所在学院:化学工程与技术学院
职务:职称:教授
导师类型:博士生导师 人才标签:
关键词:硼磷酸盐,ZIF-8,铀吸附,硼酸熔融法,pH传感器,核壳结构,自模板,表面改性,纳米结构,尺寸效应,超疏水/亲油,分离效率,蛋黄@壳,不锈钢网,溶剂诱导,氧化锌,核@壳,水热法
科研领域:
联系电话:
联系邮箱:yangwt@hainanu.edu.cn
联系地址:
功能金属有机配位聚合物的设计合成;复合多孔功能材料的性能与应用探索研究。
1. 海南省自然科学基金高层次人才项目,编号:2019RC005
2. 海南大学高层次人才科研启动基金项目,编号:KYQD(ZR)1806
1. Chen, L.; Wang, F.; Yang, W. *; Gu, D.; Li, M.; Pan, Q.*, Cellulose Membrane
Composited with ZIF-8for Selective Separation of Rhodamine B,
ChemistrySelect doi.org/10.1002/slct.202000977.
2. Lin, D.; Duan, P.; Yang, W. *; Liu, Y.; Pan, Q.*, Facile controlled synthesis of
core–shell/yolk–shell/hollow ZIF-67@Co-LDH/SiO2 via a self-template method,
Inorg. Chem. Front. 2020, 7, 1643-1650.(封面论文)
3. Gu, D.; Yang, W. *; Ning, G.; Wang, F.; Wu, S.; Shi, X.; Wang, Y.; Pan, Q.*, In
Situ Ligand Formation-Driven Synthesis of a Uranyl Organic Framework as a
Turn-on Fluorescent pH Sensor, Inorg. Chem. 2020, 59, 1778-1784.
4. Li, H.; Fu, B.; Yang, W. *; Ding, L.; Yang, Y.; Dong, J.; Wang, F.; Pan, Q.*, A
recyclable fluorescent probe for picric acid detection in water samples based on
inner filter effect, Spectrochim. Acta Part A Mol. Biomol. Spectrosc. 2020, 226,
117575.
5. Yang, W.; Wang, X.; Song, S.*; Zhang, H., Syntheses and Applications of Noble-
Metal-free CeO2-Based Mixed-Oxide Nanocatalysts, Chem 2019, 5, 1743-1774.
6. Li, H.; Fu, F.; Yang, W.*; Ding, L.; Dong, J.; Yang, Y.; Wang, F.; Pan, Q.*, A
simple fluorescent probe for fast and sensitive detection of inorganic phosphate
based on uranine@ZIF-8 composite, Sens. Actuators B. Chem. 2019, 301,
127110.
7. Ren, G.; Li, Z.; Yang, W.*; Faheem, M.; Xing, J.; Zou, X.; Pan, Q.*; Zhu, G.*;
Du, Y., ZnO@ZIF-8 core-shell microspheres for improved ethanol gas sensing,
Sens. Actuators B. Chem. 2019, 284, 421-427.
8. Yang, W.; Pan, Q.; Song, S.*; Zhang, H., Metal–organic framework-based
materials for the recovery of uranium from aqueous solutions, Inorg. Chem.
Front. 2019, 6, 1924-1937.
9. Du, W.; Yang, W.*; Zhao, X.; Pan, Q.*, Hollow cobalt sulfide for highly efficient
uranium adsorption from aqueous solution, Inorg. Chem. Front. 2019, 6, 3230-
3236.
10. Li, M.; Ren, G.*; Wang, F.; Li, Z.; Yang, W.*; Gu, D.; Wang, Y.; Zhu, G.; Pan,
Q.*, Two Metal-Organic Zeolites for Highly Sensitive and Selective Sensing of
Tb3+
, Inorg. Chem. Front. 2019, 6, 1129-1134.
11. Zhang, X.; Ren, G.*; Li, M.; Yang, W.*; Pan, Q.*, Selective Detection of
Aromatic Nitrophenols by a Metal-Organic Framework-Based Fluorescent
Sensor, Cryst. Growth Deg. 2019, 19, 6308-6314.
12. Liu, L.; Yang, W.*; Gu, D.; Zhao, X.; Pan, Q.*, In situ Preparation of
Chitosan/ZIF-8 Composite Beads for Highly Efficient Removal of U(VI), Front.
Chem., 2019, 7, 607.
13. Gu, D.; Yang, W.*; Wang, F.; Li, M.; Liu, L.; Li, H.; Pan, Q.*, A metal–organic
gel-based fluorescent chemosensor for selective Al3+ detection, Appl. Organomet.
Chem. 2019, 33, e5179.
14. Feng, L.; Ren, G.*; Ding, S.; Wang, F.; Yang, W.*; Liang, Z.; Pan, Q.*, A
lithium-organic framework as a fluorescent sensor for detecting aluminum (III)
ion, Appl. Organomet. Chem. 2019, 33, e5044.
15. Li, M.
#
; Yang, W.#
; Qiu, P.; Ren, G.*; Li, C.; Chen, Z.; Wang, Y.; Pan, Q.*, Two
efficient pH sensors based on heteronuclear metal-organic frameworks, J. Lumin.,
2019, 205, 380-384. (共同第一作者)
16. Wang, F.; Li, C.; Yang, W.*; Dou, W.; Niu, C.; Liu, Y.; Pan, Q.*, Efficient
Removal of U(VI) Using Functionalized Hollow Mesoporous Silica Nanospheres,
ChemistrySelect 2019, 4, 7396–7402.
17. Feng, L.; Ren, G.*; Wang, F.; Yang, W.*; Zhu, G.; Pan, Q.*, Two bimetallic
metal–organic frameworks capable of direct photocatalytic degradation of dyes
under visible light, Transition Metal Chem. 2019, 44, 275-281.
18. Ren, G.; Li, Z.; Li, M.; Liang, Z.; Yang, W.*; Qiu, P.; Pan, Q.*; Zhu, G.*, A
hexanuclear cluster based metal-organic framework for Fe3+ sensing, Inorg.
Chem. Commun., 2018, 91, 108-111.
19. Yang, W.; Tian, H. R.; Li, J. P.; Hui, Y. F.; He, X.; Li, J. Y.; Dang, S.; Xie, Z.
G.; Sun, Z. M.*, Photochromic Terbium Phosphonates with Photomodulated
Luminescence and Metal Ion Sensitive Detection, Chem. Eur. J. 2016, 22,15451-
15457.
20. Yang, W.; Wu, D.; Liu, C.; Pan, Q. J.*; Sun, Z. M.*, Structural variations of the
first family of heterometallic uranyl carboxyphosphinate assemblies by synergy
between carboxyphosphinate and imidazole ligands, Cryst. Growth Des. 2016,
16, 2011-2018.
21. Gao, C. Y.; Wang. D.; Li, J. P.; Wang, Y.*; Yang, W.*, Assemblies of metalorganic frameworks based on a tetrapodal linker for luminescence sensing of
tetrahydrofuran, CrystEngComm 2016, 18, 2857-2863.
22. Wu, D.; Gao, Y.*; Tian, W. G.; Li, Y. H.; Yang, W.*; Sun, Z. M., Layered and
three-dimensional uranyl–organic assemblies with 4,4’-oxidiphthalic acid, Chin.
Chem. Lett. 2016, 27, 325-329.
23. Yang, W.; Parker, T. G.; Sun, Z. M.*, Structural chemistry of uranium
phosphonates, Coord. Chem. Rev. 2015, 303, 86-109.
24. Wu, D.; Bai, X. J.; Tian, H. R.; Yang, W.*; Li, Z. W.; Huang, Q.; Du, S. Y.*; Sun,
Z. M.*, Uranyl Carboxyphosphonates Derived from Hydrothermal in Situ Ligand
Reaction: Syntheses, Structures, and Computational Investigations, Inorg. Chem.,
2015, 54, 8617-8624.
25. Liu, X. X.; Wang, Y.*; Tian, W. G.; Yang, W.*; Sun, Z. M., Heterometallic zinc
uranium oxyfluorides incorporating imidazole ligands, Chin. Chem. Lett. 2015,
26, 641-645.