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Advances in Atomic and Molecular Nanotechnology: Theories, Applications, and Experiments

This comprehensive overview explores the latest developments in atomic and molecular nanotechnology, with a focus on both experimental and theoretical studies of organic nanostructures derived from petroleum, such as diamondoids and asphaltenes. It delves into quantum mechanics, molecular dynamics simulations of nanosystems, and the intricate processes of nanoparticle-protein attachment for targeted drug delivery applications. Covering key topics such as statistical mechanics, phase transitions, and advanced imaging techniques, this work highlights the intersection of nanotechnology and biochemistry.

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Advances in Atomic and Molecular Nanotechnology: Theories, Applications, and Experiments

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  1. Atomic & Molecular Nanotechnology G. Ali Mansoori, Bio & Chem Eng; Depts Prime Grant Support: ARO, KU, UMSL, ANL • Experimental and theoretical studies of organic nanostructures derived from petroleum (Diamondoids, asphaltenes, etc.).. • Quantum and statistical mechanics of small systems - Development of ab initio models and equations of state of nanosystems. Phase transitions, fragmentations. • Molecular dynamics simulation of small systems - Studies in non-extensivity and internal pressure anomaly of nanosystems. • DNA-Dendrimersnano-cluster formation, nanoparticle-protein attachment for drug delivery • Nanoparticles-Protein Attachmrnt • Nano-Imaging (AFM & STM), Microelectrophoresis • Ab Initio computations (Applications of Gaussian 98) • Nano-Systems Simulations (Molecular Dynamics) • Nano-Thermodynamics and Statistical Mechanics • DNA-DendrimerNano-Cluster Electrostatics (CTNS, 2005) • Nonextensivity and Nonintensivity in Nanosystems - A Molecular Dynamics Sumulation J Comput & TheortNanoscience (CTNS,2005) • Principles of Nanotechnology (Book) World Scientific Pub. Co (2005) • Statistical Mechanical Modeling and its Application to Nanosystems Handbook of Theor & ComputNanoscience and Nanotechnology (2005) • Phase-Transition and Fragmentation in Nano-Confined Fluids J Comput & TheortNanoscience (2005) • Interatomic Potential Models for Nanostructures" EncyclNanoscience & Nanotechnology (2004)

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