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Journal ArticleDOI

V2O5 xerogel-poly(ethylene oxide) hybrid material : Synthesis, characterization, and electrochemical properties

TLDR
In this article, the synthesis, characterization, and electrochemical properties of vanadium pentoxide xerogel-poly(ethylene oxide) hybrid materials obtained by varying the average molecular weight of the organic component as well as the components' ratios were reported.
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This article is published in Journal of Solid State Chemistry.The article was published on 2006-12-01. It has received 40 citations till now. The article focuses on the topics: Pentoxide & Vanadium.

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Revitalized interest in vanadium pentoxide as cathode material for lithium-ion batteries and beyond

TL;DR: In this paper, a review focused on selected topics covering the influences of surface chemistry, crystallinity, doping, defects, and nanostructures on the lithium-ion intercalation properties and recent developments on other metal batteries including NIBs and MIBs is presented.
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Self assembled V2O5 nanorods for gas sensors

TL;DR: In this paper, hollow spheres of vanadium pentoxide made up of self assembled nanorods have been prepared successfully by solvothermal method by using XRD analysis, the diameter of the hollow spheres were around 2-3μm, while the nanorod forming the micro spheres were with diameters in the range of 100-200nm and are of few hundreds of nanometers in length.
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Vanadium-Based Cathode Materials for Rechargeable Multivalent Batteries: Challenges and Opportunities

TL;DR: In this article, the authors summarize the researches about vanadium-based cathode materials for multivalent batteries and highlight the intercalation mechanism of multivalent ions to vanadium based materials.
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Extended gate field effect transistor using V2O5 xerogel sensing membrane by sol–gel method

TL;DR: In this paper, the pH sensing properties of an extended gate field effect transistor (EGFET) based on the vanadium pentoxide xerogel thin film is investigated.
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Glycothermal synthesis of assembled vanadium oxide nanostructures for gas sensing

TL;DR: In this paper, a facile but effective glycothermal method to synthesize vanadium oxide nanostructures for gas sensing detection was demonstrated, in which sodium orthovanadate was first dispersed and heated in ethylene glycol at 120-180°C for a few hours, and then the precipitates were collected, rinsed, and sintered at high temperatures (e.g., 600°C).
References
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Journal ArticleDOI

Applications of hybrid organic–inorganic nanocomposites

TL;DR: In this article, the authors propose a vectorial chemistry approach for the generation of new generations of hybrid materials, which will open a land of promising applications in many areas: optics, electronics, ionics, mechanics, energy, environment, biology, medicine for example as membranes and separation devices, functional smart coatings, fuel and solar cells, catalysts, sensors, etc.
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Hybrid organic–inorganic materials: a land of multidisciplinarity

TL;DR: In this article, a review of some chemistry pathways to hybrid materials is presented, where the nature of the bonds between organic and inorganic phases is used to divide them in two major families: class I corresponds to materials with weak interphase bonding, while class II correspond to materials where both phases are chemically grafted.
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Hybrid Organic–Inorganic Materials—In Search of Synergic Activity

TL;DR: A review of functional hybrid materials can be found in this paper, where a variety of inorganic species, from molecular to extended phases, including clusters and nano-sized inorganic particles, have been used in a wide variety of applications.
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Vanadium pentoxide gels

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