A multicolored polymer for dynamic military camouflage electrochromic devices

电致变色 伪装 电致变色装置 材料科学 聚合物 纳米技术 光电子学 光学 化学 计算机科学 物理 复合材料 电极 物理化学 人工智能
作者
Kaiwen Lin,Changjun Wu,Yunxu Zhou,Jingze Li,Xiaoli Chen,Yuehui Wang,Baoyang Lu
出处
期刊:Solar Energy Materials and Solar Cells [Elsevier BV]
卷期号:278: 113180-113180 被引量:33
标识
DOI:10.1016/j.solmat.2024.113180
摘要

Modern military operations usually require adaptable camouflage across multiple terrains, which prompted us to design and synthesize an electrochromic polymer named P (8,8'-(2,2′-dimethyl-9,9′-spirobi [fluorene]-7,7′-diyl)bis (3,3-bis(((2-ethylhexyl)oxy)methyl)-6-methyl-3,4-dihydro-2H-thieno[3,4-b][1,4]dihydropine)) (PSBF-ProDOT) via direct (hetero)aromatic polymerization (DHAP). PSBF-ProDOT exhibits a yellow-green-blue-violet multicolor change at specific voltages, and its colors blend well with desert, grassland, wilderness, lake, and ocean environments, which hold promising application prospects in the field of military camouflage. Additionally, PSBF-ProDOT features fast response times (1.8 s for oxidation and 3.1 s for reduction), moderate coloration efficiency (80.7 cm 2 C −1 at 424 nm), and low initial redox potential (1.08 V/−1.03 V), meeting the requirements for camouflage devices. Here, we present a deformable and simple dynamic military camouflage electrochromic device (DMCECD) based on PSBF-ProDOT. This device achieves camouflage by changing its color to adapt to the surrounding environment, which is controlled via a Bluetooth app on a smartphone. By fine-tuning the voltage with an accuracy of 0.1 V, we can control the color changes of the dynamic military camouflage device to harmonize with specific environmental hues, ensuring optimal concealment. The integration of the Bluetooth module, printed circuit board, and electrochromic component underscores the innovative potential of electrochromic technology in the field of dynamic military camouflage, illustrating the prospective applications for future dynamic camouflage. We believe that our work will further advance the exploration of dynamic military camouflage and broader multifaceted wearable display technologies. We designed and synthesized PSBF-ProDOT via direct (hetero)aromatic polymerization, which exhibits a yellow-green-blue-violet multicolor change at different specific voltages, and its colors blend well with desert, grassland, wilderness, lake, and ocean environments. Meanwhile, we present a low-power, deformable dynamic military camouflage electrochromic device (DMCECD) that alters its color to match the surrounding environment through bluetooth APP of smartphone, achieving a camouflage effect. • An electrochromic polymer was synthesized via direct (hetero)aromatic polymerization. • The polymer exhibits yellow-green-blue-violet multicolor properties. • Dynamic camouflage electrochromic device can be controlled via a smart device.
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