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      Highly Responsive Photochromic Ceramics for High‐Contrast Rewritable Information Displays

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          Revised effective ionic radii and systematic studies of interatomic distances in halides and chalcogenides

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            Photochromism into nanosystems: towards lighting up the future nanoworld.

            The ability to manipulate the structure and function of promising nanosystems via energy input and external stimuli is emerging as an attractive paradigm for developing reconfigurable and programmable nanomaterials and multifunctional devices. Light stimulus manifestly represents a preferred external physical and chemical tool for in situ remote command of the functional attributes of nanomaterials and nanosystems due to its unique advantages of high spatial and temporal resolution and digital controllability. Photochromic moieties are known to undergo reversible photochemical transformations between different states with distinct properties, which have been extensively introduced into various functional nanosystems such as nanomachines, nanoparticles, nanoelectronics, supramolecular nanoassemblies, and biological nanosystems. The integration of photochromism into these nanosystems has endowed the resultant nanostructures or advanced materials with intriguing photoresponsive behaviors and more sophisticated functions. In this Review, we provide an account of the recent advancements in reversible photocontrol of the structures and functions of photochromic nanosystems and their applications. The important design concepts of such truly advanced materials are discussed, their fabrication methods are emphasized, and their applications are highlighted. The Review is concluded by briefly outlining the challenges that need to be addressed and the opportunities that can be tapped into. We hope that the review of the flourishing and vibrant topic with myriad possibilities would shine light on exploring the future nanoworld by encouraging and opening the windows to meaningful multidisciplinary cooperation of engineers from different backgrounds and scientists from the fields such as chemistry, physics, engineering, biology, nanotechnology and materials science.
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              Photochromic organic-inorganic hybrid materials.

              Photochromic organic-inorganic hybrid materials have attracted considerable attention owing to their potential application in photoactive devices, such as optical memories, windows, photochromic decorations, optical switches, filters or non-linear optics materials. The growing interest in this field has largely expanded the use of photochromic materials for the purpose of improving existing materials and exploring new photochromic hybrid systems. This tutorial review summarizes the design and preparation of photochromic hybrid materials, and particularly those based on the incorporation of organic molecules in organic-inorganic matrices by the sol-gel method. This is the most commonly used method for the preparation of these materials as it allows vitreous hybrid materials to be obtained at low temperatures, and controls the interaction between the organic molecule and its embedding matrix, and hence allows tailoring of the performance of the resulting devices.
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                Author and article information

                Contributors
                (View ORCID Profile)
                Journal
                Laser & Photonics Reviews
                Laser & Photonics Reviews
                Wiley
                1863-8880
                1863-8899
                April 2021
                February 2021
                April 2021
                : 15
                : 4
                : 2000525
                Affiliations
                [1 ]LumiLab Department of Solid State Sciences Ghent University Krijgslaan 281‐S1 Ghent B‐9000 Belgium
                [2 ]Center for Nano‐ and Biophotonics (NB‐Photonics) Ghent University Ghent B‐9000 Belgium
                Article
                10.1002/lpor.202000525
                7cdd3461-4e61-43e7-b3f5-01c4e0400b6e
                © 2021

                http://onlinelibrary.wiley.com/termsAndConditions#vor

                http://doi.wiley.com/10.1002/tdm_license_1.1

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