Literature DB >> 28899437

Novel Method for Preparing Transmission Electron Microscopy Samples of Micrometer-Sized Powder Particles by Using Focused Ion Beam.

Tae-Hoon Kim1, Min-Chul Kang1, Ga-Bin Jung1, Dong Soo Kim2,3, Cheol-Woong Yang1.   

Abstract

The preparation of transmission electron microscopy (TEM) samples from powders is quite difficult and challenging. For powders with particles in the 1-5 μm size range, it is especially difficult to select an adequate sample preparation technique. Epoxy is commonly used to bind powder, but drawbacks, such as differential milling originating from unequal milling rates between the epoxy and powder, remain. We propose a new, simple method for preparing TEM samples. This method is especially useful for powders with particles in the 1-5 μm size range that are vulnerable to oxidation. The method uses solder as an embedding agent together with focused ion beam (FIB) milling. The powder was embedded in low-temperature solder using a conventional hot-mounting instrument. Subsequently, FIB was used to fabricate thin TEM samples via the lift-out technique. The solder proved to be more effective than epoxy in producing thin TEM samples with large areas. The problem of differential milling was mitigated, and the solder binder was more stable than epoxy under an electron beam. This methodology can be applied for preparing TEM samples from various powders that are either vulnerable to oxidation or composed of high atomic number elements.

Keywords:  FIB milling; TEM sample preparation; oxidation; powder; solder

Year:  2017        PMID: 28899437     DOI: 10.1017/S1431927617012557

Source DB:  PubMed          Journal:  Microsc Microanal        ISSN: 1431-9276            Impact factor:   4.127


  1 in total

1.  Determination of Dy substitution site in Nd2-xDyxFe14B by HAADF-STEM and illustration of magnetic anisotropy of "g" and "f" sites, before and after substitution.

Authors:  Syed Kamran Haider; Min-Chul Kang; Jisang Hong; Young Soo Kang; Cheol-Woong Yang; Dongsoo Kim
Journal:  Sci Rep       Date:  2021-03-18       Impact factor: 4.379

  1 in total

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