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Black phosphorus ink formulation for inkjet printing of optoelectronics and photonics

机译:黑磷油墨配方用于光电和光子学的喷墨印刷

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摘要

Black phosphorus is a two-dimensional material of great interest, in part because of its high carrier mobility and thickness dependent direct bandgap. However, its instability under ambient conditions limits material deposition options for device fabrication. Here we show a black phosphorus ink that can be reliably inkjet printed, enabling scalable development of optoelectronic and photonic devices. Our binder-free ink suppresses coffee ring formation through induced recirculating Marangoni flow, and supports excellent consistency (< 2% variation) and spatial uniformity (< 3.4% variation), without substrate pre-treatment. Due to rapid ink drying (< 10 s at < 60 °C), printing causes minimal oxidation. Following encapsulation, the printed black phosphorus is stable against long-term (> 30 days) oxidation. We demonstrate printed black phosphorus as a passive switch for ultrafast lasers, stable against intense irradiation, and as a visible to near-infrared photodetector with high responsivities. Our work highlights the promise of this material as a functional ink platform for printed devices.
机译:黑磷是一种备受关注的二维材料,部分原因在于其高的载流子迁移率和与厚度有关的直接带隙。然而,其在环境条件下的不稳定性限制了用于器件制造的材料沉积选择。在这里,我们展示了一种可以可靠地喷墨打印的黑磷墨水,可实现光电和光子设备的可扩展开发。我们的无粘合剂油墨可通过诱导的循环Marangoni流动来抑制咖啡环的形成,并具有出色的一致性(变化小于2%)和空间均匀性(变化小于3.4%),而无需进行基板预处理。由于墨水快速干燥(在<60°C下<10 s),打印产生的氧化最少。封装后,印刷的黑磷对长期(> 30天)氧化稳定。我们展示了印制的黑磷作为超快激光器的无源开关,对强辐射稳定,对高响应率可见光到近红外光探测器。我们的工作突出了这种材料作为印刷设备的功能性墨水平台的前景。

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