Dai Zhenbang, Giustino Feliciano
Oden Institute for Computational Engineering and Sciences, The University of Texas at Austin, Austin, TX 78712.
Department of Physics, The University of Texas at Austin, Austin, TX 78712.
Proc Natl Acad Sci U S A. 2024 Nov 26;121(48):e2414203121. doi: 10.1073/pnas.2414203121. Epub 2024 Nov 21.
Titanium dioxide (TiO) is a wide-gap semiconductor with numerous applications in photocatalysis, photovoltaics, and neuromorphic computing. The unique functional properties of this material critically depend on its ability to transport charge in the form of polarons, namely narrow electron wavepackets accompanied by local distortions of the crystal lattice. It is currently well established that the most important polymorphs of TiO, the rutile and anatase phases, harbor small electron polarons and small hole polarons, respectively. However, whether additional polaronic species exist in TiO, and under which conditions, remain open questions. Here, we provide definitive answers to these questions by exploring the rich landscape of polaron quasiparticles in TiO via recently developed ab initio techniques. In addition to the already known small polarons, we identify three species, namely a large hole polaron in rutile, a large quasi-two-dimensional electron polaron in anatase, and a large exciton polaron in anatase. These findings complete the puzzle on the polaron physics of TiO and pave the way for systematically probing and manipulating polarons in a broad class of complex oxides and quantum materials.
二氧化钛(TiO₂)是一种宽带隙半导体,在光催化、光伏和神经形态计算等领域有众多应用。这种材料独特的功能特性关键取决于其以极化子形式传输电荷的能力,极化子即伴随着晶格局部畸变的窄电子波包。目前已明确,TiO₂最重要的多晶型物,即金红石相和锐钛矿相,分别包含小电子极化子和小空穴极化子。然而,TiO₂中是否存在其他极化子种类以及在何种条件下存在,仍是悬而未决的问题。在此,我们通过最近开发的从头算技术探索TiO₂中丰富的极化子准粒子图景,为这些问题提供了明确答案。除了已知的小极化子外,我们还识别出三种极化子,即金红石相中的大空穴极化子、锐钛矿相中的大准二维电子极化子以及锐钛矿相中的大激子极化子。这些发现完善了TiO₂极化子物理学的拼图,并为系统地探测和操控广泛的复杂氧化物和量子材料中的极化子铺平了道路。