Suppr超能文献

研究基于BCZT的温度传感器的热光特性。

Investigating the Thermo-Optic Properties of BCZT-Based Temperature Sensors.

作者信息

Kamnoy Manlika, Pengpat Kamonpan, Tunkasiri Tawee, Khamman Orawan, Intatha Uraiwan, Eitssayeam Sukum

机构信息

Department of Physics and Materials Science, Chiang Mai University, Chiang Mai 50200, Thailand.

School of Science, Mae Fah Luang University, Chiang Rai 57000, Thailand.

出版信息

Materials (Basel). 2023 Jul 24;16(14):5202. doi: 10.3390/ma16145202.

Abstract

Photoluminescent (PL) layers and electroluminescent (EL) systems have gained significant attention for their applications in constructing flat panels, screen monitors, and lighting systems. In this study, we present a groundbreaking approach to fabricating temperature sensors using barium-calcium zirconium titanate (BCZT) with thermo-optic properties, leading to the development of opto-thermal sensors for electric vehicle battery packs. We prepared zinc sulfide (ZnS) fluorescent films on BCZT ceramics, specifically two optimal compositions, BCZT0.85 (BaCaZrTiO) and BCZT0.9 (BaCaZrTiO), via the solid-state reaction method for the dielectric layer. The BCZT powders were calcined at varying temperatures (1200 and 1250 °C) and dwell times (2 and 4 h). The resulting phase formation and microstructure characteristics were analyzed using X-ray diffraction and scanning electron microscopy, respectively. Our investigation aimed to establish a correlation between the dielectric behavior and optical properties to determine the optimal composition and conditions for utilizing BCZT as thermal detectors in electric vehicle battery packs. All BCZT powders exhibited a tetragonal phase, as confirmed by JCPDS No. 01-079-2265. We observed an increase in the dielectric constant with higher calcining temperatures or longer dwell times. Remarkably, BCZT0.85 ceramic sintered at 1250 °C for 4 h displayed the highest dielectric constant of 15,342, establishing this condition as optimal for preparing the dielectric film with a maximum dielectric constant of 42. Furthermore, we investigated the temperature-dependent electroluminescence intensity of the samples, revealing a significant enhancement with increasing temperature, reaching its peak at 80 °C. Additionally, we observed a positive correlation between electroluminescence intensity and dielectric constant, indicating the potential for improved opto-thermal sensors. The findings from this study offer promising opportunities for the development of advanced opto-thermal sensors with potential applications in electric vehicle battery packs. Our work contributes to the expanding field of photoluminescent and electroluminescent systems by providing novel insights into the design and optimization of efficient and reliable sensors for thermal monitoring in electric vehicle technologies.

摘要

光致发光(PL)层和电致发光(EL)系统因其在构建平板、屏幕显示器和照明系统中的应用而受到广泛关注。在本研究中,我们提出了一种开创性的方法,利用具有热光特性的钛酸钡钙锆(BCZT)制造温度传感器,从而开发用于电动汽车电池组的光热传感器。我们通过固态反应法在BCZT陶瓷上制备了硫化锌(ZnS)荧光薄膜,具体为两种最佳成分,即BCZT0.85(BaCaZrTiO)和BCZT0.9(BaCaZrTiO),用于介电层。BCZT粉末在不同温度(1200和1250°C)和保温时间(2和4小时)下煅烧。分别使用X射线衍射和扫描电子显微镜分析所得的相形成和微观结构特征。我们的研究旨在建立介电行为与光学性质之间的相关性,以确定在电动汽车电池组中使用BCZT作为热探测器的最佳成分和条件。如JCPDS编号01 - 079 - 2265所证实,所有BCZT粉末均呈现四方相。我们观察到随着煅烧温度升高或保温时间延长,介电常数增加。值得注意的是,在1250°C下煅烧4小时的BCZT0.85陶瓷显示出最高介电常数15342,确定此条件为制备最大介电常数为42的介电薄膜的最佳条件。此外,我们研究了样品的电致发光强度与温度的关系,发现随着温度升高电致发光强度显著增强,在80°C达到峰值。此外,我们观察到电致发光强度与介电常数之间存在正相关,表明改进光热传感器具有潜力。本研究的结果为开发先进的光热传感器提供了有前景的机会,这些传感器在电动汽车电池组中具有潜在应用。我们的工作通过为电动汽车技术中热监测的高效可靠传感器的设计和优化提供新见解,为光致发光和电致发光系统不断扩展的领域做出了贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/644c/10385624/a62243cdeebf/materials-16-05202-g001.jpg

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验