Materials Science and Technology Division, Oak Ridge National Laboratory, 1 Bethel Valley Rd., Oak Ridge, TN, 37831-6056, USA.
Aerospace Systems Directorate, Air Force Research Laboratory, 1950 Fifth St., Building 18, Wright-Patterson Air Force Base, OH, 45433, USA.
Adv Mater. 2017 Oct;29(38). doi: 10.1002/adma.201602852. Epub 2017 Aug 21.
Since the discovery of Dirac physics in graphene, research in 2D materials has exploded with the aim of finding new materials and harnessing their unique and tunable electronic and optical properties. The follow-on work on 2D dielectrics and semiconductors has led to the emergence and development of hexagonal boron nitride, black phosphorus, and transition metal disulfides. However, the spectrum of good insulating materials is still very narrow. Likewise, 2D materials exhibiting correlated phenomena such as superconductivity, magnetism, and ferroelectricity have yet to be developed or discovered. These properties will significantly enrich the spectrum of functional 2D materials, particularly in the case of high phase-transition temperatures. They will also advance a fascinating fundamental frontier of size and proximity effects on correlated ground states. Here, a broad family of layered metal thio(seleno)phosphate materials that are moderate- to wide-bandgap semiconductors with incipient ionic conductivity and a host of ferroic properties are reviewed. It is argued that this material class has the potential to merge the sought-after properties of complex oxides with electronic functions of 2D and quasi-2D electronic materials, as well as to create new avenues for both applied and fundamental materials research in structural and magnetic correlations.
自从在石墨烯中发现狄拉克物理以来,二维材料的研究呈爆炸式增长,旨在寻找新材料并利用其独特且可调谐的电子和光学特性。对二维电介质和半导体的后续研究导致了六方氮化硼、黑磷和过渡金属二硫化物的出现和发展。然而,良好绝缘材料的范围仍然非常狭窄。同样,表现出超导、磁性和铁电等关联现象的二维材料尚未被开发或发现。这些特性将极大地丰富功能二维材料的范围,特别是在具有高相变温度的情况下。它们还将推进一个迷人的基础前沿,即在关联基态中尺寸和近邻效应。在这里,综述了一类广泛的层状金属硫(硒)磷酸盐材料,它们是具有初始离子电导率和多种铁电性质的中宽带隙半导体。有人认为,这类材料有可能将复杂氧化物的理想特性与二维和准二维电子材料的电子功能结合起来,并为结构和磁性关联中的应用和基础材料研究开辟新途径。