Kankate Laxman, Balzer Frank, Niehus Horst, Rubahn Horst-Günter
Humboldt-Universität zu Berlin, Newtonstr. 15, D-12489 Berlin, Germany.
J Chem Phys. 2008 Feb 28;128(8):084709. doi: 10.1063/1.2839296.
All relevant steps of discontinuous thin film growth of para-hexaphenylene on muscovite mica (0 0 1) from wetting layer over small and large clusters to nanofibers are observed and investigated in detail by a combined polarized fluorescence and atomic force microscopy study. From a variation of film thickness and surface temperature, we determine effective activation energies for cluster growth of 0.17 eV, for nanofiber length growth of 0.46 eV, for width growth of 0.19 eV, and for height growth of 0.07 eV. The corresponding exponential prefactors for the nanofiber growth are 1 x 10(9), 6 x 10(4), and 3 x 10(2) nm. Polarized fluorescence studies reveal that nanofibers grow along the grooves of the mica surface and that they do not change direction if they cross an even number of mica surface steps, while they change direction by 120 degrees for an odd number of steps. These results are taken as an input for a model of the unidirectional growth process on mica. Absolute parameters allowing one to grow nanofibers of predetermined morphology via organic molecular beam epitaxy are also given.
通过偏振荧光和原子力显微镜联合研究,详细观察和研究了对六亚苯基在白云母(0 0 1)上从不连续薄膜生长的所有相关步骤,即从润湿层经过小簇和大簇到纳米纤维的生长过程。通过改变薄膜厚度和表面温度,我们确定了簇生长的有效活化能为0.17电子伏特,纳米纤维长度生长的有效活化能为0.46电子伏特,宽度生长的有效活化能为0.19电子伏特,高度生长的有效活化能为0.07电子伏特。纳米纤维生长的相应指数前因子分别为1×10⁹、6×10⁴和3×10²纳米。偏振荧光研究表明,纳米纤维沿着云母表面的沟槽生长,并且当它们穿过偶数个云母表面台阶时不会改变方向,而当穿过奇数个台阶时会改变120度方向。这些结果被用作云母上单向生长过程模型的输入。还给出了通过有机分子束外延生长预定形态纳米纤维的绝对参数。