xu, Liansheng Li, Xinsheng Liu and Ruren Xu. Chemistry of Materials, 2002, 14(2), 549555.  IF8.6.

48. Fu Lianshe; Xu Qinghong; Zhang Hongjie; Li Liansheng ; Meng Qingguo ; Xu Ruren.Mater.Sci. Eng.,B2002, 88(1), 6872. IF: 7.9.

49. Xu, Qinghong; Zhao, Zhixing; Li, Liansheng; Liu, Guofa; Ding, Hong; Yu, Jihong; Xu, Ruren.Stud.Surf.Sci.Catal., 2001, 135, 360.  IF: 3.47.

50.Qinghong Xu, Liansheng Li, Bin Li, Jihong Yu and Ruren Xu.Journal of Materials Science and Technology., 2001, 17(2), 290292.  IF: 1.42.

51. Qinghong Xu, Zhixing Zhao, Liansheng Li, Guofa Liu and Ruren Xu. Chem. J.Chinese Univ., 2001, 22(5), 727730.  IF: 0.954.

52. Z.-X. Zhao,Q.-H. Xu, D.-M. Li, G.-F Liu, L.-S. Li, R.-R. Xu. Solid State Sciences, 2001, 3,339-345.  IF: 3.5.

53. Qinghong Xu, Lianshe Fu, Liansheng Li, Hongjie Zhang and Ruren Xu.Journal of Materials Chemistry, 2000, 10, 25322536.  IF: 14.5.

54. Qinghong Xu, Liansheng Li, Bin Li, Jihong Yu and Ruren Xu. Microporous and Mesoporous Materials, 2000, 38, 351358.  IF: 5.2.

55. Qinghong Xu, Lianshe Fu, Liansheng Li, Hongjie Zhang, Qingguo Meng, and Ruren Xu.    Chinese Chemical Letters,2000,11(9), 839842.  IF: 9.1.

56. Lianshe Fu, Qinghong Xu, Hongjie Zhang, Liansheng Li, Jiazuan Ni and Ruren Xu.      Chinese Chemical Letters, 2000, 11(2), 171174.  IF: 9.1.

57. Z.X. Zhao, D.M. Li, Q.H. Xu, G.F. Liu, M. Lin and B. Zhang. Polish J. Chem., 2000, 74, 581584. IF: 3.6.


Awards

1, Famous Experimental Teaching Teacher at Beijing University of Chemical Technology(2022).

2, First Prize in the Third National College Student Chemistry Experimental Innovation Competition (Guidance Teacher) (2022).

3, First prize in the North China preliminary competition of the 3rd National College Student Chemistry Experimental Innovation Competition (supervising teacher) (2022). 

4, First prize in the North China preliminary competition of the 4rd National College Student Chemistry Experimental Innovation Competition (supervising teacher) (2023). 

Patent

Honor Reward

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