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2015


1.  Wang, S.; Xu, T.; Shao, Z., The stability of silk fibroin nanoparticles coated with cationic polymers in biological media. J Control Release 2015, 213, E101-E101.

2.  Cao, H.; Yang, Y.; Shao, Z., Doxorubicin hydrochloride and curcumin loaded silk fibroin/hydroxypropylcellulose hydrogels for localized chemotherapy of cancer. J Control Release 2015, 213, E39-E39.

3.  Wang, Y.; Song, Y.; Wang, Y.; Chen, X.; Xia, Y.; Shao, Z., Graphene/silk fibroin based carbon nanocomposites for high performance supercapacitors. J Mater Chem A 2015, 3, (2), 773-781.

4.  Wang, S.; Xu, T.; Yang, Y.; Shao, Z., Colloidal Stability of Silk Fibroin Nanoparticles Coated with Cationic Polymer for Effective Drug Delivery. Acs Appl Mater Inter 2015, 7, (38), 21254-21262.

5.  Ma, L.; Yang, Y.; Yao, J.; Shao, Z.; Huang, Y.; Chen, X., Selective chemical modification of soy protein for a tough and applicable plant protein-based material. J. Mater. Chem. B 2015, 3, (26), 5241-5248.

6.  Ling, S.; Qi, Z.; Shao, Z.; Chen, X., Determination of phase behaviour in all protein blend materials with multivariate FTIR imaging technique. J. Mater. Chem. B 2015, 3, (5), 834-839.

7.  Fang, G.; Zheng, Z.; Yao, J.; Chen, M.; Tang, Y.; Zhong, J.; Qi, Z.; Li, Z.; Shao, Z.; Chen, X., Tough protein–carbon nanotube hybrid fibers comparable to natural spider silks. J. Mater. Chem. B 2015, 3, (19), 3940-3947.

8.  Lin, G.; Zhong, Y.; Zhong, J.; Shao, Z., Effect of Fe3+ on the Silk Fibroin Regulated Direct Growth of Nacre-like Aragonite Hybrids. Cryst Growth Des 2015, 15, (12), 5774-5780.


2014


1.  Ling, S. J.; Li, C. X.; Adamcik, J.; Shao, Z. Z.; Chen, X.; Mezzenga, R., Modulating Materials by Orthogonally Oriented beta-Strands: Composites of Amyloid and Silk Fibroin Fibrils. Adv Mater 2014, 26, (26), 4569-+.

2.  Tian, Y.; Jiang, X.; Chen, X.; Shao, Z.; Yang, W., Doxorubicin-loaded magnetic silk fibroin nanoparticles for targeted therapy of multidrug-resistant cancer. Adv Mater 2014, 26, (43), 7393-8.

3.  Fei, X.; Li, W.; Shao, Z.; Seeger, S.; Zhao, D.; Chen, X., Protein Biomineralized Nanoporous Inorganic Mesocrystals with Tunable Hierarchical Nanostructures. J Am Chem Soc 2014, 136, (44), 15781-15786.

4.  Guo, H.; Zhang, J.; Porter, D.; Peng, H.; Lowik, D. W. P. M.; Wang, Y.; Zhang, Z.; Chen, X.; Shao, Z., Ultrafast and reversible thermochromism of a conjugated polymer material based on the assembly of peptide amphiphiles. Chem Sci 2014, 5, (11), 4189-4195.

5.  Ling, S. J.; Li, C. X.; Adamcik, J.; Wang, S. H.; Shao, Z. Z.; Chen, X.; Mezzenga, R., Directed Growth of Silk Nanofibrils on Graphene and Their Hybrid Nanocomposites. Acs Macro Lett 2014, 3, (2), 146-152.

6.  Xu, T.; Liu, W.; Wang, S.; Shao, Z., Elucidating the role of free polycationic chains in polycation gene carriers by free chains of polyethylenimine or N,N,N-trimethyl chitosan plus a certain polyplex. Int J Nanomed 2014, 9, 3231-3245.

7.  Ling, S.; Qi, Z.; Watts, B.; Shao, Z.; Chen, X., Structural determination of protein-based polymer blends with a promising tool: combination of FTIR and STXM spectroscopic imaging. Phys Chem Chem Phys 2014, 16, (17), 7741-8.

8.  Xu, T.; Wang, S.; Shao, Z., Insight into Polycation Chain Length Affecting Transfection Efficiency by O-Methyl-Free N,N,N-Trimethyl Chitosans as Gene Carriers. Pharm Res-Dordr 2014, 31, (4), 895-907.

9.  Wang, Y.; Guan, J.; Hawkins, N.; Porter, D.; Shao, Z., Understanding the variability of properties in Antheraea pernyi silk fibres. Soft Matter 2014, 10, (33), 6321-6331.

10. Hao, W.; Porter, D.; Wang, X.; Shao, Z., Silk fibroin-mediated biomineralization of calcium carbonate at the air/water interface. Crystengcomm 2014, 16, (39), 9176-9184.

11. Liu, Y.; Ling, S.; Wang, S.; Chen, X.; Shao, Z., Thixotropic silk nanofibril-based hydrogel with extracellular matrix-like structure. Biomater Sci-Uk 2014, 2, (10), 1338-1342.

12. Yu, S.; Yang, W.; Chen, S.; Chen, M.; Liu, Y.; Shao, Z.; Chen, X., Floxuridine-loaded silk fibroin nanospheres. Rsc Adv 2014, 4, (35), 18171.

13. Hao, W.; Porter, D.; Shao, Z., Influences of film thickness and fabrication method on the surface structure and mineralization-templating of silk fibroin. Rsc Adv 2014, 4, (66), 35258-35262.

14. Yin, J.; Duan, Y.; Shao, Z., UV Induced Superhydrophilicity of RSF Film. Acta Chim Sinica 2014, 72, (1), 51-55.

15. Hao, W.; Shao, Z., Superhydrophobic and Highly Oleophobic Nylon Surface. Acta Chim Sinica 2014, 72, (9), 1023-1028.


2013


1.  Li, Q.; He, Y.; Chang, J.; Wang, L.; Chen, H.; Tan, Y.-W.; Wang, H.; Shao, Z., Surface-Modified Silicon Nanoparticles with Ultrabright Photoluminescence and Single-Exponential Decay for Nanoscale Fluorescence Lifetime Imaging of Temperature. J Am Chem Soc 2013, 135, (40), 14924-14927.

2.  Xu, T.; Wang, S.; Shao, Z., O-methyl-free N,N,N-trimethyl chitosans with various molecular weights as gene carriers. J Control Release 2013, 172, (1), E114-E114.

3.  Fei, X.; Shao, Z. Z.; Chen, X., Synthesis of hierarchical three-dimensional copper oxide nanostructures through a biomineralization-inspired approach. Nanoscale 2013, 5, (17), 7991-7997.

4.  Wang, Y.; Porter, D.; Shao, Z., Using Solvents with Different Molecular Sizes to Investigate the Structure of Antheraea Pernyi Silk. Biomacromolecules 2013, 14, (11), 3936-3942.

5.  Wang, Q.; Chen, Q.; Yang, Y.; Shao, Z., Effect of Various Dissolution Systems on the Molecular Weight of Regenerated Silk Fibroin. Biomacromolecules 2013, 14, (1), 285-COVER4.

6.  Guo, H.; Zhang, J.; Xu, T.; Zhang, Z.; Yao, J.; Shao, Z., The Robust Hydrogel Hierarchically Assembled from a pH Sensitive Peptide Amphiphile Based on Silk Fibroin. Biomacromolecules 2013, 14, (8), 2733-2738.

7.  Fei, X.; Jia, M.; Du, X.; Yang, Y.; Zhang, R.; Shao, Z.; Zhao, X.; Chen, X., Green Synthesis of Silk Fibroin-Silver Nanoparticle Composites with Effective Antibacterial and Biofilm-Disrupting Properties. Biomacromolecules 2013, 14, (12), 4483-4488.

8.  Ma, L.; Yang, Y.; Yao, J.; Shao, Z.; Chen, X., Robust soy protein films obtained by slight chemical modification of polypeptide chains. Polym Chem-Uk 2013, 4, (21), 5425.

9.  Ling, S.; Qi, Z.; Knight, D. P.; Shao, Z.; Chen, X., FTIR imaging, a useful method for studying the compatibility of silk fibroin-based polymer blends. Polym Chem-Uk 2013, 4, (21), 5401.

10. Hao, R.; Zhang, J.; Xu, T.; Huang, L.; Yao, J.; Chen, X.; Shao, Z., Characterization and assembly investigation of a dodecapeptide hydrolyzed from the crystalline domain of Bombyx mori silk fibroin. Polym Chem-Uk 2013, 4, (10), 3005-3011.

11. Zhou, L.; Wang, Q.; Wen, J.; Chen, X.; Shao, Z., Preparation and characterization of transparent silk fibroin/cellulose blend films. Polymer 2013, 54, (18), 5035-5042.

12. Cao, H.; Lin, G.; Yao, J.; Shao, Z., Amphiphilic Polypeptides as a Bifunctional Template in the Mineralization of Calcium Carbonate at the Air/Water Interface. Macromol Biosci 2013, 13, (5), 650-659.

13. Liang, M.; Yao, J.; Chen, X.; Huang, L.; Shao, Z., Silk fibroin immobilization on poly(ethylene terephthalate) films: Comparison of two surface modification methods and their effect on mesenchymal stem cells culture. Mat Sci Eng C-Mater 2013, 33, (3), 1409-1416.

14. Cao, Z.; Wen, J.; Yao, J.; Chen, X.; Ni, Y.; Shao, Z., Facile fabrication of the porous three-dimensional regenerated silk fibroin scaffolds. Mat Sci Eng C-Mater 2013, 33, (6), 3522-3529.

15. Zhao, S.; Yao, J.; Fei, X.; Shao, Z.; Chen, X., An antimicrobial film by embedding in situ synthesized silver nanoparticles in soy protein isolate. Mater Lett 2013, 95, 142-144.

16. Cao, H.; Yao, J.; Shao, Z., Fabrication of superhydrophobic surfaces via CaCO3 mineralization mediated by poly(glutamic acid). J Solid State Chem 2013, 199, 338-343.

17. Cao, H.; Chen, X.; Yao, J.; Shao, Z., Fabrication of an alternative regenerated silk fibroin nanofiber and carbonated hydroxyapatite multilayered composite via layer-by-layer. J Mater Sci 2013, 48, (1), 150-155.

18. Zhou, H.; Shao, Z.-z.; Chen, X., Wet-spinning of regenerated silk fiber from aqueous silk fibroin solutions: Influence of calcium ion addition in spinning dope on the performance of regenerated silk fiber. Chinese J Polym Sci 2013, 32, (1), 29-34.


2012


1.  Wang, T.; Porter, D.; Shao, Z., The Intrinsic Ability of Silk Fibroin to Direct the Formation of Diverse Aragonite Aggregates. Adv Funct Mater 2012, 22, (2), 435-441.

2.  Liu, Y.; Wu, Z.; Chen, X.; Shao, Z.; Wang, H.; Zhao, D., A hierarchical adsorption material by incorporating mesoporous carbon into macroporous chitosan membranes. J Mater Chem 2012, 22, (24), 11908.

3.  Wang, Q.; Yang, Y.; Chen, X.; Shao, Z., Investigation of Rheological Properties and Conformation of Silk Fibroin in the Solution of AmimCl. Biomacromolecules 2012, 13, (6), 1875-1881.

4.  Yang, Y.; Dicko, C.; Bain, C. D.; Gong, Z.; Jacobs, R. M. J.; Shao, Z.; Terry, A. E.; Vollrath, F., Behavior of silk protein at the air-water interface. Soft Matter 2012, 8, (37), 9705-9712.

5.  Gong, Z.; Yang, Y.; Ren, Q.; Chen, X.; Shao, Z., Injectable thixotropic hydrogel comprising regenerated silk fibroin and hydroxypropylcellulose. Soft Matter 2012, 8, (10), 2875-2883.

6.  Zhang, J.; Xu, T.; Yao, J.; Huang, L.; Chen, X.; Shao, Z., Quasi one-dimensional assembly of gold nanoparticles templated by a pH-sensitive peptide amphiphile from silk fibroin. Rsc Adv 2012, 2, (13), 5599-5604.

7.  Liu, Y.; Feng, Z.; Shao, Z.; Chen, X., Chitosan-based membrane chromatography for protein adsorption and separation. Materials science & engineering. C, Materials for biological applications 2012, 32, (6), 1669-73.

8.  Chen, M.; Shao, Z.; Chen, X., Paclitaxel-loaded silk fibroin nanospheres. J Biomed Mater Res A 2012, 100, (1), 203-10.

9.  Ling, S.; Zhou, L.; Zhou, W.; Shao, Z.; Chen, X., Conformation transition kinetics and spinnability of regenerated silk fibroin with glycol, glycerol and polyethylene glycol. Mater Lett 2012, 81, 13-15.

10. Cao, H.; Yao, J.; Shao, Z., Synthesis of poly (gamma-benzyl-L-glutamate) with well-defined terminal structures and its block polypeptides with alanine, leucine and phenylalanine. Polym Int 2012, 61, (5), 774-779.

11. Chen, X.; Cai, H.; Ling, S.; Shao, Z.; Huang, Y., Conformation transition of Bombyx mori silk protein monitored by time-dependent fourier transform infrared (FT-IR) spectroscopy: effect of organic solvent. Appl Spectrosc 2012, 66, (6), 696-9.

12. Tian, K.; Shao, Z.; Chen, X., Investigation on thermally-induced conformation transition of soy protein film with variable-temperature FTIR spectroscopy. J Appl Polym Sci 2012, 124, (4), 2838-2845.

13. Yang, F.; Yao, J.; Chen, X.; Shao, Z., Preparation and antimicrobial properties of pva/tannin blend films. Acta Polym Sin 2012, (2), 125-130.


2011


1.  Fu, C.; Porter, D.; Chen, X.; Vollrath, F.; Shao, Z., Understanding the Mechanical Properties of Antheraea Pernyi Silk-From Primary Structure to Condensed Structure of the Protein. Adv Funct Mater 2011, 21, (4), 729-737.

2.  Zhang, J.; Hao, R.; Huang, L.; Yao, J.; Chen, X.; Shao, Z., Self-assembly of a peptide amphiphile based on hydrolysed Bombyx mori silk fibroin. Chem Commun 2011, 47, (37), 10296-10298.

3.  Wang, T.; Che, R.; Li, W.; Mi, R.; Shao, Z., Control over different crystallization stages of caco3-mediated by silk fibroinCryst Growth Des 2011, 11, (6), 2164-2171.

4.  Wu, Y.; Cheng, C.; Yao, J.; Chen, X.; Shao, Z., Crystallization of calcium carbonate on chitosan substrates in the presence of regenerated silk fibroinLangmuir 2011, 27, (6), 2804-2810.

5.  Ruan, Y.; Lin, H.; Yao, J.; Chen, Z.; Shao, Z., Preparation of 3D Fibroin/Chitosan Blend Porous Scaffold for Tissue Engineering Via a Simplified Method. Macromol Biosci 2011, 11, (3), 419-426.

6.  Qiu, X.; Yang, Y.; Wang, L.; Lu, S.; Shao, Z.; Chen, X., Synergistic interactions during thermosensitive chitosan-beta-glycerophosphate hydrogel formation. Rsc Adv 2011, 1, (2), 282-289.

7.  Chen, M.; Yao, J.; Shao, Z.; Chen, X., Biomacromolecule-based Nanoparticle Drug Carriers. Prog Chem 2011, 23, (1), 202-212.

8.  Yuan, Q.; Yao, J.; Shao, Z., Improving the mechanical properties of silk fiber/fibroin composites by interfacial modification. Acta Polym Sin 2011, (11), 1329-1335.

9.  Wen, J.; Yao, J.; Shao, Z., Recent progress and application of non-bioactive proteins in material fields. Acta Polym Sin 2011, (1), 12-23.