Direct visualization of lithium via annular bright field scanning transmission electron microscopy: a review. Findlay, S. D., Huang, R., Ishikawa, R., Shibata, N., & Ikuhara, Y. Microscopy, 66(1):3–14, February, 2017.
Direct visualization of lithium via annular bright field scanning transmission electron microscopy: a review [link]Paper  doi  abstract   bibtex   
Annular bright field (ABF) scanning transmission electron microscopy has proven able to directly image lithium columns within crystalline environments, offering much insight into the structure and properties of lithium-ion battery materials. We summarize the image formation mechanisms underpinning ABF imaging, review the experimental application of this technique to imaging lithium in materials and overview the conditions that help maximize the visibility of lithium columns.
@article{findlay_direct_2017,
	title = {Direct visualization of lithium via annular bright field scanning transmission electron microscopy: a review},
	volume = {66},
	issn = {2050-5698},
	shorttitle = {Direct visualization of lithium via annular bright field scanning transmission electron microscopy},
	url = {https://academic-oup-com.inp.bib.cnrs.fr/jmicro/article/66/1/3/2608002/Direct-visualization-of-lithium-via-annular-bright},
	doi = {10.1093/jmicro/dfw041},
	abstract = {Annular bright field (ABF) scanning transmission electron microscopy has proven able to directly image lithium columns within crystalline environments, offering much insight into the structure and properties of lithium-ion battery materials. We summarize the image formation mechanisms underpinning ABF imaging, review the experimental application of this technique to imaging lithium in materials and overview the conditions that help maximize the visibility of lithium columns.},
	number = {1},
	urldate = {2017-09-15},
	journal = {Microscopy},
	author = {Findlay, Scott David and Huang, Rong and Ishikawa, Ryo and Shibata, Naoya and Ikuhara, Yuichi},
	month = feb,
	year = {2017},
	pages = {3--14},
}

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