论文标题
薄悬浮的2D材料:轻松,多功能和确定性转移组装
Thin-suspended 2D Materials: Facile, Versatile, and Deterministic Transfer Assembly
论文作者
论文摘要
我们报告了一种确定性的2D材料(2DM)传输方法,以组装纳入悬浮的超薄2D材料的任何堆叠顺序异质结构,例如单层石墨烯(SLG)和双层石墨烯(BLG)。转移程序依赖于单步制备硝酸纤维素微弹簧,该硝酸纤维素微型扫描结合了出色的粘附和柔软度。它允许直接从SIO $ _2 $底物的裸晶体(石墨烯,MOS $ _2 $和HBN)进行干燥的拾取,并准确地将其转移到底物或沟渠上。光学和拉曼的数据表明,即使在悬挂的SLG和BLG中,也没有引起转移时的明显缺陷。该区域转移的范围UP $ \ sim $ 1000 $ $ m $ m $^2 $在底物上。悬浮超薄2DM的高收益转移不需要最多15美元的$ M $^2 $的区域或悬架高度降至160 nm。为了证明该方法的功能,我们分别通过19和4的因素组装了底物和悬浮的光腔,调整了BLG的拉曼散射强度。这种弹性和快速的2DM传输程序将加速许多异质结构的制造,并允许2DMS的多功能悬挂用于研究,用于研究,用于研究互动,劳累型和纳米 - OPTO-to-to-to-eelectro Mechanical Mechanical Systems(NOEMS)。
We report a deterministic 2D material (2DM) transfer method to assemble any-stacking-order heterostructures incorporating suspended ultra-thin 2D materials, such as single-layer graphene (SLG) and bilayer graphene (BLG). The transfer procedure relies on a single-step preparation nitrocellulose micro-stamp, which combines both outstanding adhesion and softness. It permits the dry pick-up of naked 2D crystals (graphene, MoS$_2$, and hBN) directly from a SiO$_2$ substrate, and to precisely transfer them on substrates or trenches. Optical and Raman data show that no significant defect is introduced upon transfer, even in suspended SLG and BLG. The areas transferred range up $\sim$ 1000 $μ$m$^2$ on substrate. High-yield transfer of suspended ultra-thin 2DM does not require critical point drying for areas up to 15 $μ$m$^2$ or suspension heights down to 160 nm. To demonstrate the method's capabilities, we assembled on-substrate and suspended optical cavities tuning BLG's Raman scattering intensity by factors of 19 and 4, respectively. This resilient and rapid 2DM transfer procedure will accelerate the fabrication of many heterostructures and permit versatile suspension of 2DMs for research in twistronics, straintronics, and nano-opto-electro-mechanical systems (NOEMS).