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Bettiol, A.A.; Yang, C.; Hawkes, G.P.; Jamieson, D.N.; Malmqvist, K.G.; Day, R.W., E-mail: dnj@physics.unimelb.edu.au1999
AbstractAbstract
[en] Ionoluminescence (IL) combined with particle induced X-ray emission (PIXE) imaging has been employed to identify intrinsic growth bands in the spire region, and extrinsic bands at the growth edge of Australian Black-lip abalone shell (Haliotis rubra). Previous studies using optical flood cathodoluminescence, scanning electron microscope cathodoluminescence (SEM-CL) and Raman spectroscopy on samples from the same population suggest that the visible luminescence is due to Mn2+ activated calcium carbonate. In this study we confirm Mn2+ as the activator in both the spire and growth edge regions of the shell. The sensitivity of ionoluminescence to the co-ordination environment of the Mn2+ activators in the shell allows for the spatial identification of the calcium carbonate polymorph responsible for the growth lines observed optically. Furthermore the detection and mapping of trace elements such as Mn and Sr with the PIXE technique enables comparisons to be made between calcite and aragonite biomineralized in the wild and under laboratory conditions
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Source
S0168583X99003225; Copyright (c) 1999 Elsevier Science B.V., Amsterdam, The Netherlands, All rights reserved.; Country of input: International Atomic Energy Agency (IAEA)
Record Type
Journal Article
Journal
Nuclear Instruments and Methods in Physics Research. Section B, Beam Interactions with Materials and Atoms; ISSN 0168-583X; ; CODEN NIMBEU; v. 158(1-4); p. 299-305
Country of publication
ALKALINE EARTH METAL COMPOUNDS, ANIMALS, AQUATIC ORGANISMS, CALCIUM COMPOUNDS, CARBON COMPOUNDS, CARBONATES, CHEMICAL ANALYSIS, ELEMENTS, EMISSION, INVERTEBRATES, LASER SPECTROSCOPY, METALS, NONDESTRUCTIVE ANALYSIS, OXYGEN COMPOUNDS, PHOTON EMISSION, PROBES, SPECTROSCOPY, TRANSITION ELEMENTS, X-RAY EMISSION ANALYSIS
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