论文标题
用化学剥落的1T-TAS $ _2 $填充物印刷的电荷密度波浪设备
Charge-Density-Wave Devices Printed with the Ink of Chemically Exfoliated 1T-TaS$_2$ Fillers
论文作者
论文摘要
我们报告了包含来自准二维电荷密度材料的填充物的墨水的制备,它们的喷墨印刷应用程序以及以印刷薄膜形式评估其电子性能的评估。通过CVT生长的1T-TAS $ _2 $晶体的液相去角质制备墨水,以产生NM尺度厚度和UM尺度侧面尺寸的填充剂。将1T-TAS $ _2 $剥落成异丙醇和乙烯乙二醇的混合物,以对其用于喷墨印刷的热态特性进行微调。印刷薄膜的温度依赖性电和电流波动测量表明,处理后,保留了1T-TAS $ _2 $的电荷密度波性能。可以通过几乎同意的单个去角质1T-TAS $ _2 $填充剂而不是通过它们之间的电子跳运运输来定义印刷薄膜设备的功能,以通过几乎一致的电荷密度波相变。这些结果为开发具有多种功能的印刷电子设备提供了途径,该途径通过掺入准二维范德华量量子材料来实现。
We report on the preparation of inks containing fillers derived from quasi-two-dimensional charge-density-wave materials, their application for inkjet printing, and the evaluation of their electronic properties in printed thin film form. The inks were prepared by liquid-phase exfoliation of CVT-grown 1T-TaS$_2$ crystals to produce fillers with nm-scale thickness and um-scale lateral dimensions. Exfoliated 1T-TaS$_2$ was dispersed in a mixture of isopropyl alcohol and ethylene glycol to allow fine-tuning of their thermo-physical properties for inkjet printing. The temperature-dependent electrical and current fluctuation measurements of printed thin films demonstrated that the charge-density-wave properties of 1T-TaS$_2$ are preserved after processing. The functionality of the printed thin-film devices can be defined by the nearly-commensurate to commensurate charge-density-wave phase transition of individual exfoliated 1T-TaS$_2$ fillers rather than by electron-hopping transport between them. These results provide pathways for the development of printed electronics with diverse functionality achieved by the incorporation of quasi-two-dimensional van der Waals quantum materials.