1. J. Shi*, X.J. Wang, S.H. Xu, Q. Wu, S.K. Cao, “Reversible thermal-tunable drug delivery across nano-membranes of hollow PUA/PSS multilayer microcapsules”, J. Membr. Sci. 2016, 499, 307-316. (注: *为通讯作者)
2. S.H. Xu, J. Shi*, D.S. Feng, L. Yang, S.K. Cao, “Hollow PUA/PSS/Au microcapsules with interdependent near-infrared/pH/temperature multiresponsiveness”, J. Appl. Polym. Sci. 2016, 133, 43008.
3. J. Wei, J. Shi*, Q. Wu, L. Yang, S.K. Cao, “Hollow hydroxyapatite/polyelectrolyte hybrid microparticles with controllable size, wall thickness and drug delivery property”, J. Mater. Chem. B 2015, DOI: 10.1039/C5TB01268F. (注: *为通讯作者)
4. Q. Wu, J. Shi*, J. Wei, L. Yang, S.K. Cao, “In situ functionalization of hollow mesoporous hydroxyapatite with thermal-responsive on-off gates in supercritical CO2”, RSC Advances 2015, 5, 70101- 70108.
5. L. Yang, J. Shi*, X.F. Zhou, S.K. Cao, “Hierarchically organization of biomineralized alginate beads for dual stimuli-responsive drug delivery”, Int. J. Biol. Macromol. 2015, 73, 1-8.
6. S.H. Xu, J. Shi*, D.S. Feng, L. Yang, S.K. Cao, “Hollow hierarchical hydroxyapatite/Au/polyelectrolyte hybrid microparticles for multi-responsive drug delivery”, J. Mater. Chem. B 2014, 2, 6500-6507.
7. J. Shi*, L. Zhang, Y.L. Liu, S.G. Xu, S.K. Cao, “Biomineralized organic-inorganic hybrids aiming for smart drug delivery”, Pure Appl. Chem. 2014, 86, 671-683.
8. J. Shi, J. Shi*, D.S. Feng, P. Yue, S.K. Cao, “Stimuli-responsive hybrid composites based on CaCO3 microparticles and smart polyelectrolytes for controllable drug delivery”, Polym. Bull. 2014, 71, 1857-1873.
9. D.S. Feng, J. Shi*, X.J. Wang, L. Zhang, S.K. Cao, “Hollow hybrid hydroxyapatite microparticles with sustained and pH-responsive drug delivery properties”, RSC Advances 2013, 3, 24975-24982.
10. J.Shi*, C. Du, J. Shi, Y.M. Wang, S.K. Cao, “Hollow multilayer microcapsules for pH-/thermal-responsive drug delivery using aliphatic poly(urethane-amine) as smart component”,
Macromol. Biosci. 2013, 13, 494-502.
11. J. Shi*, J. Shi, C. Du, Q. Chen, S.K. Cao, “Thermal and pH dual responsive alginate/CaCO3 hybrid membrane prepared under compressed CO2”, J. Membr. Sci. 2013, 433, 39-48.
12. C. Du, J. Shi*, J. Shi, L. Zhang, S.K. Cao, “PUA/PSS multilayer coated CaCO3 microparticles as smart drug delivery vehicles”, Mater. Sci. Eng. C 2013, 33, 3745-3752.
13. J. Shi*, W.Y. Qi, C. Du, J. Shi, S.K. Cao, “Micro/nano hybrid hierarchical PNIPAAm/calcium carbonate composites for smart drug delivery”, J. Appl. Polym. Sci. 2013, 129, 577-584.
14. X.M. Sun, J. Shi*, X.D. Xu, S.K. Cao, “Chitosan coated alginate/poly(N-isopropylacrylamide) beads for dual responsive drug delivery”, Int. J. Biol. Macromol.2013, 59, 273-281.
15. J. Shi*, W.Y. Qi, G.F. Li, S.K. Cao, “Biomimetic self-assembly of calcium phosphate templated by PNIPAAm nanogels for sustained smart drug delivery”, Mater. Sci. Eng. C 2012, 32, 1299-1306.
16. J. Shi*, Z.Z. Zhang, W.Y. Qi, S.K. Cao, “Hydrophobically modified biomineralized polysaccharide alginate membrane for sustained smart drug delivery”, Int. J. Biol. Macromol. 2012, 50, 747-753.
17. J. Shi*, Z.Z. Zhang, G.F. Li, S.K. Cao, “Biomimetic fabrication of alginate/CaCO3 hybrid beads for dual-responsive drug delivery under compressed CO2”, J. Mater. Chem. 2011, 21, 16028-16034.
18. J. Shi*, X.P. Liu, X.M. Sun, S.K. Cao, “Hybrid alginate beads with thermal-responsive gates for smart drug delivery”, Polym. Adv. Technol. 2011, 22, 1539-1546.
19. X.M. Sun, J. Shi*, Z.Z. Zhang, S.K. Cao, “Dual-responsive semi-IPN beads based on Ca-alginate/ PNIPAAm/PAANa for sustained drug release”, J. Appl. Polym. Sci. 2011,122, 729-737.
20. J. Shi*, X.P. Liu, S.K. Cao, “Biomineralized polysaccharide alginate membrane for multi-responsive controlled delivery”, J. Membr. Sci., 2010, 352, 262-270.
21. N.M. Alves, J. Shi, O. Elena, et al, “Bioinspired superhydrophobic poly(L-lactic acid) surfaces control bone marrow derived cells adhesion and proliferation”, J. Biomed. Mater. Res. Part A, 2009, 91A (2), 480-488.
22. J. Shi*, L.H. Liu, X.M. Sun, S.K. Cao, “Biomineralized polysaccharide beads for dual-stimuli-responsive drug delivery”, Macromol. Biosci., 2008, 8, 260-267.
23. J. Shi, N.M. Alves, J.F. Mano, “Chitosan-alginate multilayer beads containing Poly (N-isopropyl- acrylamide) for dual-stimuli-responsive drug release”, J. Biomed. Mater. Res. Part B, 2008, 84B (2), 595-603.
24. J. Shi*, L.H. Liu, X.P. Liu, S.K. Cao, “Inorganic-organic hybrid alginate beads with LCST near human body temperature for sustained dual-sensitive drug delivery”, Polym. Adv. Technol., 2008, 19, 1467-1473.
25. J.Shi, N.M. Alves, J.F. Mano, “Towards bioinspired superhydrophobic poly(L-lactic acid) surfaces using phase inversion-based methods”, Bioinspiration and Biomimetics, 2008, 3, 1-6.
26. L. Zhang, J. Shi, Z.W. Jiang, S.K. Cao, “Photorefractive performance of hyperstructured cyclotriphosphazene molecular glasses containing carbazole moieties”, Adv. Funct. Mater., 2008, 18: 362-368.
27. L. Zhang, J. Shi, Z. Yang, S.K. Cao, “Photorefractive properties of polyphosphazenes containing carbazole-based multifunctional chromophores”, Polymer, 2008, 49: 2107-2114.
29. J. Shi, N.M. Alves, J.F. Mano, “Drug release behaviour of pH/temperature responsivesemi-IPN beads composed of calcium alginate and poly (N-isopropylacrylamide)”, Macromol. Biosci., 2006, 6, 358-363.
2.学术专著
1.《有机光折变材料》,科学出版社,2009年,ISBN:978-7-03-025436-8.
2.Jun Shi and Shaokui Cao, “Synthesis of carbazole-based functionalized polymers via a postfunctionalization strategy”, 《Leading Edge Polymer Research》, Nova Science Publishers, chapter 6, 191-212 (2006).