Editorial: Energy Transport for Nanostructured Materials
نویسندگان
چکیده
منابع مشابه
Thermal Transport in Nanostructured Materials
A detailed understanding of thermal transport at the nanoscale is becoming increasingly needed. This need is largely being driven by two distinct technological challenges. First, continuous miniaturization of electronic devices and the ever-increasing density of the components on integrated circuits (ICs) place ever-increasing thermal loads on systems. Indeed, it is now necessary to make therma...
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Manganese dioxides, inorganic materials which have been used in industry for more than a century, now find great renewal of interest for storage and conversion of energy applications. In this review article, we report the properties of MnO₂ nanomaterials with different morphologies. Techniques used for the synthesis, structural, physical properties, and electrochemical performances of periodic ...
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Manipulating matter on the nanoscale is key to engineering devices of unprecedented compactness and function. However, elucidating the properties of matter on nanometer length scales poses enormous challenges for experiments and simulations alike. Nanoscale devices often contain materials without long–range order and therefore have rugged potential energy surfaces with multiple thermodynamicall...
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The detection of photons underpins imaging, spectroscopy, fibre-optic communications and time-gated distance measurements. Nanostructured materials are attractive for detection applications because they can be integrated with conventional silicon electronics and flexible, large-area substrates, and can be processed from the solution phase using established techniques such as spin casting, spray...
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ژورنال
عنوان ژورنال: Frontiers in Energy Research
سال: 2019
ISSN: 2296-598X
DOI: 10.3389/fenrg.2019.00109