Alfaro Eder, Lloret Tomás, Vilardy Juan M, Bastidas Marlón, Morales-Vidal Marta, Pascual Inmaculada
Grupo de Investigación en Física del Estado Sólido (GIFES), Faculties of Basic and Applied Sciences, and Engineering, Universidad de La Guajira, Riohacha 440007, La Guajira, Colombia.
Departamento de Óptica, Farmacología y Anatomía, Universidad de Alicante, Carretera San Vicente del Raspeig s/n, 03690 San Vicente del Raspeig, Spain.
Polymers (Basel). 2024 Mar 7;16(6):732. doi: 10.3390/polym16060732.
Holographic lenses (HLs) are part of holographic optical elements (HOE), and are being applied to concentrate solar energy on a focal point or focal line. In this way, the concentrated energy can be converted into electrical or thermal energy by means of a photovoltaic cell or a thermal absorber tube. HLs are able to passively track the apparent motion of the sun with a high acceptance angle, allowing tracking motors to be replaced, thus reducing the cost of support structures. This article focuses on a review of the materials used in the recording of a holographic lens (HL) or multiple HLs in photovoltaic and/or concentrating solar collectors. This review shows that the use of photopolymers for the recording of HLs enables high-performance efficiency in physical systems designed for energy transformation, and presents some important elements to be taken into account for future designs, especially those related to the characteristics of the HL recording materials. Finally, the article outlines future recommendations, emphasizing potential research opportunities and challenges for researchers entering the field of HL-based concentrating solar photovoltaic and/or concentrating solar thermal collectors.
全息透镜(HLs)是全息光学元件(HOE)的一部分,正被应用于将太阳能聚焦到一个焦点或焦线上。通过这种方式,聚集的能量可以借助光伏电池或热吸收管转化为电能或热能。全息透镜能够以高接收角被动跟踪太阳的视运动,从而无需使用跟踪电机,进而降低支撑结构的成本。本文重点回顾了用于在光伏和/或聚光太阳能收集器中记录全息透镜(HL)或多个全息透镜的材料。这篇综述表明,使用光聚合物记录全息透镜能够在为能量转换设计的物理系统中实现高性能效率,并提出了一些未来设计需要考虑的重要因素,特别是与全息透镜记录材料特性相关的因素。最后,本文概述了未来的建议,强调了进入基于全息透镜的聚光太阳能光伏和/或聚光太阳能热收集器领域的研究人员面临的潜在研究机会和挑战。