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      A rapid and operator-safe powder approach for latent fingerprint detection using hydrophilic Fe3O4@SiO2-CdTe nanoparticles

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          Modifying the Surface Properties of Superparamagnetic Iron Oxide Nanoparticles through A Sol−Gel Approach

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            Composition of fingermark residue: a qualitative and quantitative review.

            This article describes the composition of fingermark residue as being a complex system with numerous compounds coming from different sources and evolving over time from the initial composition (corresponding to the composition right after deposition) to the aged composition (corresponding to the evolution of the initial composition over time). This complex system will additionally vary due to effects of numerous influence factors grouped in five different classes: the donor characteristics, the deposition conditions, the substrate nature, the environmental conditions and the applied enhancement techniques. The initial and aged compositions as well as the influence factors are thus considered in this article to provide a qualitative and quantitative review of all compounds identified in fingermark residue up to now. The analytical techniques used to obtain these data are also enumerated. This review highlights the fact that despite the numerous analytical processes that have already been proposed and tested to elucidate fingermark composition, advanced knowledge is still missing. Thus, there is a real need to conduct future research on the composition of fingermark residue, focusing particularly on quantitative measurements, aging kinetics and effects of influence factors. The results of future research are particularly important for advances in fingermark enhancement and dating technique developments.
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              Powder method for detecting latent fingerprints: a review

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                Author and article information

                Journal
                Science China Chemistry
                Sci. China Chem.
                Springer Science and Business Media LLC
                1674-7291
                1869-1870
                July 2019
                April 4 2019
                July 2019
                : 62
                : 7
                : 889-896
                Article
                10.1007/s11426-019-9460-0
                18595dc5-36b0-48e2-9362-8e557490f620
                © 2019

                http://www.springer.com/tdm

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