Bal J K, Kundu Sarathi, Hazra S
Surface Physics Division, Saha Institute of Nuclear Physics, Kolkata, India.
Eur Phys J E Soft Matter. 2012 Aug;35(8):79. doi: 10.1140/epje/i2012-12079-8. Epub 2012 Aug 24.
Structure and stability of cadmium arachidate (CdA) Langmuir-Blodgett (LB) films on homogeneous (i.e., OH-, H-passivated Si(001) substrates) and heterogeneous (i.e., Br-passivated Si(001) substrates) surfaces were studied using X-ray reflectivity and atomic force microscopy techniques and compared with those of nickel arachidate (NiA) LB films. While on OH-passivated Si, an asymmetric monolayer (AML) structure starts to grow, on H-passivated Si, a symmetric monolayer (SML) of CdA forms, although for both the films, pinhole-type defects are present as usual. However, on heterogeneous Br-passivated Si substrates, a combination of AML, SML, shifted SML and SML on top of AML (i.e., AML/SML), all types of structures are found to grow in such a way that, due to the variation of heights in the out-of-plane direction, ring-shaped in-plane nanopatterns of CdA molecules are generated. Probably due to stronger head-head interactions and higher metal ion-carboxylic ligand bond strength for CdA molecules compared to NiA, easy flipping of SML on top of another preformed SML, i.e. a SML/SML structure formation was not possible and as a result a wave-like modulation is observed for the CdA film on such heterogeneous substrate. The presence of hydrophilic/hydrophobic interfacial stress on the heterogeneous substrate thus modifies the deposited molecular structure so that the top surface morphology for a CdA film is similar to monolayer buckling while that for NiA film is similar to monolayer collapse.
利用X射线反射率和原子力显微镜技术研究了花生酸镉(CdA)在均匀(即OH - 、H钝化的Si(001)衬底)和异质(即Br钝化的Si(001)衬底)表面上的朗缪尔 - 布洛杰特(LB)膜的结构和稳定性,并与花生酸镍(NiA)LB膜进行了比较。在OH钝化的Si上,非对称单层(AML)结构开始生长,而在H钝化的Si上,形成了CdA的对称单层(SML),不过对于这两种膜,通常都存在针孔型缺陷。然而,在异质的Br钝化的Si衬底上,发现AML、SML、移位的SML以及AML之上的SML(即AML/SML)的组合,所有这些结构的生长方式使得由于面外方向高度的变化,产生了CdA分子的环形面内纳米图案。与NiA相比,可能由于CdA分子更强的头 - 头相互作用和更高的金属离子 - 羧酸配体键强度,在另一个预先形成的SML之上的SML不容易翻转,即不可能形成SML/SML结构,结果在这种异质衬底上观察到CdA膜的波状调制。因此,异质衬底上亲水性/疏水性界面应力的存在改变了沉积的分子结构,使得CdA膜的顶面形态类似于单层屈曲,而NiA膜的顶面形态类似于单层塌陷。