Effect of high energy radiation on electrical properties of synthetic bone materials

Author:

Machuga Krishna S.1,Tauraso Aria1,Kazmi Mahack1,Su Ching Hua2,Cullum Brian1,Arnold Bradley1,Choa Fow‐Sen1,Prasad Narasimha3,Singh N. B.1ORCID

Affiliation:

1. Department of Chemistry and Biochemistry University of Maryland Baltimore County Baltimore Maryland USA

2. NASA Marshall Space Flight Center, Huntsville Alabama USA

3. NASA Langley Research Center Hampton Virginia USA

Abstract

AbstractHydroxyapatites have been investigated since past six decades as laser host materials. Because of their important roles in bone and teeth, these have been subjects of recent investigations. Gallium and titanium have great potential for decreasing the depletion of calcium and reducing osteoporosis. The electrical properties and polarity play important roles in regeneration of the bones. We observed growth of grains in selenium‐doped gallium and titanium containing silicate hydroxyapatites. Observed morphology showed non‐facetted microstructures and it helped in achieving larger grains. For the material processed for the period of longer than 70 h, we did not observe any difference in the dielectric constant and resistivity of the selenium‐doped materials. For irradiating the materials, a Cs‐137  γ‐radiation with 5 µm curie dose was used up to 100 h. We observed that the dielectric constant and resistivity at different frequencies ranging from 100 to 100 000 Hz were affected by the high energy radiation. However, bias voltage in the range of 50–1 000 mV did no alter the dielectric constant or resistivity. This indicated that the breakdown of the material did not occur for this bias range.

Funder

Biological and Physical Sciences Division

Publisher

Wiley

Reference14 articles.

1. Laser Properties of Nd^+3 and Ho^+3 Doped Crystals with the Apatite Structure

2. HopkinsRH MazelskyR RiedelEP.Westinghouse Research and Development Center Unpublished reports 1968–1976. (Private Communications)

3. Room‐temperature operation of a Co: MgFz laser;Welford D;Opt Lett,1978

4. DeLoachLD PageRH WilkeGD PayneSA KmpkePF.Spectral properties of transition metal‐doped zinc chalcogenide crystals for tunable IR radiation.Presented at the Topical Meeting on Advanced Solid‐State Lasers Memphis TN;1995.

5. Transition metal-doped zinc chalcogenides: spectroscopy and laser demonstration of a new class of gain media

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