Ceramics Laboratory, Swiss Federal Institute of Technology, Lausanne, CH-1015 Switzerland.
Nat Commun. 2012 Mar 20;3:748. doi: 10.1038/ncomms1751.
While commonly used piezoelectric materials contain lead, non-hazardous, high-performance piezoelectrics are yet to be discovered. Charged domain walls in ferroelectrics are considered inactive with regards to the piezoelectric response and, therefore, are largely ignored in this search. Here we demonstrate a mechanism that leads to a strong enhancement of the dielectric and piezoelectric properties in ferroelectrics with increasing density of charged domain walls. We show that an incomplete compensation of bound polarization charge at these walls creates a stable built-in depolarizing field across each domain leading to increased electromechanical response. Our model clarifies a long-standing unexplained effect of domain wall density on macroscopic properties of domain-engineered ferroelectrics. We show that non-toxic ferroelectrics like BaTiO(3) with dense patterns of charged domain walls are expected to have strongly enhanced piezoelectric properties, thus suggesting a new route to high-performance, lead-free ferroelectrics.
虽然常用的压电材料含有铅,但尚未发现无危险、高性能的压电材料。铁电体中带电畴壁的压电响应通常被认为是不活跃的,因此在这种研究中很大程度上被忽略了。在这里,我们展示了一种机制,即在增加带电畴壁密度的情况下,铁电体的介电和压电性能会得到强烈增强。我们表明,在这些壁处的束缚极化电荷的不完全补偿会在每个畴内产生稳定的内置去极化场,从而导致机电响应增加。我们的模型澄清了畴工程铁电体中畴壁密度对宏观性质的长期未解释的影响。我们表明,预计具有密集带电畴壁图案的无毒铁电体,如 BaTiO(3),将具有更强的压电性能,因此为高性能、无铅铁电体提供了一条新途径。