Jun Hosun, Jang Kyuseon, Jung Chanwon, Choi Pyuck-Pa
Department of Materials Science and Engineering, Korea Advanced Institute of Science and Technology (KAIST), 291 Daehak-ro, Yuseong-gu, Daejeon34141, Republic of Korea.
Microsc Microanal. 2021 Jun 29:1-10. doi: 10.1017/S1431927621012137.
Atomic mapping of nanomaterials, in particular nanoparticles, using atom probe tomography (APT) is of great interest, as their properties strongly depend on shape, size, and composition. However, APT analyses of nanoparticles are extremely challenging, and there is an urgent need for developing robust and universally applicable sample preparation methods. Herein, we explored a method based on pulse electrodeposition to embed Ag nanoparticles in a Ni matrix and prepare APT specimens from the resulting composite film. By systematically varying the duty cycle during pulse electrodeposition, the dispersion and number density of the nanoparticles within the matrix was significantly enhanced as compared to DC electrodeposition. Several Ag nanoparticles were analyzed with APT from such samples. Shape distortions and biased compositions were observed for the Ag nanoparticles after applying a standard data reconstruction protocol. Numerical simulations of the field evaporation process showed that such artifacts were caused by a difference in the evaporation field of Ni and Ag and a local magnification effect. We expect such detrimental effects to be mitigated by a careful selection of the matrix material, matching the evaporation field of the nanoparticles. Furthermore, we anticipate that the method presented herein can be extended to a wider range of nanomaterials.
使用原子探针断层扫描(APT)对纳米材料,特别是纳米颗粒进行原子尺度成像备受关注,因为它们的性能强烈依赖于形状、尺寸和组成。然而,对纳米颗粒进行APT分析极具挑战性,迫切需要开发强大且普遍适用的样品制备方法。在此,我们探索了一种基于脉冲电沉积的方法,将银纳米颗粒嵌入镍基体中,并从所得复合膜制备APT样品。通过系统地改变脉冲电沉积过程中的占空比,与直流电沉积相比,基体中纳米颗粒的分散性和数密度显著提高。用APT对这些样品中的几个银纳米颗粒进行了分析。在应用标准数据重建协议后,观察到银纳米颗粒存在形状畸变和成分偏差。场蒸发过程的数值模拟表明,这些伪像由镍和银的蒸发场差异以及局部放大效应引起。我们期望通过仔细选择基体材料,使其与纳米颗粒的蒸发场相匹配,来减轻这种有害影响。此外,我们预计本文提出的方法可扩展到更广泛的纳米材料。