高熵 Perovskite 氧化物集成了阳光驱动的光致变色和上转换操纵功能,可用于功率无关型入侵检测监控系统

IF 9.8 1区 物理与天体物理 Q1 OPTICS
Xiangyu Wang, Tingbo Zhang, Jiawen Fan, Tong Wei, Cai Ning, Yingdong Han, Liwei Wu, Jiao Cui
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引用次数: 0

摘要

贵重物品的安全监控是确保人类社会商业活动、科学研究、生产和日常生活稳定发展的关键问题。传统的安全防范措施仅仅是将物品放入保险柜。然而,如何确定贵重物品在存放过程中是否受到损害,仍然是一项艰巨的任务。光致变色材料是一种重要的智能物质,可作为安全监控的潜在候选材料。然而,以往的研究主要集中在利用特定光源(如紫外线、激光和 X 射线辐射)实现显著的光致变色。鉴于这些现有挑战,我们提出了一种利用高熵的设计策略来提高光致变色性能。通过选择多种挥发性金属元素,在 ABO3 包晶结构中实现了 A 位高熵,从而能够构建各种缺陷。这使得该材料成功实现了对阳光的敏感响应,从而验证了通过高熵策略提高光致变色性能的可行性。所开发的用于入侵指示的光致变色材料展示了自主运行的能力,使其成为高级安全监控系统的重要组成部分,并为加强传统领域的安全保护提供了一种新方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High‐Entropy Perovskite Oxides Integrating Sunlight‐Driven Photochromic and Upconversion Manipulation for Power‐Independent Intrusion Detection Monitoring
The security monitoring of valuables is a crucial concern to ensure the stable development of human social business activities, scientific research, production, and daily life. The implementation of security precautions has traditionally involved the mere placement of items in safes. However, the formidable task of ascertaining whether valuables have been compromised during storage remains a significant challenge. Photochromic materials are important intelligent substances that can be employed as a potential candidates for security monitoring. However, previous studies have predominantly focused on achieving prominent photochromism by utilizing specific light sources such as ultraviolet, laser, and X‐ray radiation. In light of these existing challenges, a design strategy engaging high entropy is proposed to improve the photochromic performance. By selecting a diverse range of volatile metal elements, the A‐site high entropy is realized within the ABO3 perovskite structure, enabling the construction of various defects. This results in the successful realization of the material's sensitive response to sunlight, thereby validating the feasibility of the photochromism boosted by a high entropy strategy. The developed photochromic materials for intrusion indication demonstrate the capability to operate autonomously, making it a crucial component in high‐level security monitoring systems and presenting a novel approach toward enhancing security protection in traditional domains.
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来源期刊
CiteScore
14.20
自引率
5.50%
发文量
314
审稿时长
2 months
期刊介绍: Laser & Photonics Reviews is a reputable journal that publishes high-quality Reviews, original Research Articles, and Perspectives in the field of photonics and optics. It covers both theoretical and experimental aspects, including recent groundbreaking research, specific advancements, and innovative applications. As evidence of its impact and recognition, Laser & Photonics Reviews boasts a remarkable 2022 Impact Factor of 11.0, according to the Journal Citation Reports from Clarivate Analytics (2023). Moreover, it holds impressive rankings in the InCites Journal Citation Reports: in 2021, it was ranked 6th out of 101 in the field of Optics, 15th out of 161 in Applied Physics, and 12th out of 69 in Condensed Matter Physics. The journal uses the ISSN numbers 1863-8880 for print and 1863-8899 for online publications.
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