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Comparison between nucleation of pentacene monolayer islands on polymeric and inorganic substrates

机译:聚合物和无机基材上并五苯单层岛形核的比较

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We present a comparative study of the nucleation and growth of pentacene monolayer islands in the sub-monolayer regime onto inorganic substrates of SiO_2 and sapphire (Al_2O_3) and organic substrates of poly(methyl-metacrylate) (PMMA). We have determined the scaling laws that govern the saturated nucleation density per unit area N as a function of two essential deposition parameters: the deposition rate k and the substrate temperature T_s. For all substrates, we found N ∝ κ~δ, with 0.8 ≤ δ? 1.2, and the T_s dependence of the nucleation density follows a typical activated Arrhenius law. Whereas a critical nucleus size of i=2 is obtained for all investigated substrates, the activation energy for nucleation depends significantly on the dielectric. The difference in activation energy of nucleation on PMMA and SiO_2 is due to different molecule-substrate interactions.
机译:我们目前对亚单层体系中并五苯单层岛形核和生长到SiO_2和蓝宝石(Al_2O_3)的无机衬底以及聚甲基丙烯酸甲酯(PMMA)的有机衬底上的成核和生长进行比较研究。我们已经确定了定律,该定律控制着两个基本沉积参数的函数:单位面积N的饱和成核密度:沉积速率k和衬底温度T_s。对于所有底物,我们发现N ∝κ〜δ,其中0.8≤δ? 1.2,成核密度的T_s依赖性遵循典型的激活阿伦尼乌斯定律。对于所有研究的衬底,获得的关键核尺寸为i = 2,而成核的活化能则主要取决于电介质。 PMMA和SiO_2上成核活化能的差异是由于分子与底物之间的相互作用不同所致。

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