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Study of the nanoporous CHAP photoluminiscence for developing the precise methods of early caries detection

机译:开发早期龋病检测精确方法的纳米多孔章节光敏研究

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This paper deals with the luminescence characteristics of an analogue of the mineral component of dental enamel of the nanocrystalline B-type carbonate-substituted hydroxyapatite (CHAP) with 3D defects (i.e. nanopores of -2-5 nm) on the nanocrystalline surface. The laser-induced luminescence of the synthesized CHAP samples was in the range of ~515 nm (~2.4 eV) and is due to C03 groups replacing the P04 group. It was found that the intensity of the luminescence of the CHAP is caused by structurally incorporated C03 groups in the HAP structure. Furthermore, the intensity of the luminescence also decreases as the number of the above intracentre defects (CO3) in the apatite structure declines. These results are potentially promising for developing the foundations for precise methods for the early detection of caries in human solid dental tissue.
机译:本文涉及纳米晶体B型碳酸酯 - 取代的羟基磷灰石(CHAP)的牙科搪瓷矿物成分的类似物的发光特征,3D缺陷(即-2-5nm)在纳米晶体表面上。合成章样品的激光诱导的发光在〜515nm(〜2.4eV)的范围内,并且由于CO 3组而替代PO4组。结果发现,CHAP的发光强度是由在HAP结构中的结构掺入的CO 3组引起的。此外,由于磷灰石结构中上述与上述食心和缺陷(CO3)的数量下降,发光的强度也降低。这些结果潜在希望为在人类固体牙科组织中早期检测龋齿的精确方法开发基础。

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