Qiu Liwen, Wang Mingqiang, Sun Tian, Lou Qiang, Chen Tong, Yang Guoshen, Qian Wei, Zhang Zixuan, Yang Shihe, Zhang Min, Jin Yufeng, Zhou Hang
School of Electronic and Computer Engineering, Shenzhen Graduate School, Peking University, Shenzhen 518055, China.
Guangdong Key Lab of Nano-Micro Material Research, School of Chemical Biology and Biotechnology, Shenzhen Graduate School, Peking University, Shenzhen 518055, China.
Nanoscale. 2023 Sep 14;15(35):14574-14583. doi: 10.1039/d3nr02801a.
Single-crystalline metal halide perovskite materials hold great promise for developing next-generation low-dose X-ray detection. To bring this new technology into reality, it is important to improve the durability of perovksite detectors by suppressing the well-known corrosion and ion diffusion problems at the perovskite/electrode interface. For imaging application, it is also imperative to develop new assembling approaches to realise non-planar interconnection between thick perovskite crystals and thin-film transistor (TFT) backplanes. Herein, a flexible and mechanically robust carbon nanotube (CNT) film was proposed to replace noble metal electrodes. The proposed CNT film, whose binder contains a carboxyl group, can form solid contact with a phenethylamine-based two-dimensional (2D) perovskite amide coupling, thus toughening the perovskite-electrode interface. The resulting CNT/2D-3D perovskite detector shows an applaudable low dark current, high sensitivity, a low dose detection limit and excellent stability, retaining 98% of its initial sensitivity after storage for three months. Moreover, the flexible CNT films are also beneficial for making non-planar interconnection between thick perovskite crystals and TFT backplanes. The proposed flexible CNT thin film electrode thus provides a facile route towards realising a low-dose, high-resolution and highly stable perovskite X-ray detector.
单晶金属卤化物钙钛矿材料在开发下一代低剂量X射线检测方面具有巨大潜力。为了将这项新技术变为现实,通过抑制钙钛矿/电极界面处众所周知的腐蚀和离子扩散问题来提高钙钛矿探测器的耐久性至关重要。对于成像应用,开发新的组装方法以实现厚钙钛矿晶体与薄膜晶体管(TFT)背板之间的非平面互连也势在必行。在此,提出了一种柔性且机械坚固的碳纳米管(CNT)薄膜来替代贵金属电极。所提出的CNT薄膜,其粘合剂含有羧基,可以与苯乙胺基二维(2D)钙钛矿酰胺偶联形成固体接触,从而强化钙钛矿 - 电极界面。所得的CNT/2D - 3D钙钛矿探测器显示出令人称赞的低暗电流、高灵敏度、低剂量检测限和出色的稳定性,在储存三个月后仍保留其初始灵敏度的98%。此外,柔性CNT薄膜对于在厚钙钛矿晶体和TFT背板之间进行非平面互连也很有益。所提出的柔性CNT薄膜电极因此为实现低剂量、高分辨率和高度稳定的钙钛矿X射线探测器提供了一条简便途径。