环氧树脂
共价键
电介质
位阻效应
材料科学
高分子化学
树枝状大分子
偶极子
热固性聚合物
介电损耗
支化(高分子化学)
纳米技术
拓扑(电路)
化学工程
多孔性
有机化学
邻苯二甲酸酐
放松(心理学)
聚合物
电容器
复合材料
工作(物理)
渗流阈值
琥珀酸酐
网络共价键合
级联
产量(工程)
化学物理
纳米颗粒
光电子学
作者
Xiaoyan Qiu,Zhangqin Yang,Bo Zhou,Yuyan Wang,Tao Chen,Xinxing Zhang
出处
期刊:Angewandte Chemie
[Wiley]
日期:2025-10-18
卷期号:64 (51): e202518647-e202518647
被引量:2
标识
DOI:10.1002/anie.202518647
摘要
Epoxy thermosets are indispensable in high-frequency (5G/6G) electronics, but their permanent crosslinks hinder recyclability and worsen e-waste. Although covalent adaptable networks (CANs) offer recyclability, their polar dynamic bonds exacerbate dielectric losses at gigahertz (GHz) bands due to dipolar relaxation. Here, we develop generation-tunable dendritic dynamic crosslinkers that yield recyclable epoxy-based printed circuit board (PCB) with ultralow dielectric performance. O-acylation reaction of a vanillin-derived tetrahedral aldoxime with phthalic anhydride affords precise control over generations, branching degree, and nanomorphology of the crosslinkers. This controlled synthesis yields porous coral-like architecture, which in turn produces graded-branched epoxy CANs with enhanced free volume and steric confinement. Within the rigid constrained topology, the network containing spherically distributed oxime-ester motifs exhibits restricted dipolar relaxation and achieves low dielectric loss in GHz bands, while remaining acid-cleavable for closed-loop recycling at 80 °C. The resulting PCB exhibits a record-low dielectric constant/loss (2.02/0.005@10 GHz), 71.53% improved X-band impedance matching, a tensile strength of 256 MPa, and V-0 flame retardancy, alongside a 98.9% reduction in ecotoxicity after recycling. This work demonstrates how precision dendrimer synthesis and topology regulation can reconcile the tradeoff between circularity and high-frequency performance in sustainable electronics.
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