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Dissertation
Electrical characterization of III-nitride heterostructures by thermal admittance spectroscopy
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Year: 2004 Publisher: [S.l.] : [chez l'auteur],

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Book
Chapter Metallic nanowire percolating networks : from main properties to applications
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Year: 2019 Publisher: [Place of publication not identified] : IntechOpen,

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There has been lately a growing interest into flexible, efficient and low-cost transparent electrodes which can be integrated for many applications. This includes several applications related to energy technologies (photovoltaics, lighting, supercapacitor, electrochromism, etc.) or displays (touch screens, transparent heaters, etc.) as well as Internet of Things (IoT) linked with renewable energy and autonomous devices. This associated industrial demand for low-cost and flexible industrial devices is rapidly increasing, creating a need for a new generation of transparent electrodes (TEs). Indium tin oxide has so far dominated the field of TE, but indium's scarcity and brittleness have prompted a search into alternatives. Metallic nanowire (MNW) networks appear to be one of the most promising emerging TEs. Randomly deposited MNW networks, for instance, can present sheet resistance values below 10 Ω/sq., optical transparency of 90% and high mechanical stability under bending tests. AgNW or CuNW networks are destined to address a large variety of emerging applications. The main properties of MNW networks, their stability and their integration in energy devices are discussed in this contribution.


Book
Chapter Metallic nanowire percolating networks : from main properties to applications
Author:
Year: 2019 Publisher: [Place of publication not identified] : IntechOpen,

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Abstract

There has been lately a growing interest into flexible, efficient and low-cost transparent electrodes which can be integrated for many applications. This includes several applications related to energy technologies (photovoltaics, lighting, supercapacitor, electrochromism, etc.) or displays (touch screens, transparent heaters, etc.) as well as Internet of Things (IoT) linked with renewable energy and autonomous devices. This associated industrial demand for low-cost and flexible industrial devices is rapidly increasing, creating a need for a new generation of transparent electrodes (TEs). Indium tin oxide has so far dominated the field of TE, but indium's scarcity and brittleness have prompted a search into alternatives. Metallic nanowire (MNW) networks appear to be one of the most promising emerging TEs. Randomly deposited MNW networks, for instance, can present sheet resistance values below 10 Ω/sq., optical transparency of 90% and high mechanical stability under bending tests. AgNW or CuNW networks are destined to address a large variety of emerging applications. The main properties of MNW networks, their stability and their integration in energy devices are discussed in this contribution.


Dissertation
Electrical and optical characterization of AZO/Cu₂O : Mg transparent semiconducting heterojunctions grown by RD magnetron sputtering
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Year: 2018

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Dissertation
Impact of electron trap states on the transport properties of GeSn semiconducting heterostructures assessed by electrical characterizations
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Year: 2016

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Dissertation
Synthèse d'alliages de germanium-manganèse en films minces par déposition physique en phase vapeur et traitement thermique
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Year: 2019

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Dissertation
Caractérisation électrique de dispositifs opto-électroniques et semi-conducteurs organiques
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Year: 2013 Publisher: [S.l.] : [chez l'auteur],

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Dissertation
Contributions théorique et numérique à l'étude de l'effet photoréfractif dans les semi-conducteurs II-VI
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Year: 1998 Publisher: [S.l.]: [chez l'auteur],

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Dissertation
Electrostatique d'une nanostructure toroïdale
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Year: 2013 Publisher: [S.l.] : [chez l'auteur],

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Dissertation
Caractérisation du graphène sur hBN par microscopies à sonde locale
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Year: 2015

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