Selected Publications
1. Li, M.; Wan, P.; Wang, W.; Yang, K.; Zhang, Y.; Han, Y.*, Regulation of osteogenesis
and osteoclastogenesis by zoledronic acid loaded on biodegradable
magnesium-strontium alloy. Scientific reports 2019, 9 (1), 933.
2. Li, K.; Liu, S.; Xue, Y.; Zhang, L.; Han, Y.*, A superparamagnetic Fe 3 O 4–TiO 2 composite coating on
titanium by micro-arc oxidation for percutaneous implants. Journal of Materials Chemistry B 2019.
3. Li, J.; Liu, X.; Zhou, Z.; Tan, L.; Wang, X.; Zheng, Y.; Han, Y.; Chen, D.-F.; Yeung, K. W. K.;
Cui, Z., Lysozyme-Assisted Photothermal Eradication of Methicillin-Resistant
Staphylococcus aureus Infection and Accelerated Tissue Repair with Natural
Melanosome Nanostructures. ACS Nano 2019. doi.org/10.1021/acsnano.9b03982.
4. Liu, Y.; Zheng, Y.F.; Chen, X.H.; Yang, J.A.; Pan, H.B.; Chen,
D.F.; Wang, L.N.; Zhang, J.L.; Zhu, D.H.; Wu, S.L.; Yeung, K.W.K.; Zeng, R.C.; Han, Y.; Guan, S.K., Fundamental Theory
of Biodegradable Metals—Definition, Criteria, and Design. Advanced Functional Materials 2019, 29 (18), 1805402.
5. Zhou, R.; Han, Y.*;
Cao, J.; Li, M.; Jin, G.; Luo, H.; Zhang, L.; Su, B., Electrically bioactive
coating on Ti with bi-layered SnO 2–TiO 2 hetero-structure for improving
osteointegration. Journal of Materials Chemistry B 2018, 6 (23), 3989-3998.
6. Zhou, R.; Han, Y.*;
Cao, J.; Li, M.; Jin, G.; Du, Y.; Luo, H.; Yang, Y.; Zhang, L.; Su, B.,
Enhanced osseointegration of hierarchically structured Ti implant with
electrically bioactive SnO2–TiO2 bilayered surface. ACS applied materials &
interfaces 2018, 10 (36), 30191-30200.
7. Zhou, J.; Zhao, L.; Li, B.; Han, Y.*, Nanorod diameter modulated osteogenic activity of
hierarchical micropore/nanorod-patterned coatings via a Wnt/β-catenin pathway. Nanomedicine:
Nanotechnology, Biology and Medicine 2018, 14 (5), 1719-1731.
8. Zhou, J.; Li, B.; Han,
Y.*, F-doped TiO 2 microporous coating on titanium with enhanced
antibacterial and osteogenic activities. Scientific reports 2018, 8 (1), 17858.
9. Zhang, L.; Guo, J.; Yan, T.; Han, Y.*, Fibroblast responses and antibacterial activity of Cu and
Zn co-doped TiO2 for percutaneous implants. Applied Surface Science 2018, 434, 633-642.
10. Li, K.; Yan, T.; Xue, Y.; Guo, L.; Zhang, L.; Han, Y.*, Intrinsically ferromagnetic
Fe-doped TiO2 coatings on titanium for accelerating osteoblast response in
vitro. Journal of Materials Chemistry B 2018, 6 (36), 5756-5767.
11. Li, B.; Gao, P.; Zhang, H.; Guo, Z.; Zheng, Y.; Han, Y.*, Osteoimmunomodulation,
osseointegration, and in vivo mechanical integrity of pure Mg coated with HA
nanorod/pore-sealed MgO bilayer. Biomaterials science 2018, 6 (12), 3202-3218.
12. Zhang, Y.; Zhang, L.; Li, B.; Han, Y.*, Enhancement in sustained release of antimicrobial peptide
from dual-diameter-structured TiO2 nanotubes for long-lasting antibacterial
activity and cytocompatibility. ACS applied materials & interfaces 2017, 9 (11), 9449-9461.
13. Zhang, L.; Zhang, J.; Dai, F.; Han, Y.*, Cytocompatibility and antibacterial activity of
nanostructured H2Ti5O11 center dot H2O outlayered Zn-doped TiO2 coatings on Ti
for percutaneous implants. Scientific reports 2017, 7.
14. Zhang, E.; Wang, X.; Han,
Y.*, Research status of biomedical porous Ti and its alloy in China. Acta
Metall Sin 2017, 53 (12), 1555-1567.
15. Li, M.; Yang, X.; Wang, W.; Zhang, Y.; Wan, P.; Yang, K.; Han, Y.*, Evaluation of the
osteo-inductive potential of hollow three-dimensional magnesium-strontium
substitutes for the bone grafting application. Materials Science and
Engineering: C 2017, 73, 347-356.
16. Zhou, J.; Li, B.; Han, Y.*;
Zhao, L., The osteogenic capacity of biomimetic hierarchical
micropore/nanorod-patterned Sr-HA coatings with different interrod spacings. Nanomedicine:
Nanotechnology, Biology and Medicine 2016, 12 (5), 1161-1173.
17. Zhang, Y.; Han, Y.*;
Zhang, L., Formation and Bioactivity of SrTiO3 Nanotubes on Titanium by
Modified Anodization and Hydrothermal Treatment. Journal of Materials Science
& Technology 2016, 32 (9), 930-936.
18. Zhang, L.; Guo, J.; Huang, X.; Zhang, Y.; Han, Y.*, The dual function of Cu-doped TiO 2 coatings on titanium
for application in percutaneous implants. Journal of Materials Chemistry B 2016, 4 (21), 3788-3800.
19. Zhang, L.; Gao, Q.; Han,
Y.*, Zn and Ag co-doped anti-microbial TiO2 coatings on Ti by micro-arc
oxidation. Journal of Materials Science & Technology 2016, 32 (9), 919-924.
20. Xu, Z.; Li, M.; Li, X.; Liu, X.; Ma, F.; Wu, S.; Yeung, K.; Han, Y.*; Chu, P. K., Antibacterial
activity of silver doped titanate nanowires on Ti implants. ACS applied
materials & interfaces 2016, 8 (26), 16584-16594.
21. Wang, C.; Wang, F.; Han,
Y.*, The structure, bond strength and apatite-inducing ability of micro-arc
oxidized tantalum and their response to annealing. Applied Surface Science 2016, 361, 190-198.
22. Li, M.; He, P.; Wu, Y.; Zhang, Y.; Xia, H.; Zheng, Y.; Han, Y.*, Stimulatory effects of the
degradation products from Mg-Ca-Sr alloy on the osteogenesis through regulating
ERK signaling pathway. Scientific reports 2016, 6, 32323.
23. Li, B.; Han, Y.*; Li,
M., Enhanced osteoblast differentiation and osseointegration of a bio-inspired
HA nanorod patterned pore-sealed MgO bilayer coating on magnesium. Journal
of Materials Chemistry B 2016, 4 (4), 683-693.
24. Zhang, L.; Han, Y.*;
Tan, G., Hydroxyaptite nanorods patterned ZrO2 bilayer coating on zirconium for
the application of percutaneous implants. Colloids and Surfaces B: Biointerfaces 2015, 127, 8-14.
25. Wang, C.; Fan, Z.; Han, Y.*,
Formation and osteoblast behavior of HA nano-rod/fiber patterned coatings on
tantalum in porous and compact forms. Journal of Materials Chemistry B 2015, 3 (27), 5442-5454.
26. Zhou, J.; Shao, J.; Han,
Y.*, Effect of hydrothermal treatment model on stability and bioactivity of
microarc oxidized titania coatings. Applied Surface Science 2014, 303, 367-372.
27. Zhou, J.; Han, Y.*;
Lu, S., Direct role of interrod spacing in mediating cell adhesion on Sr-HA
nanorod-patterned coatings. International journal of nanomedicine 2014, 9, 1243.
28. Zhang, L.; Zhu, S.; Han,
Y.*; Xiao, C.; Tang, W., Formation and bioactivity of HA nanorods on
micro-arc oxidized zirconium. Materials Science and Engineering: C 2014, 43, 86-91.
29. Li, B.; Han, Y.*; Qi,
K., Formation mechanism, degradation behavior, and cytocompatibility of a
nanorod-shaped HA and pore-sealed MgO bilayer coating on magnesium. ACS
applied materials & interfaces 2014, 6 (20), 18258-18274.
30. Huang, R.; Zhuang, H.; Han,
Y.*, Second-phase-dependent grain refinement in Ti–25Nb–3Mo–3Zr–2Sn alloy
and its enhanced osteoblast response. Materials Science and Engineering: C 2014, 35, 144-152.
31. Huang, R.; Han, Y.*;
Lu, S., Enhanced osteoblast functions and bactericidal effect of Ca and Ag
dual-ion implanted surface layers on nanograined titanium alloys. Journal
of Materials Chemistry B 2014, 2 (28), 4531-4543.
32. Zhou, J.; Li, B.; Lu, S.; Zhang, L.; Han, Y.*, Regulation of osteoblast proliferation and
differentiation by interrod spacing of Sr-HA nanorods on microporous titania
coatings. ACS applied materials & interfaces 2013, 5 (11), 5358-5365.
33. Zhou, J.; Han, Y.*,
Effect of hydrothermal treatment model on the formation of Sr-HA nanorod arrays
on microarc oxidized titania coatings. Applied Surface Science 2013, 286, 384-390.
34. Wang, C.; Wang, F.; Han,
Y.*, Structural characteristics and outward–inward growth behavior of
tantalum oxide coatings on tantalum by micro-arc oxidation. Surface
and Coatings Technology 2013, 214, 110-116.
35. Huang, R.; Lu, S.; Han, Y.*,
Role of grain size in the regulation of osteoblast response to
Ti–25Nb–3Mo–3Zr–2Sn alloy. Colloids and Surfaces B: Biointerfaces 2013, 111, 232-241.
36. Huang, R.; Han, Y.*,
Structure evolution and thermal stability of SMAT-derived nanograined layer on
Ti–25Nb–3Mo–3Zr–2Sn alloy at elevated temperatures. Journal of Alloys and Compounds 2013, 554, 1-11.
37. Huang, R.; Han, Y.*,
The effect of SMAT-induced grain refinement and dislocations on the corrosion
behavior of Ti–25Nb–3Mo–3Zr–2Sn alloy. Materials Science and Engineering: C 2013, 33 (4), 2353-2359.
38. Zhang, L.; Wang, S.; Han,
Y.*, Interfacial structure and enhanced adhesion between anodized ZrO2
nanotube films and Zr substrates by sedimentation of fluoride ions. Surface
and Coatings Technology 2012, 212, 192-198.
39. Zhang, L.; Han, Y.*,
Enhanced bioactivity of self-organized ZrO2 nanotube layer by annealing and UV
irradiation. Materials Science and Engineering: C 2011, 31 (5), 1104-1110.
40. Feng, A.; Han, Y.*,
Mechanical and in vitro degradation behavior of ultrafine calcium polyphosphate
reinforced magnesium-alloy composites. Materials & Design 2011, 32 (5), 2813-2820.
41. Yan, Y.; Sun, J.; Han, Y.*;
Li, D.; Cui, K., Microstructure and bioactivity of Ca, P and Sr doped TiO2
coating formed on porous titanium by micro-arc oxidation. Surface and Coatings Technology 2010, 205 (6), 1702-1713.
42. Yan, Y.; Han, Y.*; Li,
D.; Huang, J.; Lian, Q., Effect of NaAlO2 concentrations on microstructure and
corrosion resistance of Al2O3/ZrO2 coatings formed on zirconium by micro-arc
oxidation. Applied Surface Science 2010, 256 (21), 6359-6366.
43. Feng, A.; Han, Y.*,
The microstructure, mechanical and corrosion properties of calcium
polyphosphate reinforced ZK60A magnesium alloy composites. Journal of Alloys and Compounds 2010, 504 (2), 585-593.
44. Zhang, L.; Han, Y.*,
Effect of nanostructured titanium on anodization growth of self-organized TiO2
nanotubes. Nanotechnology 2009, 21 (5), 055602.
45. Han, Y.*; Yan, Y.; Lu,
C.; Zhang, Y.; Xu, K., Bioactivity and osteoblast response of the micro‐arc oxidized zirconia films. Journal of Biomedical Materials Research
Part A: An Official Journal of The Society for Biomaterials, The Japanese
Society for Biomaterials, and The Australian Society for Biomaterials and the
Korean Society for Biomaterials 2009, 88 (1), 117-127.
46. Yan, Y.; Han, Y.*; Lu,
C., The effect of chemical treatment on apatite-forming ability of the
macroporous zirconia films formed by micro-arc oxidation. Applied Surface Science 2008, 254 (15), 4833-4839.
47. Yan, Y.; Han, Y.*;
Huang, J., Formation of Al2O3–ZrO2 composite coating on zirconium by micro-arc
oxidation. Scripta Materialia 2008, 59 (2), 203-206.
48. Sun, J.; Han, Y.*;
Cui, K., Innovative fabrication of porous titanium coating on titanium by cold
spraying and vacuum sintering. Materials Letters 2008, 62 (21-22), 3623-3625.
49. Sun, J.; Han, Y.*;
Cui, K., Microstructure and apatite-forming ability of the MAO-treated porous
titanium. Surface and Coatings Technology 2008, 202 (17), 4248-4256.
50. Li, X.-M.; Han, Y.*,
Mechanical properties of Ti (C0. 7N0. 3) film produced by plasma electrolytic
carbonitriding of Ti6Al4V alloy. Applied Surface Science 2008, 254 (20), 6350-6357.
51. Han, Y.*; Sun, J.;
Huang, X., Formation mechanism of HA-based coatings by micro-arc oxidation. Electrochemistry
Communications 2008, 10 (4), 510-513.
52. Han, Y.*; Chen, D.;
Sun, J.; Zhang, Y.; Xu, K., UV-enhanced bioactivity and cell response of
micro-arc oxidized titania coatings. Acta Biomaterialia 2008, 4 (5), 1518-1529.
53. Yan, Y.; Han, Y.*,
Structure and bioactivity of micro-arc oxidized zirconia films. Surface
and Coatings Technology 2007, 201 (9-11), 5692-5695.
54. Sun, J.; Han, Y.*;
Huang, X., Hydroxyapatite coatings prepared by micro-arc oxidation in Ca-and
P-containing electrolyte. Surface and coatings technology 2007, 201 (9-11), 5655-5658.
55. Guo, D.; Xu, K.; Zhao, X.; Han,
Y., Development of a strontium-containing hydroxyapatite bone cement. Biomaterials 2005, 26 (19), 4073-4083.
56. Han, Y.*; Xu, K.,
Photoexcited formation of bone apatite‐like coatings on micro‐arc oxidized
titanium. Journal of Biomedical Materials Research Part A: An Official Journal of
The Society for Biomaterials, The Japanese Society for Biomaterials, and The
Australian Society for Biomaterials and the Korean Society for Biomaterials 2004, 71 (4), 608-614.
57. Han, Y.*; Xu, K.;
Montay, G.; Fu, T.; Lu, J., Evaluation of nanostructured carbonated
hydroxyapatite coatings formed by a hybrid process of plasma spraying and
hydrothermal synthesis. Journal of Biomedical Materials Research: An
Official Journal of The Society for Biomaterials, The Japanese Society for
Biomaterials, and The Australian Society for Biomaterials and the Korean
Society for Biomaterials 2002, 60 (4), 511-516.
58. Han, Y.*; Fu, T.; Lu,
J.; Xu, K., Characterization and stability of hydroxyapatite coatings prepared
by an electrodeposition and alkaline‐treatment process. Journal of Biomedical Materials Research: An
Official Journal of The Society for Biomaterials and The Japanese Society for
Biomaterials 2001, 54 (1), 96-101.