材料科学
玻璃
认证
量子点
光无线
光电子学
无线
发光
电信
计算机科学
复合材料
政治学
法学
作者
Francesco Meinardi,Francesco Bruni,Claudio Castellan,Marco Meucci,Muhammad Ali Umair,Marcello La Rosa,Jacopo Catani,Sergio Brovelli
标识
DOI:10.1002/aenm.202304006
摘要
Abstract Energy sustainability and interconnectivity are the two main pillars on which cutting‐edge architecture is based and require the realization of energy and intelligent devices that can be fully integrated into buildings, capable of meeting stringent regulatory requirements and operating in real‐world conditions. Luminescent solar concentrators, particularly those based on near‐infrared emitting reabsorption‐free quantum dots, are considered good candidates for the realization of semi‐transparent photovoltaic glazing, but despite important advances in optical property engineering strategies, studies of finished devices suitable for real‐world operation are still lacking. In this paper, the first example of a fully assembled quantum dot luminescent solar concentrator‐based photovoltaic glazing is demonstrated that meets all international standards for photovoltaic and building elements. It is also shown that these devices are capable of functioning as efficient Visible Light Communication (VLC) receivers even under full sunlight, thus combining energy and wireless connectivity functions in a realistic solution for smart, sustainable buildings.
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