Batra Nitin M, Mahalingam Dinesh K, Doggali Pradeep, Nunes Suzana P, Costa Pedro M F J
Physical Science and Engineering (PSE) Division, King Abdullah University of Science and Technology (KAUST), Thuwal 23955-6900, Saudi Arabia.
Institut Des Materiaux Jean Rouxel, CNRS-University of Nantes, Nantes 44300, France.
Nanotechnology. 2022 Mar 30;33(25). doi: 10.1088/1361-6528/ac547c.
In recent years, graphene has been explored as a heating membrane for studying high-temperature dynamics inside the transmission electron microscope (TEM) due to several limitations with the existing silicon nitride-based membrane. However, the transfer of monolayer graphene films for TEM experiments is challenging and requires many complicated steps with a minimum success rate. This work developed a novelheating platform by combining the graphene oxide (GO) flakes in the pre-patterned chips. The isolated GO flake was self-suspended between the metal electrodes by a simple drop-casting process. The GO was reduced and characterized using Raman and electron energy-loss spectroscopy. Furthermore, a GO-based heater was used to investigate the thermal stability of gold and silica nanoparticles. The gold nanoparticles evaporated non-uniformly and left an empty carbon shell, while silica disappeared uniformly by etching carbon support. We successfully demonstrated a GO flake as a heating membrane to study high temperature thermal dynamic reactions: melting/evaporation, agglomeration, Rayleigh instability, and formation/or removal of carbon in the nanoparticles.
近年来,由于现有的氮化硅基膜存在一些局限性,石墨烯已被探索用作一种加热膜,用于在透射电子显微镜(TEM)内研究高温动力学。然而,用于TEM实验的单层石墨烯薄膜的转移具有挑战性,需要许多复杂的步骤,且成功率极低。这项工作通过将氧化石墨烯(GO)薄片结合在预图案化芯片中,开发了一种新型加热平台。通过简单的滴铸工艺,分离的GO薄片自悬浮在金属电极之间。使用拉曼光谱和电子能量损失光谱对GO进行还原和表征。此外,基于GO的加热器被用于研究金和二氧化硅纳米颗粒的热稳定性。金纳米颗粒蒸发不均匀,留下一个空的碳壳,而二氧化硅通过蚀刻碳载体均匀消失。我们成功地证明了GO薄片作为一种加热膜,可用于研究高温热动力学反应:熔化/蒸发、团聚、瑞利不稳定性以及纳米颗粒中碳的形成/去除。