EN
Accuracy Limits of Pair Distribution Function Analysis in Structural Characterization of Nanocrystalline Powders by X-ray Diffraction
Abstract
We report the minimum errors of structural parameters, namely lattice parameter, crystallite size, and atomic displacement parameters, expected from Pair Distribution Function (PDF) analysis of nanocrystalline gold powders for the first time by a self-consistent computational methodology. Although PDF analysis has been increasingly used to characterize nanocrystalline powders by X-rays, the current literature includes no established error bounds to be expected from the resulting structural parameters. For accurate interpretation of X-ray diffraction data, these error bounds must be determined, and the obtained structural parameters must be cleared from them. Our novel methodology includes: 1) simulation of ideal powder diffraction experiments with the use of the Debye scattering equation, 2) pair distribution function analysis of the diffraction data with the Diffpy-CMI analysis software, and 3) determination of the errors from PDF analysis of the simulated diffraction data by comparing them with real-space analysis of spherical gold nanocrystals that are 30 nm size and smaller. Our results show that except for the lattice parameters and even with an ideal crystalline powder sample and ideal diffraction data, the extracted structural parameters from PDF analysis diverge from their true values for the studied nanopowder. These deviations are dependent on the average size of the nanocrystals and the energy of the X-rays selected for the diffraction experiments, where lower X-ray energies and small-sized nanocrystalline powders lead to greater errors.
Keywords
Supporting Institution
Tübitak
Project Number
BİDEB 2232 International Fellowship of Outstanding Researchers Program (Project no:118C268)
Thanks
Dr. İlknur Eruçar
Dr. Shangmin Xiong
References
- 1. Prasad N, Karthikeyan B. Tunable bandgap and blue emission of ZnS nanoparticles induced by controlled S vacancies. Journal of Applied Physics. 2019 Feb 28;125(8):085702.
- 2. Tran N, Zhao W, Carlson F, Davidson JH, Stein A. Metal Nanoparticle–Carbon Matrix Composites with Tunable Melting Temperature as Phase-Change Materials for Thermal Energy Storage. ACS Appl Nano Mater. 2018 Apr 27;1(4):1894–903.
- 3. Ingham B. X-ray scattering characterisation of nanoparticles. Crystallography Reviews. 2015 Oct 2;21(4):229–303.
- 4. Kang S-JL, Park J-H, Ko S-Y, Lee H-Y. Solid-State Conversion of Single Crystals: The Principle and the State-of-the-Art. Green DJ, editor. J Am Ceram Soc. 2015 Feb;98(2):347–60.
- 5. Neder RB, Proffen T. Exact and fast calculation of the X-ray pair distribution function. J Appl Crystallogr. 2020 Jun 1;53(3):710–21.
- 6. Rietveld HM. A profile refinement method for nuclear and magnetic structures. J Appl Crystallogr. 1969 Jun 2;2(2):65–71.
- 7. Juhás P, Farrow CL, Yang X, Knox KR, Billinge SJL. Complex modeling: a strategy and software program for combining multiple information sources to solve ill posed structure and nanostructure inverse problems. Acta Crystallogr A Found Adv. 2015 Nov 1;71(6):562–8.
- 8. Petkov V, Bedford N, Knecht MR, Weir MG, Crooks RM, Tang W, et al. Periodicity and Atomic Ordering in Nanosized Particles of Crystals. J Phys Chem C. 2008 Jun 1;112(24):8907–11.
Details
Primary Language
English
Subjects
-
Journal Section
Research Article
Publication Date
May 31, 2022
Submission Date
October 13, 2021
Acceptance Date
March 13, 2022
Published in Issue
Year 2022 Volume: 9 Number: 2
APA
Baloochiyan, A., Batyrov, M., & Ozturk, H. (2022). Accuracy Limits of Pair Distribution Function Analysis in Structural Characterization of Nanocrystalline Powders by X-ray Diffraction. Journal of the Turkish Chemical Society Section A: Chemistry, 9(2), 527-544. https://doi.org/10.18596/jotcsa.1008896
AMA
1.Baloochiyan A, Batyrov M, Ozturk H. Accuracy Limits of Pair Distribution Function Analysis in Structural Characterization of Nanocrystalline Powders by X-ray Diffraction. JOTCSA. 2022;9(2):527-544. doi:10.18596/jotcsa.1008896
Chicago
Baloochiyan, Abolfazl, Merdan Batyrov, and Hande Ozturk. 2022. “Accuracy Limits of Pair Distribution Function Analysis in Structural Characterization of Nanocrystalline Powders by X-Ray Diffraction”. Journal of the Turkish Chemical Society Section A: Chemistry 9 (2): 527-44. https://doi.org/10.18596/jotcsa.1008896.
EndNote
Baloochiyan A, Batyrov M, Ozturk H (May 1, 2022) Accuracy Limits of Pair Distribution Function Analysis in Structural Characterization of Nanocrystalline Powders by X-ray Diffraction. Journal of the Turkish Chemical Society Section A: Chemistry 9 2 527–544.
IEEE
[1]A. Baloochiyan, M. Batyrov, and H. Ozturk, “Accuracy Limits of Pair Distribution Function Analysis in Structural Characterization of Nanocrystalline Powders by X-ray Diffraction”, JOTCSA, vol. 9, no. 2, pp. 527–544, May 2022, doi: 10.18596/jotcsa.1008896.
ISNAD
Baloochiyan, Abolfazl - Batyrov, Merdan - Ozturk, Hande. “Accuracy Limits of Pair Distribution Function Analysis in Structural Characterization of Nanocrystalline Powders by X-Ray Diffraction”. Journal of the Turkish Chemical Society Section A: Chemistry 9/2 (May 1, 2022): 527-544. https://doi.org/10.18596/jotcsa.1008896.
JAMA
1.Baloochiyan A, Batyrov M, Ozturk H. Accuracy Limits of Pair Distribution Function Analysis in Structural Characterization of Nanocrystalline Powders by X-ray Diffraction. JOTCSA. 2022;9:527–544.
MLA
Baloochiyan, Abolfazl, et al. “Accuracy Limits of Pair Distribution Function Analysis in Structural Characterization of Nanocrystalline Powders by X-Ray Diffraction”. Journal of the Turkish Chemical Society Section A: Chemistry, vol. 9, no. 2, May 2022, pp. 527-44, doi:10.18596/jotcsa.1008896.
Vancouver
1.Abolfazl Baloochiyan, Merdan Batyrov, Hande Ozturk. Accuracy Limits of Pair Distribution Function Analysis in Structural Characterization of Nanocrystalline Powders by X-ray Diffraction. JOTCSA. 2022 May 1;9(2):527-44. doi:10.18596/jotcsa.1008896
Cited By
Optimizing Experimental Parameters for Rietveld Refinement of Powder X-ray Diffraction from Small Gold Nanocrystals
Journal of the Turkish Chemical Society Section A: Chemistry
https://doi.org/10.18596/jotcsa.1358713
