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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Unleashing the Full Sustainable Potential of Thick Films of Lead-Free Potassium Sodium Niobate (K0.5Na0.5NbO3) by Aqueous Electrophoretic Deposition
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Unleashing the Full Sustainable Potential of Thick Films of Lead-Free Potassium Sodium Niobate (K0.5Na0.5NbO3) by Aqueous Electrophoretic Deposition

机译:通过水电泳沉积释放无铅铌酸钾钠(K0.5Na0.5NbO3)厚膜的完全可持续电位

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摘要

A current challenge for the fabrication of functional oxide-based devices is related with the need of environmental and sustainable materials and processes. By considering both lead-free ferroelectrics of potassium sodium niobate (K0.5Na0.5NbO3, KNN) and aqueous-based electrophoretic deposition here we demonstrate that an eco-friendly aqueous solution-based process can be used to produce KNN thick coatings with improved electromechanical performance. KNN thick films on platinum substrates with thickness varying between 10 and 15 mu m have a dielectric permittivity of 495, dielectric losses of 0.08 at 1 MHz, and a piezoelectric coefficient d(33) of, similar to 70 pC/N. At T-C these films display a relative permittivity of 2166 and loss tangent of 0.11 at 1 MHz. A comparison of the physical properties between these films and their bulk ceramics counterparts demonstrates the impact of the aqueous-based electrophoretic deposition (EPD) technique for the preparation of lead-free ferroelectric thick films. This opens the door to the possible development of high-performance, lead-free piezoelectric thick films by a sustainable low-cost process, expanding the applicability of lead-free piezoelectrics.
机译:基于功能氧化物的器件的制造当前面临的挑战与对环境和可持续材料及工艺的需求有关。通过同时考虑铌酸钾钠(K0.5Na0.5NbO3,KNN)的无铅铁电体和水基电泳沉积,我们证明了基于生态环保的水溶液工艺可用于生产具有改进的机电性能的KNN厚涂层性能。厚度在10到15μm之间的铂基板上的KNN厚膜的介电常数为495,在1 MHz时的介电损耗为0.08,压电系数d(33)类似于70 pC / N。在T-C下,这些薄膜在1 MHz下的相对介电常数为2166,损耗角正切为0.11。比较这些薄膜与它们的块状陶瓷对应物的物理性能,证明了水基电泳沉积(EPD)技术对制备无铅铁电厚膜的影响。这为通过可持续的低成本工艺开发高性能无铅压电厚膜打开了大门,从而扩大了无铅压电的适用性。

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