Schmid Alexander, Baiutti Federico, Tarancon Albert, Fleig Jürgen
Institute of Chemical Technologies and Analytics, TU Wien, Getreidemarkt 9, Vienna 1060, Austria.
Catalonia Institute for Energy Research (IREC), Jardins de les Dones de Negre 1, 2a pl, 08930 Sant Adrià del Besòs, Barcelona, Spain.
ACS Appl Energy Mater. 2023 Dec 22;7(1):205-213. doi: 10.1021/acsaem.3c02494. eCollection 2024 Jan 8.
Hybrid devices for combined energy harvesting and storage, i.e., harvestorers, are attractive solutions for powering small autonomous devices (e.g., "smart appliances", Internet of things nodes), which are ever more prominent as the digitalization and technologization of our society progresses. A concept for a high temperature (HT) harvestorer is presented, and the operational characteristics of a prototype device are discussed. It is based on photovoltaic (PV) energy harvesting and HT electrochemical energy storage. The HT-PV cells employ SrTiO/LaSrCrO heterojunctions for energy harvesting and produce photovoltages up to 1 V and photocurrents of several mA cm upon UV illumination at 350 °C. Electrochemical energy storage is realized by oxygen ion battery (OIB), a device based on mixed ionic and electronic conducting oxide thin film electrodes and an yttria stabilized zirconia electrolyte. The OIB exhibits capacities of up to 11 mC cm (3 μA h cm) at 0.6 V (350 °C). A prototype harvestorer device was fabricated by integrating an HT-PV and an OIB cell into one device. This harvestorer was operated over several cycles consisting of harvesting and storing energy under illumination, followed by retrieval of the stored energy without illumination. Up to 3.5 mJ cm (1 μW h cm) was stored with energy efficiencies up to 67%. Approaches for further optimization are discussed.
用于联合能量收集和存储的混合设备,即收集器,是为小型自主设备(如“智能家电”、物联网节点)供电的有吸引力的解决方案,随着我们社会的数字化和技术化不断发展,这些设备变得越来越突出。本文提出了一种高温(HT)收集器的概念,并讨论了原型设备的运行特性。它基于光伏(PV)能量收集和HT电化学能量存储。HT-PV电池采用SrTiO/LaSrCrO异质结进行能量收集,在350°C的紫外光照射下可产生高达1 V的光电压和几mA cm的光电流。电化学能量存储通过氧离子电池(OIB)实现,该电池基于混合离子和电子传导氧化物薄膜电极以及氧化钇稳定的氧化锆电解质。OIB在0.6 V(350°C)时的容量高达11 mC cm(3 μA h cm)。通过将HT-PV电池和OIB电池集成到一个设备中制造了一个原型收集器设备。该收集器在几个循环中运行,包括在光照下收集和存储能量,然后在无光照的情况下取回存储的能量。存储的能量高达3.5 mJ cm(1 μW h cm),能量效率高达67%。还讨论了进一步优化的方法。