Novel enhancing materials for biosensor design: The case studies of erbium-, gadolinium- and strontium-doped Ca10(PO4)6(OH)2 hydroxyapatite

被引:1
作者
Scognamiglio, Viviana [1 ]
Nocerino, Valeria [2 ]
Miranda, Bruno [2 ]
De Stefano, Luca [2 ]
Tempesta, Emanuela [3 ]
Rossi, Manuela [4 ]
Baldassarre, Francesco [5 ]
Altomare, Angela [5 ]
Capitelli, Francesco [1 ]
机构
[1] CNR, Inst Crystallog, Dept Chem Sci & Mat Technol, Via Salaria km 29-300, I-00015 Rome, Italy
[2] CNR, Inst Appl Sci & Intelligent Syst, Dept Phys Sci & Technol Matter, Via Pietro Castellino 111, I-80131 Naples, Italy
[3] CNR, Inst Environm Geol & Geoengn, Dept Biol Agr & Food Sci, Via Salaria Km 29-300, I-00015 Rome, Italy
[4] Univ Naples Federico II, Dept Earth Sci Environm & Resources, Via Cintia, I-80126 Naples, Italy
[5] CNR, Inst Crystallog, Dept Chem Sci & Mat Technol, Via Amendola 122-o, I-70126 Bari, Italy
关键词
Hydroxyapatite; Sensing materials; Electrochemical characterization structural; characterization; MECHANOCHEMICAL SYNTHESIS; CRYSTAL-STRUCTURE; SINGLE-CRYSTAL; CALCIUM; POWDERS; LUMINESCENCE; PHOSPHATES; CHEMISTRY; MN; NI;
D O I
10.1016/j.pcrysgrow.2024.100637
中图分类号
O7 [晶体学];
学科分类号
0702 ; 070205 ; 0703 ; 080501 ;
摘要
Hydroxyapatite (HAp), ideal formula Ca10(PO4)6(OH)2, has unique physicochemical properties, including an excellent adsorption ability for functional biomolecules (e.g. nucleic acids, proteins) thanks to its specific large crystal surface. This property can be further improved with cationic and anionic replacements within the HAp framework. The adsorption of such biomolecules, indeed, can cause changes in the electric properties of the HAp surface in terms of resistivity and capacitance, generating the conditions for an improvement of the materials targeted for sensor applications. This work relates to the multiple routes for the synthesis of HAp materials, their electrochemical and structural investigations, and a short overview on the most well-known applications in sensor design. Moreover, with the aim of finding new promising HAp-based materials tailored for bioreceptor immobilization in biosensing, we underwent some doped-hydroxyapatite materials, specifically Sr-HAp, Gd-HAp, and Er-HAp, to a complete characterization. Electrochemical analyses, based on differential pulse voltammetry and cyclic voltammetry, evidenced improved analytical performances of HAp in terms of signal enhancement, repeatability, reproducibility, and reusability, in particular concerning the Er-HAp phase. A multimethodological structural study, based on powder X-ray diffraction analysis, microscopy techniques (optical, electron, and fluorescence), energy dispersive X-ray spectroscopy (for chemical analyses), Fourier transform infrared spectroscopy, and absorption/fluorescence spectroscopies, showed the mechanism of doping replacement in HAp crystallographic sites, owing to the results of the Rietveld refinement from powder X-ray data, and a strong fluorescence for Sr-HAp.
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页数:15
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