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Ferroelectric Polarization in Nanocrystalline Hydroxyapatite Thin Films on Silicon

机译:硅上纳米晶羟基磷灰石薄膜中的铁电极化

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摘要

Hydroxyapatite nanocrystals in natural form are a major component of bone- a known piezoelectric material. Synthetic hydroxyapatite is widely used in bone grafts and prosthetic pyroelectric coatings as it binds strongly with natural bone. Nanocrystalline synthetic hydroxyapatite films have recently been found to exhibit strong piezoelectricity and pyroelectricity. While a spontaneous polarization in hydroxyapatite has been predicted since 2005, the reversibility of this polarization (i.e. ferroelectricity) requires experimental evidence. Here we use piezoresponse force microscopy to demonstrate that nanocrystalline hydroxyapatite indeed exhibits ferroelectricity: a reversal of polarization under an electrical field. This finding will strengthen investigations on the role of electrical polarization in biomineralization and bone-density related diseases. As hydroxyapatite is one of the most common biocompatible materials, our findings will also stimulate systematic exploration of lead and rare-metal free ferroelectric devices for potential applications in areas as diverse as in vivo and ex vivo energy harvesting, biosensing and electronics.
机译:天然形式的羟基磷灰石纳米晶体是骨骼(一种已知的压电材料)的主要成分。合成羟基磷灰石由于与天然骨骼牢固结合,因此广泛用于骨移植物和人工热电涂层。最近发现纳米晶合成羟基磷灰石膜表现出强的压电性和热电性。虽然自2005年以来就预测了羟基磷灰石的自发极化,但这种极化的可逆性(即铁电性)需要实验证据。在这里,我们使用压电响应力显微镜来证明纳米晶羟基磷灰石确实表现出铁电性:在电场下极化的反转。这一发现将加强对电极化在生物矿化和骨密度相关疾病中的作用的研究。由于羟基磷灰石是最常见的生物相容性材料之一,因此我们的发现还将刺激系统地探索无铅和无金属的铁电器件,从而有望在体内和离体能量收集,生物传感和电子学等领域中广泛应用。

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