Institute of Materials, École Polytechnique Fédérale de Lausanne, Vaud CH-1015, Switzerland.
Nat Commun. 2012;3:1182. doi: 10.1038/ncomms2155.
It is accepted that the ligand shell morphology of nanoparticles coated with a monolayer of molecules can be partly responsible for important properties such as cell membrane penetration and wetting. When binary mixtures of molecules coat a nanoparticle, they can arrange randomly or separate into domains, for example, forming Janus, patchy or striped particles. To date, there is no straightforward method for the determination of such structures. Here we show that a combination of one-dimensional and two-dimensional NMR can be used to determine the ligand shell structure of a series of particles covered with aliphatic and aromatic ligands of varying composition. This approach is a powerful way to determine the ligand shell structure of patchy particles; it has the limitation of needing a whole series of compositions and ligands' combinations with NMR peaks well separated and whose shifts due to the surrounding environment can be large enough.
人们普遍认为,单层分子包裹的纳米粒子的配体壳形态在一定程度上与其细胞膜穿透性和润湿性等重要性质有关。当分子的二元混合物包裹纳米粒子时,它们可以随机排列或分离成域,例如形成各向异性、斑状或条纹状粒子。迄今为止,尚无直接的方法可以确定此类结构。在这里,我们展示了一维和二维 NMR 的组合可用于确定一系列具有不同组成的脂肪族和芳香族配体的粒子的配体壳结构。这种方法是确定各向异性粒子的配体壳结构的有力手段;它的局限性在于需要一系列的组成和配体组合,并且要求 NMR 峰之间有足够的间隔,并且由于周围环境引起的位移要足够大。