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以化学沉淀法合成了双相磷酸钙(BCP)生物陶瓷粉末,以辛酸亚锡为催化剂,用丙交酯对BCP粉体进行表面接枝改性.通过X衍射分析(XRD)、化学分析、激光粒度分析、扫描电镜观测、红外光谱分析(FTIR)、热重分析等手段对改性前后粉体特性进行了研究;结果发现合成的BCP粉体双相晶型结构良好,HA/β-TCP比例为5.5:4.5,Ca/P=1.54,中位径D50为1.5μm,颗粒近似球形,一次颗粒粒径0.5~0.8μm;BCP表面改性后粉体表面形貌变为不规则且包覆片层状晶片,丙交酯通过开环聚合接枝在无机粉体表面的羟基基团上(通过化学键合形成羧酸钙等基团)成为低聚聚乳酸,粉体表面有机基团接枝量为5%(质量分数,下同).

参考文献

[1] 杨为中,周大利,尹光福,陈槐卿.骨组织工程支架材料磷酸钙双相生物陶瓷的研究进展[J].硅酸盐学报,2004(09):1143-1149.
[2] Daculsi G et al.[J].Journal of Materials Science:Materials in Medicine,2003,14(03):195.
[3] Ignjatovic N;Uskokovic D .Synthesis and application of hydroxyapatite/polylactide composite biomaterial[J].Applied Surface Science: A Journal Devoted to the Properties of Interfaces in Relation to the Synthesis and Behaviour of Materials,2004(1/4):314-319.
[4] Dali ZHOU,Weizhong YANG,Guangfu YIN,Changqiong ZHENG,Yun Zhang,Huaiqing CHEN,Rui CHEN.In Vitro Characterizations of PLLA/β-TCP Porous Matrix Materials and RMSC-PLLA-β-TCP Composite Scaffolds[J].材料科学技术学报(英文版),2004(03):248-252.
[5] 李勇;张云;尹光福 et al.[J].稀有金属材料与工程,2005,34(zk):852.
[6] Liu Q;de-Wijn JR;de-Groot K;van-Blitterswijk CA .Surface modification of nano-apatite by grafting organic polymer.[J].Biomaterials,1998(11/12):1067-1072.
[7] Qiu XY;Chen L;Hu JL;Sun JR;Hong ZK;Liu AX;Chen XS;Jing XB .Surface-modified hydroxyapatite linked by L-lactic acid oligomer in the absence of catalyst[J].Journal of Polymer Science, Part A. Polymer Chemistry,2005(21):5177-5185.
[8] Kunze C.;Freier T.;Helwig E.;Sandner B.;Reif D.;Wutzler A.;Radusch HJ. .Surface modification of tricalcium phosphate for improvement of the interfacial compatibility with biodegradable polymers[J].Biomaterials,2003(6):967-974.
[9] Victoria E C;Gnanam F D .[J].Trends Biomaterartiy Organ,2002,16(01):12.
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