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Titlebook: Nanomaterials for Sustainable Energy; Quan Li Book 2016 Springer International Publishing Switzerland 2016 Artificial photosynthesis.Carbo

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Nanomaterials for Stretchable Energy Storage and Conversion Devices,antime, stretchable ESCDs are attracting intensive attention due to their great potential for specific applications, such as wearable electronics, an electronic skin, implant electronics, and other collapsible gadgets. Design and synthesis of nanomaterials are at the core in the development of highl
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Discotic Liquid Crystals for Self-organizing Photovoltaics,ainable energy harvesting. Among the organic optoelectronic materials, disc-shaped polycyclic aromatic compounds capable of exhibiting columnar liquid crystal (LC) properties are unique. Liquid crystalline materials simultaneously display the anisotropic properties of crystalline solids and flow pro
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Vertically-Aligned Carbon Nanotubes for Electrochemical Energy Conversion and Storage,l/chemical/electrochemical stability. These unique properties make VA-CNTs promising electrode materials for energy conversion and storage devices, including fuel cells, lithium batteries, and supercapacitors. This chapter provides an overview on recent development of VA-CNT electrodes with and with
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Incorporating Graphene into Fuel Cell Design,ed. To date, some have had some success, while others are significantly lacking in critical research due to unforeseen problems with the electrochemical properties of graphene. Of the many applications, fuel cells were predicted to gain benefit from graphene; the focus of this book chapter is to ass
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Thermoelectric Nanocomposites for Thermal Energy Conversion,E bulks, such as higher figure-of-merit (.) and power output, playing a key role for industrial applications of TE devices, and thereby offering a great promise for improving energy efficiency over the traditional renewable energy systems. This chapter reviews manufacturing, TE properties and device
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