首页> 外文OA文献 >ReaxFF Reactive Force-Field Modeling of the Triple-Phase Boundary in a Solid Oxide Fuel Cell
【2h】

ReaxFF Reactive Force-Field Modeling of the Triple-Phase Boundary in a Solid Oxide Fuel Cell

机译:固态氧化物燃料电池三相边界的ReaxFF反应力场建模

摘要

In our study, the Ni/YSZ ReaxFF reactive force field was developed by combining the YSZ and Ni/C/H descriptions. ReaxFF reactive molecular dynamics (RMD) were applied to model chemical reactions, diffusion, and other physicochemical processes at the fuel/Ni/YSZ interface. The ReaxFF RMD simulations were performed on the H_2/Ni/YSZ and C_4H_(10)/Ni/YSZ triple-phase boundary (TPB) systems at 1250 and 2000 K, respectively. The simulations indicate amorphization of the Ni surface, partial decohesion (delamination) at the interface, and coking, which have indeed all been observed experimentally. They also allowed us to derive the mechanism of the butane conversion at the Ni/YSZ interface. Many steps of this mechanism are similar to the pyrolysis of butane. The products obtained in our simulations are the same as those in experiment, which indicates that the developed ReaxFF potential properly describes complex physicochemical processes, such as the oxide-ion diffusion, fuel conversion, water formation reaction, coking, and delamination, occurring at the TPB and can be recommended for further computational studies of the fuel/electrode/electrolyte interfaces in a SOFC.
机译:在我们的研究中,通过结合YSZ和Ni / C / H描述开发了Ni / YSZ ReaxFF反作用力场。 ReaxFF反应性分子动力学(RMD)被用于模拟燃料/ Ni / YSZ界面上的化学反应,扩散和其他物理化学过程。 ReaxFF RMD模拟分别在1250和2000 K的H_2 / Ni / YSZ和C_4H_(10)/ Ni / YSZ三相边界(TPB)系统上进行。模拟表明镍表面的非晶化,界面处的部分脱粘(分层)和焦化,这些实际上都是通过实验观察到的。他们还使我们能够在Ni / YSZ界面上推导丁烷转化机理。该机理的许多步骤类似于丁烷的热解。我们在模拟中获得的产品与实验中的产品相同,这表明所开发的ReaxFF电势正确地描述了复杂的物理化学过程,例如氧化物离子扩散,燃料转化,水形成反应,结焦和分层等现象,都发生在温度TPB,可以推荐用于SOFC中燃料/电极/电解质界面的进一步计算研究。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号