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dc.contributor.authorBasavaraj R.B
dc.contributor.authorInamdar H.K
dc.contributor.authorMalleshappa J
dc.contributor.authorNagabhushana H.
dc.date.accessioned2020-06-12T15:01:03Z-
dc.date.available2020-06-12T15:01:03Z-
dc.date.issued2019
dc.identifier.citationAIP Conference Proceedings , Vol. 2115 , , p. -en_US
dc.identifier.uri10.1063/1.5112975
dc.identifier.urihttp://gukir.inflibnet.ac.in:8080/jspui/handle/123456789/3638-
dc.description.abstractThe main challenge in achieving high reliability while using a small portion of a fingerprint for matching is that there may not be a sufficient number of minutiae but the uniqueness of the pore configurations provides a powerful means to compensate for this insufficiency. In this paper a pilot study was performed to test the presented approach confirms the efficacy of using pores in addition to the traditionally used minutiae in fragmentary fingerprint comparison. A simple but efficient sweat pore mapping method based on a TiO2:Ce3+ nanopowders (NPs) were developed for fingerprint analysis. Various characterizations tools were used to study structural, morphological, photoluminescence properties. The prepared nanopowder displays a fluorometric turn-on response upon contact with a small quantity of water secreted from human sweat pores, allowing precise mapping of sweat pores on a fingertip The detail features combining with identified chemical composition were sufficient to establish a human identity and link the suspect to a crime scene. The wide detectable mass range and high spatial resolution make TiO2:Ce3+ a promising tool in accurate and fast analysis of fingerprint, especially in fragmental fingerprint analysis. © 2019 Author(s).en_US
dc.publisherAmerican Institute of Physics Inc.
dc.titleHighly sensitive detection of fingerprints by cyan emitting fluorescent powders prepared via one-pot hydrothermal routeen_US
dc.typeConference Paper
Appears in Collections:2. Conference Papers

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