School of Physics and Astronomy, University of Nottingham, Nottingham NG7 2RD, UK.
Nat Commun. 2010 Sep 21;1:75. doi: 10.1038/ncomms1075.
The spontaneous ordering of molecules into two-dimensional self-assembled arrays is commonly stabilized by directional intermolecular interactions that may be promoted by the addition of specific chemical side groups to a molecule. In this paper, we show that self-assembly may also be driven by anisotropic interactions that arise from the three-dimensional shape of a complex molecule. We study the molecule Mn(12)O(12)(O(2)CCH(3))(16)(H(2)O)(4) (Mn(12)(acetate)(16)), which is transferred from solution onto a Au(111) substrate held in ultrahigh vacuum using electrospray deposition (UHV-ESD). The deposited Mn(12)(acetate)(16) molecules form filamentary aggregates because of the anisotropic nature of the molecule-molecule and molecule-substrate interactions, as confirmed by molecular dynamics calculations. The fragile Mn(12)O(12) core of the Mn(12)(acetate)(16) molecule is compatible with the UHV-ESD process, which we demonstrate using near-edge X-ray adsorption fine-structure spectroscopy. UHV-ESD of Mn(12)(acetate)(16) onto a surface that has been prepatterned with a hydrogen-bonded supramolecular network provides additional control of lateral organization.
分子自发有序排列成二维自组装阵列通常通过分子间的定向相互作用稳定,这些相互作用可以通过向分子中添加特定的化学侧基来促进。在本文中,我们表明,自组装也可以由复杂分子的三维形状引起的各向异性相互作用驱动。我们研究了 Mn(12)O(12)(O(2)CCH(3))(16)(H(2)O)(4) (Mn(12)(醋酸盐)(16)) 分子,该分子使用电喷雾沉积 (UHV-ESD) 从溶液转移到超真空中的 Au(111) 基底上。沉积的 Mn(12)(醋酸盐)(16)分子由于分子间和分子-基底相互作用的各向异性性质而形成丝状聚集体,这一点通过分子动力学计算得到了证实。Mn(12)(醋酸盐)(16)分子脆弱的 Mn(12)O(12)核心与 UHV-ESD 过程兼容,我们使用近边 X 射线吸收精细结构光谱证明了这一点。在预先形成氢键超分子网络的表面上进行 Mn(12)(醋酸盐)(16)的 UHV-ESD,可以提供对横向组织的额外控制。