价值工程
價值工程
개치공정
VALUE ENGINEERING
2015年
14期
164-166
,共3页
郑文娟%麻文勇%赵元聪%黄楠
鄭文娟%痳文勇%趙元聰%黃楠
정문연%마문용%조원총%황남
钛氧膜%表面改性%自组装%端羟基树状分子%仿生改性
鈦氧膜%錶麵改性%自組裝%耑羥基樹狀分子%倣生改性
태양막%표면개성%자조장%단간기수상분자%방생개성
titanium oxide film%surface modification%self-assembly%hydroxy-terminated dendrimers%bionic modified
为提高钛氧膜表面官能团密度,改善其血液相容性,特在其表面原位构建多羟基树状分子。本文通过合成11-羟基十一烷基膦酸(HUPA)后在钛氧膜表面进行自组装,通过依次重复利用传统的亲核取代反应等,制备三代端羟基树状表面。选用红外(FTIR)对HUPA的合成进行定性表征,利用扫描电子显微镜(SEM)进一步观察材料表面形貌并检测制备于氧化钛薄膜端羟基树状表面润湿性的改变,通过血小板粘附实验考量改性后钛氧膜的抗血小板粘附与激活的能力。采用纤维蛋白原粘附实验进一步测试改性材料的血液相容性。实验结果表明端羟基树状表面的制备有效改善了氧化钛薄膜的抗凝血性能,同时提高了材料表面的官能团数量,为后续的组装改性提供了条件。
為提高鈦氧膜錶麵官能糰密度,改善其血液相容性,特在其錶麵原位構建多羥基樹狀分子。本文通過閤成11-羥基十一烷基膦痠(HUPA)後在鈦氧膜錶麵進行自組裝,通過依次重複利用傳統的親覈取代反應等,製備三代耑羥基樹狀錶麵。選用紅外(FTIR)對HUPA的閤成進行定性錶徵,利用掃描電子顯微鏡(SEM)進一步觀察材料錶麵形貌併檢測製備于氧化鈦薄膜耑羥基樹狀錶麵潤濕性的改變,通過血小闆粘附實驗攷量改性後鈦氧膜的抗血小闆粘附與激活的能力。採用纖維蛋白原粘附實驗進一步測試改性材料的血液相容性。實驗結果錶明耑羥基樹狀錶麵的製備有效改善瞭氧化鈦薄膜的抗凝血性能,同時提高瞭材料錶麵的官能糰數量,為後續的組裝改性提供瞭條件。
위제고태양막표면관능단밀도,개선기혈액상용성,특재기표면원위구건다간기수상분자。본문통과합성11-간기십일완기련산(HUPA)후재태양막표면진행자조장,통과의차중복이용전통적친핵취대반응등,제비삼대단간기수상표면。선용홍외(FTIR)대HUPA적합성진행정성표정,이용소묘전자현미경(SEM)진일보관찰재료표면형모병검측제비우양화태박막단간기수상표면윤습성적개변,통과혈소판점부실험고량개성후태양막적항혈소판점부여격활적능력。채용섬유단백원점부실험진일보측시개성재료적혈액상용성。실험결과표명단간기수상표면적제비유효개선료양화태박막적항응혈성능,동시제고료재료표면적관능단수량,위후속적조장개성제공료조건。
In order to improve the surface functional group density of titanium oxide film, improve the blood compatibility, it builds the polyhydroxy dendrimer in situ. Through the synthesis of 11-hydroxy-undecyl acid (HUPA), this paper conducted self-assembly in situ on titanium oxide film and prepared the three generations of terminal hydroxyl dendritic surface by sequentially recycling conventional nucleophilic substitution reaction. It selected infrared(FTIR)to characterize the synthesis of HUPA, used the scanning electron microscope (SEM) for the further observation of surface topography and detection of the change of hydroxy tree surface wettability prepared in the titanium oxide film, and examined the ability of anti-platelet adhesion and activation of the modified titanium oxide film. The fibrinogen adhesion assay was used to further test the blood compatibility of modified material. Experimental results show that the preparation of hydroxyl-terminated dendritic surface can effectively improve the anticoagulant properties of titanium oxide films, while increase the amount of surface functional groups, and provide the conditions for subsequent assembly modification.