...
首页> 外文期刊>Chemistry: A European journal >Compression of self-assembled nano-objects: 2D/3D transitions in films of (perflnoroalkyl)alkanes-persistence of an organized array of surface micelles
【24h】

Compression of self-assembled nano-objects: 2D/3D transitions in films of (perflnoroalkyl)alkanes-persistence of an organized array of surface micelles

机译:自组装纳米物体的压缩:(全氟烷基)烷烃薄膜的2D / 3D过渡-表面胶束阵列的持久性

获取原文
获取原文并翻译 | 示例

摘要

Understanding and controlling the molecular organization of amphiphilic molecules at interfaces is essential for materials and biological sciences. When spread on water, the model amphiphiles constituted by C_n,F _(2n+1)C_mH2m+1 (FnHm) diblocks spontaneously self-assemble into surface hemimicelles. Therefore, compression of monolayers of FnHm diblocks is actually a compression of nanometric objects. Langmuir films of F8H16, FSH18, F8H20, and F1QH16 can actually be compressed far beyond the "collapse" of their monolayers at ~30 ?~2. For molecular areas A between 30 and 10 ?~2, a partially reversible, 2D/ 3D transition occurs between a monolayer of surface micelles and a multilayer that coexist on a large plateau. For A < 10 ?~2, surface pressure increases again, reaching up to ~48mNm~(-1) before the film eventually collapses. Brewster angle microscopy and AFM indicate a several-fold increase in film thickness when scanning through the 2D/3D coexistence plateau. Compression beyond the plateau leads to a further increase in film thickness and, eventually, to film disruption. Reversibility was assessed by using compression-expansion cycles. AFM of F8H20 films shows that the initial monolayer of micelles is progressively covered by one (and eventually two) bilayers, which leads to a hitherto unknown organized composite arrangement. Compression of films of the more rigid F10H16 results in crystalline-like inflorescences. For both diblocks, a hexagonal array of surface micelles is consistently seen, even when the 3D structures eventually disrupt, which means that this monolayer persists throughout the compression experiments. Two examples of pressure-driven transformations of films of self-assembled objects are thus provided. These observations further illustrate the powerful self-assembling capacity of perfluoroalkyl chains.
机译:了解和控制两亲分子在界面处的分子组织对于材料和生物学至关重要。当在水中扩散时,由C_n,F _(2n + 1)C_mH2m + 1(FnHm)构成的模型两亲物自发地自组装成表面半胶束。因此,FnHm二嵌段单层的压缩实际上是纳米物体的压缩。 F8H16,FSH18,F8H20和F1QH16的Langmuir薄膜实际上可以被压缩到30〜2左右,远远超过其单层的“塌陷”。对于在30和10 2之间的分子区域A,在表面胶束的单层和在大平台上共存的多层之间发生部分可逆的2D / 3D转变。对于A <10?〜2,表面压力再次增加,直到膜最终塌陷之前达到〜48mNm〜(-1)。当通过2D / 3D共存平台扫描时,布鲁斯特角显微镜和AFM表示膜厚度增加了几倍。超过平台的压缩导致膜厚度的进一步增加,并最终导致膜破裂。通过使用压缩-膨胀循环来评估可逆性。 F8H20薄膜的原子力显微镜显示,胶束的最初单层逐渐被一层(最后是两层)双层覆盖,这导致了迄今为止未知的有组织的复合排列。刚性更高的F10H16薄膜的压缩导致晶状花序。对于这两个二嵌段,即使当3D结构最终破坏时,也始终可见到表面胶束的六边形阵列,这意味着该单分子层在整个压缩实验中都持续存在。因此提供了自组装物体的膜的压力驱动的转变的两个示例。这些观察结果进一步说明了全氟烷基链的强大的自组装能力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号