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      Transparent Glass-Ceramics Produced by Sol-Gel: A Suitable Alternative for Photonic Materials

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          Abstract

          Transparent glass-ceramics have shown interesting optical properties for several photonic applications. In particular, compositions based on oxide glass matrices with fluoride crystals embedded inside, known as oxyfluoride glass-ceramics, have gained increasing interest in the last few decades. Melt-quenching is still the most used method to prepare these materials but sol-gel has been indicated as a suitable alternative. Many papers have been published since the end of the 1990s, when these materials were prepared by sol-gel for the first time, thus a review of the achievements obtained so far is necessary. In the first part of this paper, a review of transparent sol-gel glass-ceramics is made focusing mainly on oxyfluoride compositions. Many interesting optical results have been obtained but very little innovation of synthesis and processing is found with respect to pioneering papers published 20 years ago. In the second part we describe the improvements in synthesis and processing obtained by the authors during the last five years. The main achievements are the preparation of oxyfluoride glass-ceramics with a much higher fluoride crystal fraction, at least double that reported up to now, and the first synthesis of NaGdF 4 glass-ceramics. Moreover, a new SiO 2 precursor was introduced in the synthesis, allowing for a reduction in the treatment temperature and favoring hydroxyl group removal. Interesting optical properties demonstrated the incorporation of dopant ions in the fluoride crystals, thus obtaining crystal-like spectra along with higher efficiencies with respect to xerogels, and hence demonstrating that these materials are a suitable alternative for photonic applications.

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          Enhancing solar cell efficiency: the search for luminescent materials as spectral converters.

          Photovoltaic (PV) technologies for solar energy conversion represent promising routes to green and renewable energy generation. Despite relevant PV technologies being available for more than half a century, the production of solar energy remains costly, largely owing to low power conversion efficiencies of solar cells. The main difficulty in improving the efficiency of PV energy conversion lies in the spectral mismatch between the energy distribution of photons in the incident solar spectrum and the bandgap of a semiconductor material. In recent years, luminescent materials, which are capable of converting a broad spectrum of light into photons of a particular wavelength, have been synthesized and used to minimize the losses in the solar-cell-based energy conversion process. In this review, we will survey recent progress in the development of spectral converters, with a particular emphasis on lanthanide-based upconversion, quantum-cutting and down-shifting materials, for PV applications. In addition, we will also present technical challenges that arise in developing cost-effective high-performance solar cells based on these luminescent materials.
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            Sol–gel based materials for biomedical applications

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              Hexagonal Sodium Yttrium Fluoride Based Green and Blue Emitting Upconversion Phosphors

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                Author and article information

                Journal
                Materials (Basel)
                Materials (Basel)
                materials
                Materials
                MDPI
                1996-1944
                30 January 2018
                February 2018
                : 11
                : 2
                : 212
                Affiliations
                [1 ]Instituto de Cerámica y Vidrio (CSIC), 28049 Madrid, Spain; ggorni@ 123456icv.csic.es (G.G.); josvel@ 123456icv.csic.es (J.J.V.); jmosa@ 123456icv.csic.es (J.M.)
                [2 ]Departamento de Física Aplicada I, Escuela Superior de Ingeniería, Universidad del País Vasco UPV/EHU, 48940 Bilbao, Spain; rolindes.balda@ 123456ehu.eus (R.B.); joaquin.fernandez@ 123456ehu.es (J.F.)
                [3 ]Centro de Física de Materiales UPV/EHU-CSIC, 20018 San Sebastian, Spain
                Author notes
                Author information
                https://orcid.org/0000-0001-7672-0539
                Article
                materials-11-00212
                10.3390/ma11020212
                5848909
                29385706
                0e6b7616-7889-45c6-985c-0cc4255cda81
                © 2018 by the authors.

                Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license ( http://creativecommons.org/licenses/by/4.0/).

                History
                : 11 January 2018
                : 27 January 2018
                Categories
                Article

                sol-gel,oxyfluoride glass-ceramics,nanocrystal,optical properties

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