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1.LengQ, HanS*, ZhaiM, et al.A molecularly imprinted photopolymer based on mesh TpPa-2 embedded with perovskite CsPbBr3 quantum dots for the sensitive solid fluorescence sensing of patulin in apple products£¬FoodChemistry,2023, 416:135855-135865.
2.HanS,SunR,ZhaoL, et al.Molecularly imprinted electrochemical sensor based on synergistic interaction of honeycomb-like Ni-MOF decorated with AgNPs and N-GQDs for ultra-sensitive detection of olaquindox in animal-origin food£¬FoodChemistry,2023, 418:136008-136018.
3.Han S, Leng Q, Teng F, et al. Preparation of mesh covalent organic framework Tppa-2-based adsorption enhanced magnetic molecularly imprinted composite for selective extraction of tetracycline residues from animal-derived foods. FoodChemistry, 2022: 132601-132611.
4.Han S, Yao A, Ding Y, et al. A dual-template imprinted polymer based on amino-functionalized zirconium-based metal-organic framework for delivery of doxorubicin and phycocyanin with synergistic anticancer effect. European Polymer Journal, 2022: 111161-111171.
5.Han S, Yao A, Ding Y, et al. A molecularly imprinted polymer based on MOF and deep eutectic solvent for selective recognition and adsorption of bovinehemoglobin. Analytical and Bioanalytical Chemistry, 2021, 413(21): 5409-5417.
6.Han S, Ding Y, Teng F, et al. Determination of chloropropanol with an imprinted electrochemical sensor based on multi-walled carbon nanotubes/metal-organic framework composites. RSC Advances, 2021, 11(30): 18468-18475.
7.º«Ë¬,ÌÚ¸£,¶¡ÓêÐÀ,µÈ.»ùÓÚCS-GO/AgNPsÂÈ·Ó·Ö×ÓÓ¡¼£µç»¯Ñ§´«¸ÐÆ÷µÄ¹¹½¨.·ÖÎöÊÔÑéÊÒ, 2021, 40(09): 993-998.
8.º«Ë¬£¬ÀäÇïÑ©£¬Ò¦°¬öΣ¬µÈ.»ùÓÚCOF½Ó֦̼µãµÄ·Ö×ÓÓ¡¼£¹â¾ÛÎïµÄÖÆ±¸¼°ÆäÐÔÄÜÑо¿.·ÖÎöÊÔÑéÊÒ, 2021,40(11):1320-1324.
9.Han S, Teng F, Wang Y,Su LQ, Leng QX, Jiang HY. Drug-loaded dual targeting graphene oxide-based molecularly imprinted composite and recognition ofcarcino-embryonic antigen. RSC Advances, 2020, 10(19): 10980-10988.
10.Han S, Jin Y, Su L, et al. A two-dimensional molecularly imprinted photonic crystal sensor for highly efficient tetracycline detection. Analytical Methods, 2020, 12(10): 1374-1379.
11.Han S, Su L, Zhai M, et al. A molecularly imprinted composite based on graphene oxide for targeted drug delivery to tumor cells. Journal of Materials Science, 2019, 54(4): 3331-3341.
12.Han S, Li X, Wang Y, et al. Multifunctional imprinted polymers based on CdTe/CdS and magnetic graphene oxide for selective recognition and separation of pt-octylphenol. Chemical Engineering Journal, 2015, 271: 87-95.
13.Han S, Li X, Wang Y, et al. Graphene oxide-based fluorescence molecularly imprinted composite for recognition and separation of 2, 4, 6-trichlorophenol. RSC advances, 2015, 5(3): 2129-2136.
14.Han S, Li X, Wang Y. A magnetic graphene oxide-based molecularly imprinted polymer composite for recognition and separation of diethylstilbestrol. Science of Advanced Materials, 2015, 7(5): 861-868.
15. Han S, Li X, Wang Y, et al. A core-shell Fe3O4nanoparticle-CdTe quantum dot-molecularly imprinted polymer composite for recognition and separation of 4-nonylphenol. Analytical Methods, 2014, 6(9): 2855-2861.
16. Su L, Guo X, Han S. Preparation and evaluation of vanillin molecularly imprinted polymer microspheres by reversible addition-fragmentation chain transfer precipitation polymerization. Analytical Methods, 2014, 6(8): 2512-2517.
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