Department of Forest Products Technology, Aalto University, Espoo, Finland.
Biomacromolecules. 2013 Aug 12;14(8):2807-13. doi: 10.1021/bm400633r. Epub 2013 Jul 5.
We show a simple method toward nanoscale cilia-like structures, i.e., functional hairy surfaces, upon topochemically functionalizing nanorods of cellulose nanocrystals (CNCs) with thiol end groups (CNC-SHs), which leads to their immobilization onto a gold surface from one end, still allowing their orientational mobility. CNCs having a lateral dimension of 3-5 nm and length of 50-500 nm incorporate the native crystalline structure with hydrogen-bonded cellulose chains in the parallel configuration. This facilitates asymmetric, selective chemical modification of the reducing ends through reductive amination. Successful thiol functionalization is demonstrated using cryo transmission electron microscopy based on selective attachment of silver nanoparticles to the CNC-SH ends to form Janus-like colloidal rod-sphere adducts. The extent of thiol modification of CNC-SHs is quantified using X-ray photoelectron spectroscopy. The promoted binding of CNC-SHs on gold surfaces is shown by atomic force microscopy and quartz crystal microbalance, where the high dissipation suggests pronounced orientational mobility due to flexible joints at one rod end onto the surfaces. That the joints are flexible is also shown by the bending and realignment of the CNC-SH rods using a receding triple-phase evaporation front of a drying drop of water. The ability of the hairy surface to size-selectively resist particle binding was also investigated. As the CNCs are piezoelectric and allow magnetic functionalization by nanoparticles, we foresee a general platform for nanosized artificial cilia for fluid manipulation and controlled adsorption/desorption.
我们展示了一种简单的方法,通过将具有巯基末端(CNC-SH)的纤维素纳米晶(CNC)纳米棒进行拓扑化学功能化,在纳米尺度上制造出类似纤毛的结构,即具有功能的多毛表面,这导致它们从一端固定在金表面上,同时仍允许它们的取向移动。具有 3-5nm 横向尺寸和 50-500nm 长度的 CNC 包含具有氢键的纤维素链的平行结构的天然结晶结构。这便于通过还原胺化进行不对称、选择性的化学修饰。通过将银纳米颗粒选择性地附着到 CNC-SH 末端,形成类似 Janus 的胶体棒-球加合物,从而使用 cryo 透射电子显微镜证明了成功的巯基功能化。使用 X 射线光电子能谱定量了 CNC-SH 的巯基修饰程度。原子力显微镜和石英晶体微天平显示了 CNC-SH 在金表面上的促进结合,其中高耗散表明由于一端的柔性接头在表面上,因此具有明显的取向移动性。柔性接头也可以通过使用水的干燥液滴的后退三相蒸发前沿来弯曲和重新调整 CNC-SH 棒来证明。还研究了多毛表面对颗粒结合的尺寸选择性抵抗能力。由于 CNC 是压电的并且允许通过纳米颗粒进行磁性功能化,因此我们预见到了用于流体操纵和控制吸附/解吸的纳米级人工纤毛的通用平台。