Lawrence Berkeley National Laboratory, 1 Cyclotron Rd, Berkeley, CA, 94720, USA.
SpaceX, 1 Rocket Road, Hawthorne, CA, 90250, USA.
Nat Commun. 2017 Aug 22;8(1):323. doi: 10.1038/s41467-017-00399-6.
Auxetics comprise a rare family of materials that manifest negative Poisson's ratio, which causes an expansion instead of contraction under tension. Most known homogeneously auxetic materials are porous foams or artificial macrostructures and there are few examples of inorganic materials that exhibit this behavior as polycrystalline solids. It is now possible to accelerate the discovery of materials with target properties, such as auxetics, using high-throughput computations, open databases, and efficient search algorithms. Candidates exhibiting features correlating with auxetic behavior were chosen from the set of more than 67 000 materials in the Materials Project database. Poisson's ratios were derived from the calculated elastic tensor of each material in this reduced set of compounds. We report that this strategy results in the prediction of three previously unidentified homogeneously auxetic materials as well as a number of compounds with a near-zero homogeneous Poisson's ratio, which are here denoted "anepirretic materials".There are very few inorganic materials with auxetic homogenous Poisson's ratio in polycrystalline form. Here authors develop an approach to screening materials databases for target properties such as negative Poisson's ratio by using stability and structural motifs to predict new instances of homogenous auxetic behavior as well as a number of materials with near-zero Poisson's ratio.
各向异性材料构成了一类罕见的材料家族,其具有负泊松比特性,即在拉伸下会发生膨胀而非收缩。大多数已知的各向同性弹性材料是多孔泡沫或人工宏观结构,而具有这种行为的无机材料则很少见,通常为多晶固体。现在,使用高通量计算、开放数据库和高效搜索算法,有可能加速具有目标特性(如各向异性)的材料的发现。从 Materials Project 数据库中超过 67000 种材料中选择了与各向异性行为相关的候选材料。泊松比是从该化合物的简化组中每个材料的计算弹性张量中得出的。我们报告说,这种策略可以预测三种以前未识别的各向同性弹性材料,以及许多具有近零均匀泊松比的化合物,这些化合物在这里被称为“反各向同性材料”。具有各向同性均匀泊松比的多晶无机材料非常少。在这里,作者开发了一种通过使用稳定性和结构基元来筛选材料数据库以获得目标特性(如负泊松比)的方法,以预测均匀各向异性行为的新实例以及许多具有近零泊松比的材料。