Wang Peng, Wang Dong, Chen Chengmin, Sun Li, Zhang Xue, Guo Xing, Yu Fapeng, Cheng Xiufeng, Xie Xuejian, Zhao Xian
State Key Lab of Crystal Materials, Institute of Novel Semiconductors, Center for Optics Research and Engineering Shandong University, Jinan 250100, PR China.
Energy Institute, Qilu University of Technology (Shandong Academy of Sciences), Jinan 250100, PR China.
ACS Omega. 2024 Dec 16;9(52):51146-51156. doi: 10.1021/acsomega.4c06728. eCollection 2024 Dec 31.
Monocrystalline graphene growth has always been an intriguing research focus. Argon (Ar) is merely viewed as a carrier gas due to its inert chemical properties throughout the whole growth procedure by the chemical vapor deposition method. In this work, the influence of Ar on temperature and flow fields was investigated in consideration of its physical parameter difference among all involved gases. Results by experimental characterization and fluid dynamics simulation showed that the temperature elevated, and the velocity of the mixed gas increased as the Ar flow rates rose. Furthermore, the deposition rate of C on the Cu surface, representing graphene generation rate, was studied as the Ar flow rate changed in combination with CH decomposition reaction. Based on the effects made by Ar, a method was proposed, where the Ar flow rate was dynamically regulated to break monocrystalline graphene growth cessation. The graphene size was enlarged, and the nucleation site density was reduced remarkably compared with a common consistent Ar flow. It is believed that this work would provide a new perspective in two-dimensional material preparation by combining basic properties with temperature and field distribution in the whole reaction system.
单晶石墨烯的生长一直是一个引人关注的研究焦点。在通过化学气相沉积法进行的整个生长过程中,由于氩气(Ar)具有惰性化学性质,它仅仅被视为一种载气。在这项工作中,考虑到所有相关气体之间的物理参数差异,研究了氩气对温度和流场的影响。实验表征和流体动力学模拟结果表明,随着氩气流速的增加,温度升高,混合气体的速度也增加。此外,结合CH分解反应,研究了随着氩气流速变化时,铜表面C的沉积速率(代表石墨烯生成速率)。基于氩气所产生的影响,提出了一种方法,即动态调节氩气流速以打破单晶石墨烯生长的停滞状态。与普通恒定氩气流相比,石墨烯尺寸增大,成核位点密度显著降低。相信这项工作将通过将基本性质与整个反应体系中的温度和场分布相结合,为二维材料制备提供一个新的视角。