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Titlebook: Anisotropic and Shape-Selective Nanomaterials; Structure-Property R Simona E. Hunyadi Murph,George K. Larsen,Kaitlin J Book 2017 Springer I

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Environmental Quality as a Public Goodn affect their physico-chemical properties and subsequently their applications. We aim to cover a wide range of applications including optical and plasmonic applications, sensing and imaging, catalytic and photocatalytic applications, bio-medical and environmental implications as well as energy rela
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https://doi.org/10.1007/978-3-540-73707-0 controlled shapes. Rational design of nanocrystal dimensions and layer thicknesses in nanocrystal heterostructures is important to many current and anticipated uses of nanocrystals in optoelectronics, energy conversion, and fluorescence imaging. One approach to shape control is the use of a series
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Production Theory and Transformation Space are engineered with output properties in mind, these evolved nanostructures possess unique shapes and physico-chemical attributes. Nanotoxicological considerations hinge on physical size and shape factors; thus, dramatic alterations to shape and dimensionality of ensemble nanohybrids (NHs) necessit
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Environmental Quality as a Public Goodic carbon cycle. A key challenge for achieving this goal is to develop selective, stable, and efficient electrocatalysts for the electrocatalytic reduction of CO.. Nanostructured catalysts can provide many advantages compared to bulk materials, including the increase of active sites, the change of t
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Risk and Environmental Allocation chemical and physical properties. Obtaining nanoparticles that are homogenous in size and shape can be a challenging process, particularly for particles that consist of reactive metals. Anisotropy further adds to the complexity in controlling the kinetics and thermodynamics of the nucleation and gr
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https://doi.org/10.1007/978-3-662-02517-8e body of work dedicated to investigating both the chemical and physical properties of these fascinating materials. This work has by no means been limited to nanospheres, but over the last ~20 years included a wide variety of morphologies including nanorods, nanocubes, nanoshells, and nanocages to n
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