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Tunable Pseudo-Piezoelectric Effect in Doped Calcium Titanate for Bone Tissue Engineering

机译:掺杂型钛酸钙钛钛酸钙的可调伪压电效应

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摘要

CaTiO3 is a promising candidate as a pseudo-piezoelectric scaffold material for bone implantation. In this study, pure and magnesium/iron doped CaTiO3 are synthesized by sol-gel method and spark plasma sintering. Energy dispersive X-ray mapping confirm the homogenous distribution of doping elements in sintered samples. High-energy X-ray diffraction investigations reveal that doping of nanostructured CaTiO3 increased the strain and defects in the structure of CaTiO3 compared to the pure one. This led to a stronger pseudo-piezoelectric effect in the doped samples. The charge produced in magnesium doped CaTiO3 due to the direct piezoelectric effect is (2.9 ± 0.1) pC which was larger than the one produced in pure CaTiO3 (2.1 ± 0.3) pC, whereas the maximum charge was generated by iron doped CaTiO3 with (3.6 ± 0.2) pC. Therefore, the pseudo-piezoelectric behavior can be tuned by doping. This tuning of pseudo-piezoelectric response provides the possibility to systematically study the bone response using different piezoelectric strengths and possibly adjust for bone tissue engineering.
机译:CATIO3是一个有希望的候选者,作为用于骨植入的伪压电脚手架材料。在该研究中,通过溶胶 - 凝胶法合成纯净和镁/铁掺杂的CATIO3,并用火花等离子体烧结合成。能量分散X射线测绘证实了烧结样品中掺杂元素的均匀分布。高能量X射线衍射研究表明,与纯一体相比,纳米结构CATIO3的掺杂增加了CATIO3结构中的菌株和缺陷。这导致了掺杂样品中的伪压电效果更强。由于直接压电效应(2.9±0.1)PC,在纯CATIO3(2.1±0.3)PC中的PC(2.9±0.1)PC,而最大电荷由铁掺杂CATIO3产生(3.6 ±0.2)PC。因此,可以通过掺杂来调谐伪压电行为。伪压电响应的调整提供了利用不同的压电强度系统地研究骨响应,并可能适用于骨组织工程。

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