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Titlebook: Organic Nanostructures for Next Generation Devices; Katharina Al-Shamery,Horst-Günter Rubahn,Helmut Si Book 2008 Springer-Verlag Berlin He

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Growth of Oriented Organic Nanoaggregates via Molecular Beam DepositionIn a series of experiments, it has been shown that needle-like crystals can be grown on various substrates like, e.g., the alkali halides [1, 2], muscovite mica [3, 4], Au (1 1 1) and Au foil [5–7], potassium acid phthalate KAP [8], and TiO. [9]. The needles emit polarized blue light after UV excita
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Tailored Organic Nanoaggregates Generated by Self-Assembly of Designed Functionalised p-Quaterphenyland optoelectrical properties [1]. Studies of single molecule properties on the Ångstrom length scale have demonstrated the feasibility of molecular electronics [2] as bulk polymeric systems have proven the practicability of plastic electronics on the micrometer scale, which resulted in the first co
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Crystallography of Ultrathin Organic Films and Nanoaggregates wave-guides. In all these cases the optical and electronic properties (and also the combination of both) are decisive parameters. Why are the structural properties of the nanoaggregates so important? The reason is the strong relationship between the structure (arrangement of the molecules within th
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Growth and Electronic Structure of Homo- and Hetero-epitaxial Organic Nanostructuresnd to what extent they can be controlled are still open. The fundamental issues that are important are both electronic and geometric: the relative position of the electronic levels (band alignment) is a prime determinate of the charge injection ability; molecular orientation and crystallinity contro
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Device-Oriented Studies on Electrical, Optical, and Mechanical Properties of Individual Organic Nanoogical properties. .-hexaphenylene (p6P) as well as diverse functionalized quaterphenylene molecules such as .-methyloxylated .-quaterphenylene (MOP4) [1] or .-chlorinated .-quaterphenylene (CLP4) [2] form well-aligned needles or “nanofibers” upon vacuum epitaxy on muscovite mica substrates [3, 4].
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