天然聚合物涂层与化学修饰的硅氧烷聚合物的粘附机理。

ty10086 提交于 周三, 08/25/2021 - 15:55
文章英文标题
Mechanism of Adhesion of Natural Polymer Coatings to Chemically Modified Siloxane Polymer.
正文
表面涂层在改善生物医学植入物性能方面发挥着重要作用。聚二甲基硅氧烷( PDMS )是生物医学植入物常用的材料,表面涂复PDMS植入物常面临涂层分层或开裂等问题。在本工作中,我们测量了生物相容性蛋白聚合物丝素蛋白( SF )纳米涂层在原始和改性PDMS表面的性能。采用氧等离子体处理和3 -氨丙基三乙氧基硅烷( APTES )处理对PDMS表面进行改性。虽然这些PDMS改性技术已经被人们所认识,但它们对SF纳米涂层附着力的影响还没有研究。有趣的是,采用拉伸和弯曲变形等本体技术对涂层样品进行测试发现,与氧等离子体处理相比,采用APTES处理的PDMS表面改性后,SF纳米涂层的抗裂性能有所提高。通过纳米划痕和纳米压痕测量,在微观和细观长度尺度上验证了这些结果。进一步,我们发展了一种独特的利用改性原子力显微镜测量处理后PDMS表面与SF分子间粘结能的方法。这些测量表明,PDMS-APTES- SF由于在这种纳米级接触中形成了更多的分子链,其粘接强度是PDMS-O2 - SF的10倍。PDMS-O2中较少的分子连接数表明只有较少的表面羟基通过氢键等二级相互作用与SF蛋白发生相互作用。另一方面,PDMS-APTES表面存在大量的胺基与丝素蛋白链上存在的极性氨基酸发生氢键作用,从而产生更好的粘附性。因此,APTES对PDMS基体的改性可以提高纳米涂层与基体的附着力,增强纳米涂层的分层和抗裂性能。
文章内容(英文)
Surface coatings play an important role in improving the performance of biomedical implants. Polydimethylsiloxane (PDMS) is a commonly used material for biomedical implants, and surface-coated PDMS implants frequently face problems such as delamination or cracking of the coating. In this work, we have measured the performance of nano-coatings of the biocompatible protein polymer silk fibroin (SF) on pristine as well as modified PDMS surfaces. The PDMS surfaces have been modified using oxygen plasma treatment and 3-amino-propyl-triethoxy-silane (APTES) treatment. Although these techniques of PDMS modification have been known, their effects on adhesion of SF nano-coatings have not been studied. Interestingly, testing of the coated samples using a bulk technique such as tensile and bending deformation showed that the SF nano-coating exhibits improved crack resistance when the PDMS surface has been modified using APTES treatment as compared to an oxygen plasma treatment. These results were validated at the microscopic and mesoscopic length scales through nano-scratch and nano-indentation measurements. Further, we developed a unique method using modified atomic force microscopy to measure the adhesive energy between treated PDMS surfaces and SF molecules. These measurements indicated that the adhesive strength of PDMS-APTES-SF is 10 times more compared to PDMS-O2-SF due to the higher number of molecular linkages formed in this nanoscale contact. This lower number of molecular linkages in the PDMS-O2 indicates that only fewer numbers of surface hydroxyl groups interact with the SF protein through secondary interactions such as hydrogen bonding. On the other hand, a larger number of amine groups present on PDMS-APTES surface hydrogen bond with the polar amino acids present on the silk fibroin protein chain, resulting in better adhesion. Thus, APTES modification to the PDMS substrate results in improved adhesion of nano-coating to the substrate and enhances the delamination and crack resistance of the nano-coatings.
来源出处
Journal|[J]LangmuirVolume 37, Issue 9. 2021. PP 2974-2984
DOI
https://doi.org/10.1021/ACS.LANGMUIR.1C00047

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备注说明:

美国道康宁道康宁SYLGARD 184硅橡胶是由液体组分组成的双组分套件产品,包括基本组分与固化剂。基本组分与固化剂按10:1重量比完全混合,中等粘度混合液的稠度与SAE 40机油相似。无论厚薄,混合液将固化成为具有韧性的透明弹性体,最适用于电子/电气方面的封装与灌封应用。 道康宁SYLGARD 184硅橡胶在25~150℃的温度范围内固化,无放热现象,无需二次固化。固化过程完成后,可立即在-55~200℃的温度范围内使用。 产品特性:低毒性,在常规的工业操作中,无特别的注意事项; 无溶剂或固化副产物, 固化时不放热;无需特殊的通风条件,不会产生腐蚀;固化时,收缩量小; 固化后, 透明具有弹性;抗震与减缓机械震动;振动的传递性能小;元件可裸视检查与易修补性; 环保性能;低吸水性,良好的耐辐射性能;高真空状态下的低漏气性; 优异的电性能;较大温度范围内的稳定性, 抗解聚;在-55~200℃范围内,甚至在密闭状态下保持弹性与柔韧性,性能稳定; 阻燃性,UL可燃性分级为94 V-1,温度等级:130℃ 产品用途: 道康宁SYLGARD 184硅橡胶在电气/电子的封装与灌封方面有广泛的应用。