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纳米级界面可提高铸造聚合物对玻璃的附着力。

A nanoscale interface improves attachment of cast polymers to glass.

出版信息

ACS Appl Mater Interfaces. 2010 Aug;2(8):2185-8. doi: 10.1021/am1004893.

Abstract

A novel interface was prepared on glass slides that stabilizes several cast polymers against delamination under conditions necessary for the study of cell surface interactions. This interface was synthesized by deposition of zirconium tetra(tert-butoxide) from the vapor phase onto the glass followed by mild thermolysis, which gives a surface-bound zirconium oxide coating. This oxide coating improved attachment of polymer coatings cast from formic acid or methylene chloride. Nylon, polyurethane, and polyhydroxybutyrate/polyhydroxyvalerate coatings were stable against delamination from the oxide-coated glass following sonication in ethanol for more than 30 min or immersion in water at pH 8 for at least 48 h.

摘要

一种新型的界面被制备在载玻片上,该界面稳定了几种浇铸聚合物,使其在研究细胞表面相互作用所需的条件下不会分层。该界面是通过将四(叔丁氧基)锆从气相沉积到玻璃上,然后进行温和的热解来合成的,这会在表面形成一层氧化锆涂层。这种氧化锆涂层改善了从甲酸或二氯甲烷浇铸的聚合物涂层的附着性。尼龙、聚氨酯和聚羟基丁酸酯/聚羟基戊酸酯涂层在乙醇中超声处理超过 30 分钟或在 pH 值为 8 的水中浸泡至少 48 小时后,仍能稳定地附着在氧化锆涂层的玻璃上,不会分层。

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