Ma Limei, Xu Zijian, Guo Zhi, Watts Benjamin, Lin Jinyou, Zhang Xiangzhi, Tai Renzhong
Shanghai Synchrotron Radiation Facility, Shanghai Advanced Research Institute, Chinese Academy of Sciences, Shanghai 201204, People's Republic of China.
Swiss Light Source, Paul Scherrer Institute, 5232 Villigen, Switzerland.
J Synchrotron Radiat. 2021 May 1;28(Pt 3):924-929. doi: 10.1107/S1600577521002903. Epub 2021 Mar 30.
The three-dimensional (3D) dual-energy focal stacks (FS) imaging method has been developed to quickly obtain the spatial distribution of an element of interest in a sample; it is a combination of the 3D FS imaging method and two-dimensional (2D) dual-energy contrast imaging based on scanning transmission soft X-ray microscopy (STXM). A simulation was firstly performed to verify the feasibility of the 3D elemental reconstruction method. Then, a sample of composite nanofibers, polystyrene doped with ferric acetylacetonate [Fe(acac)3], was further investigated to quickly reveal the spatial distribution of Fe(acac)3 in the sample. Furthermore, the data acquisition time was less than that for STXM nanotomography under similar resolution conditions and did not require any complicated sample preparation. The novel approach of 3D dual-energy FS imaging, which allows fast 3D elemental mapping, is expected to provide invaluable information for biomedicine and materials science.
三维(3D)双能聚焦堆叠(FS)成像方法已被开发出来,用于快速获取样品中感兴趣元素的空间分布;它是3D FS成像方法与基于扫描透射软X射线显微镜(STXM)的二维(2D)双能对比成像的结合。首先进行了模拟,以验证3D元素重建方法的可行性。然后,对一种复合纳米纤维样品,即掺杂乙酰丙酮铁[Fe(acac)3]的聚苯乙烯,进行了进一步研究,以快速揭示样品中Fe(acac)3的空间分布。此外,在类似分辨率条件下,数据采集时间比STXM纳米断层扫描的时间短,并且不需要任何复杂的样品制备。这种能够实现快速3D元素映射的新型3D双能FS成像方法,有望为生物医学和材料科学提供宝贵信息。