研究成果
代表性论文:(一作及通讯作者)
14. Yue Wu, Yangyi Sun*, Chengyu Zhang, Mengyao He, Dongming Qi*. Interfacial-assembly engineering of asymmetric magnetic-mesoporous organosilica nanocomposites with tunable architectures. Nanoscale, 2022, 14, 15772. (IF=8.307, JCR一区,TOP期刊)
13. Qiangtao Zhu, Dongyu Pan, Yangyi Sun*, Dongming Qi*. Controllable Microemulsion Synthesis of Hybrid TiO2−SiO2 Hollow Spheres and Au-Doped Hollow Spheres with Enhanced Photocatalytic Activity. Langmuir, 2022, 38, 4001−4013. (IF=3.882, JCR一区,TOP期刊)
12. Yangyi Sun, Yijing Mao, Chengyu Zhang, Ningyu Di, Dongming Qi, Baoqing Shentu*. Thermodynamic and kinetic of Cu2+ adsorption of organic–inorganic hybrid hollow mesoporous silica spheres, J. Sol-Gel Sci. Techn., 2021, 98, 310-318. (IF=2.326, JCR一区)
11. Yangyi Sun*, Yijing Mao, Ningyu Di, Dongyu Pan, Xiaolong Chen, Dongming Qi, Baoqing Shentu*. Core-template-free synthesis of molecularly ethane-bridged hollow mesoporous silica spheres from acid-hydrolyzed precursor, New J. Chem., 2020, 44, 13997-14004. (IF=3.591, JCR二区)
10. Weiwei Guo, Xiaogang Che, Xuejie Yu, Fengteng Zhang, Tao An, Yangyi Sun*, Kunlin Chen*. Facile Fabrication of Waterborne Fabric Coatings with Multifunctional Superhydrophobicity and Thermal Insulation. Mater. Lett., 2019, 250, 123-126. (IF=3.432, JCR二区)
9. Yangyi Sun*, Hua Zhang, Weichang Han, Huajun Huang, Dongming Qi*. Controllable Synthesis of Monodisperse Nonspherical Colloidal Particles with Cavity Structures, J. Poly. Sci. Pol. Chem., 2019, 57, 1645-1652. (IF=2.591, JCR二区)
8. Yangyi Sun*, Chengyu Zhang, Dongyu Pan, Dongming Qi, Ningyu Di*. General Microemulsion Synthesis of Organic-inorganic Hybrid Hollow Mesoporous Silica Spheres with Enlarge Pore Size, New J. Chem., 2019, 43, 11164-11170. (IF=3.591, JCR二区)
7. Weiwei Guo, Xiaogang Che, Xuejie Yu, Fengteng Zhang, Tao An, Yangyi Sun*, Kunlin Chen*. Facile Fabrication of Waterborne Fabric Coatings with Multifunctional Superhydrophobicity and Thermal Insulation. Material Letters, 2019, 250, 123-126. (IF=3.574, JCR二区)
6. Xiaotian Zhang, Yangyi Sun*, Kunlin Chen, Zhihai Cao*, Dongming Qi*. Controllable Synthesis of Raspberry-like Polystyrene-SiO2 Nanocomposite Particles via Pickering Emulsion Polymerization. RSC Adv., 2018, 8, 3910-3918.(IF=3.361, JCR二区)
5. Chao Lin, Ting Lü*, Dongming Qi, Zhihai Cao, Yangyi Sun*, Yiting Wang. Effect of Surface Groups on SiO2 Nanoparticles on in Situ Solution Polymerization: Kinetics and Mechanism. Ind. Eng. Chem. Res., 2018, 57(45), 15280-15290. (IF=3.720,JCR一区)
4. Yangyi Sun, Min Chen, Limin Wu*. Controllable Synthesis of Hollow Periodic Mesoporous Organosilica Spheres with Radial Mesochannels and Their Degradable Behavior. J. Mater. Chem. A., 2018, 6, 12333-12333. (IF=12.732, JCR一区, TOP期刊)
3. Yangyi Sun, Yuyong Yin, Min Chen, Shuxue Zhou, Limin Wu*. One-step facile synthesis of monodisperse raspberry-like P(S-MPS-AA) colloidal particles. Polym. Chem., 2013, 4, 3020-3027. (IF=5.582, JCR一区)
2. Yangyi Sun, Min Chen, Zengbo Wang, Limin Wu*. Facile synthesis of asymmetric Ag-organosilica hybrid nanoparticles with tunable morphologies and optical properties. Chem. Commun., 2014, 50, 5767-5770. (IF=6.222, JCR一区,TOP期刊)
1. Yangyi Sun, Min Chen, Shuxue Zhou, Jing Hu, Limin Wu*. Controllable Synthesis and Surface Wettability of Flower-shaped Ag Nanocube-Organosilica Hybrid Colloidal Nanoparticles. ACS Nano, 2015, 2015, 9, 12513-12520. (IF=15.881, JCR一区, TOP期刊 )
2.毛贻静,潘栋宇,张潇天,曹志海,戚栋明,孙阳艺*. 原位成核生长法制备草莓状多级结构聚合物-有机硅复合微球,浙江理工大学学报(自然科学版),2019,41(02):174-181.
申请/授权专利:
1. 孙阳艺,张成宇,潘栋宇,戚栋明。一种一步法制备中空TiO2纳米微球的方法及应用,授权号:CN110201655B,公开。(2021年11月30日授权)
2. 孙阳艺,张华,王志强,戚栋明。一种胶体分子结构磁性介孔有机硅复合微球及其制备方法,申请号:202011347985.7,公开,实质审查。(2020年11月26日受理)
3. 孙阳艺,祝强韬,潘栋宇,戚栋明。一种中空结构的Au掺杂二氧化钛复合纳米微球光催化剂、制备方法及应用,申请号:202011141577.6,公开,实质审查。(2020年10月22日受理)
4. 孙阳艺,裘珂俊,祝强韬,李嘉,张潇天,戚栋明。碗状有机硅热储能相变微胶囊及其制备方法,授权号:CN113136173B,公开。(2022年10月4日授权)
5. 孙阳艺,何梦瑶,张华,裘珂俊,李嘉,戚栋明。介孔有机硅纳米线的制备方法及介孔有机硅纳米线,申请号:202110381342.2,公开,实质审查。(2021年4月9日受理)
6. 孙阳艺,李嘉,戚栋明,祝强韬,张成宇,何梦瑶。Yolk-Shell结构的催化剂、制备方法及应用,申请号:202110928869.2,公开,实质审查。(2021年8月3日受理)
7. 孙阳艺,一种功能性有机硅合成革的制备及有机硅合成革,申请号:202211334625.2,公开,实质审查。(2022年10月28日受理)