Zhiqing Tan
Donghua University
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Publication
Featured researches published by Zhiqing Tan.
Journal of Macromolecular Science, Part B | 2006
Qing Yang; Lin Chen; Xinyuan Shen; Zhiqing Tan
The classic solvent casting/particulate leaching method to fabricate PCL scaffolds was improved by using a centrifugal technology, a direct bonding process in preparing salt matrices and a technology of vacuum treatment under heating in the desolvation process. Series operations of preshaping, centrifuging, casting and desolvating were employed during the scaffolds manufacture. The scaffolds properties were characterized including micro‐structures, pore dimensions, porosity and hydrophilicity. The results show that centrifugal technology can improve the pore uniformity of scaffolds. In the bonding process, well‐interconnected porous structures were formed if water content was between 2∼7%. The distribution of pore dimensions was from 10 to 80 μm, and the porosities were about 89%. Generally, the porosities formed by vacuum treatment at high temperature are greater than those formed by vacuum treatment at ambient temperature in the desolvation process. The fabricated porous PCL scaffolds with good elasticity and desired thickness could be a good choice for application in soft tissue engineering.
Archive | 2012
Lu Chen; Tian Liu; Zhiqing Tan; Xinyuan Shen; Ke Yang; Qing Yang
Archive | 2009
Qing Yang; Yonghong Tang; Zhiqing Tan; Xinyuan Shen
Archive | 2012
Qing Yang; Ke Yang; Lu Chen; Zhiqing Tan; Xinyuan Shen; Tian Liu
Archive | 2011
Qing Yang; Meiling Shao; Zhiqing Tan; Xinyuan Shen; Peihua Zhang; Lu Chen; Biqiao Wang
Archive | 2012
Qing Yang; Zhiqian Lv; Zhiqing Tan; Xinyuan Shen; Peihua Zhang
Archive | 2011
Qing Yang; Meiling Shao; Zhiqing Tan; Xinyuan Shen; Peihua Zhang; Wenzu Wang; Lu Chen
Archive | 2008
Xinyuan Shen; Zhiqing Tan; Qing Yang; Yali Ji
Archive | 2011
Qing Yang; Liyuan Huang; Zhiqing Tan; Xinyuan Shen; Peihua Zhang; Wenzu Wang; Xiao Liu; Chuhan Sha
Archive | 2010
Nanliang Chen; Sishi Chen; Xinyuan Shen; Zhiqing Tan; Naijie Tang; Wenzu Wang; Qing Yang; Peihua Zhang; Rong Zhang