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Titlebook: Investigating the Nucleation, Growth, and Energy Levels of Organic Semiconductors for High Performan; Ajay Virkar Book 2012 Springer Scien

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Technological Importance of Crystalline Octadecylsilane Monolayers: Crystalline Monolayers Fabricatse molecules form self-assembled monolayers (SAMs) on the surface by physical adsorption or covalent bonding of the head group to the substrate and are further stabilized by attractive van der Waals packing of the alkyl chains.
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Highly Conductivity and Transparent Carbon-Nanotube and Organic Semiconductor Hybrid Films: Exploitpter, the lessons learned from studying organic semiconductor nucleation and growth for transistors are applied to improve the conductivity of carbon nanotube (CNT) networks for transparent electrode applications.
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Introduction to Organic Semiconductors, Transistors and Conductors,stics, along with conventional inorganic semiconductors like silicon, represent the two most significant materials breakthroughs in the past century. It would be impossible to imagine life without either. Organic electronics is a fascinating emerging branch of material science since its aim is to wed the benefits of these two classes of materials.
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,Alkylsilane Dielectric Modification Layer: Molecular Length Dependence and the Odd–Even Effect,nger chained ones (determined by GATR-FTIR and GIXD). The ability to create high quality crystalline monolayers at a high throughput on multiple substrates using spin-casting allowed for more rapid investigation into the role of the SAM on the growth of pentacene on different surfaces and corresponding TFT performance.
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The Nucleation, Surface Energetics and Stability of Pentacene Thin Films on Crystalline and Amorphoiconducting active layer [.–.]. For bottom gated OTFTs, the majority of the current flows within the first few monolayers at the dielectric/semiconductor interface; thus understanding and controlling the growth and nucleation of the semiconductor at this interface is crucial for device optimization
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