1] Institut de Physique et Chimie des Matériaux de Strasbourg (IPCMS), UMR 7504 CNRS-Université de Strasbourg (UdS), 23, rue du Loess, BP 43, 67037 Strasbourg, France [2] Institut de Chimie et Procédés pour l'Energie, l'Environnement et la Santé (ICPEES), UMR 7515 CNRS, ECPM, Université de Strasbourg (UdS), 25, rue Becquerel, 67087 Strasbourg, France.
1] Institut de Physique et Chimie des Matériaux de Strasbourg (IPCMS), UMR 7504 CNRS-Université de Strasbourg (UdS), 23, rue du Loess, BP 43, 67037 Strasbourg, France [2] Laboratoire de Physique des Interfaces et des Couches Minces (LPICM), CNRS/Ecole Polytechnique, Route de Saclay, 91128 Palaiseau, France.
Nat Commun. 2014 Jun 11;5:4109. doi: 10.1038/ncomms5109.
The catalytic cutting of few-layer graphene is nowadays a hot topic in materials research due to its potential applications in the catalysis field and the graphene nanoribbons fabrication. We show here a 3D analysis of the nanostructuration of few-layer graphene by iron-based nanoparticles under hydrogen flow. The nanoparticles located at the edges or attached to the steps on the FLG sheets create trenches and tunnels with orientations, lengths and morphologies defined by the crystallography and the topography of the carbon substrate. The cross-sectional analysis of the 3D volumes highlights the role of the active nanoparticle identity on the trench size and shape, with emphasis on the topographical stability of the basal planes within the resulting trenches and channels, no matter the obstacle encountered. The actual study gives a deep insight on the impact of nanoparticles morphology and support topography on the 3D character of nanostructures built up by catalytic cutting.
由于在催化领域和石墨烯纳米带制造方面的潜在应用,如今少层石墨烯的催化切割是材料研究的一个热门话题。我们在这里展示了在氢气流下铁基纳米粒子对少层石墨烯纳米结构的 3D 分析。位于边缘或附着在 FLG 片上台阶上的纳米粒子会产生具有由碳基底的结晶学和形貌确定的取向、长度和形态的沟槽和隧道。3D 体积的横截面分析突出了活性纳米粒子特性对沟槽尺寸和形状的作用,重点是在遇到障碍物时,在形成的沟槽和通道内基底平面的形貌稳定性。实际研究深入了解了纳米粒子形态和载体形貌对催化切割形成的纳米结构 3D 特性的影响。