...
首页> 外文期刊>ACS nano >Molecular crystallization controlled by pH regulates mesoscopic membrane morphology
【24h】

Molecular crystallization controlled by pH regulates mesoscopic membrane morphology

机译:pH控制的分子结晶调节介观膜的形态

获取原文
获取原文并翻译 | 示例
           

摘要

Coassembled molecular structures are known to exhibit a large variety of geometries and morphologies. A grand challenge of self-assembly design is to find techniques to control the crystal symmetries and overall morphologies of multicomponent systems. By mixing +3 and-1 ionic amphiphiles, we assemble crystalline ionic bilayers in a large variety of geometries that resemble polyhedral cellular crystalline shells and archaea wall envelopes. We combine TEM with SAXS and WAXS to characterize the coassembled structures from the mesoscopic to nanometer scale. The degree of ionization of the amphiphiles and their intermolecular electrostatic interactions are controlled by varying pH. At low and high pH values, we observe closed, faceted vesicles with two-dimensional hexagonal molecular arrangements, and at intermediate pH, we observe ribbons with rectangular-C packing. Furthermore, as pH increases, we observe interdigitation of the bilayer leaflets. Accurate atomistic molecular dynamics simulations explain the pH-dependent bilayer thickness changes and also reveal bilayers of hexagonally packed tails at low pH, where only a small fraction of anionic headgroups is charged. Coarse-grained simulations show that the mesoscale geometries at low pH are faceted vesicles where liquid-like edges separate flat crystalline domains. Our simulations indicate that the curved-to-polyhedral shape transition can be controlled by tuning the tail density in regions where sharp bends can form the polyhedral edges. In particular, the pH acts to control the overall morphology of the ionic bilayers by changing the local crystalline order of the amphiphile tails.
机译:已知共组装的分子结构表现出多种几何形状和形态。自组装设计的一个巨大挑战是找到控制多组分系统的晶体对称性和整体形态的技术。通过混合+3和-1离子两亲物,我们以多种几何形状组装了晶体离子双层,这些几何形状类似于多面体细胞晶体壳和古细菌壁被膜。我们将TEM与SAXS和WAXS相结合,以表征从介观到纳米尺度的共组装结构。通过改变pH来控制两亲物的电离度及其分子间静电相互作用。在低和高pH值下,我们观察到具有二维六边形分子排列的闭合小平面囊泡,而在中等pH值下,我们观察到带有矩形C堆积的条带。此外,随着pH值的增加,我们观察到了双层小叶的相互交叉。精确的原子分子动力学模拟解释了pH依赖的双层厚度变化,并且还揭示了在低pH值(只有一小部分阴离子头基带电)下双层堆积的六角形尾巴的双层结构。粗粒度模拟显示,在低pH下的中尺度几何形状是多面囊泡,其中液体状边缘分隔了平坦的晶域。我们的模拟表明,可以通过调整尖锐弯曲可形成多面体边缘的区域的尾部密度来控制弯曲到多面体的形状过渡。特别地,pH通过改变两亲物尾部的局部结晶顺序来控制离子双层的整体形态。

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