论文标题

探索范德华异质结构中天然绝缘辉石的结构和光电特性

Exploring the structural and optoelectronic properties of natural insulating phlogopite in van der Waals heterostructures

论文作者

Cadore, Alisson R., de Oliveira, Raphaela, Lobato, Raphael L. M., Teixeira, Verônica de C., Nagaoka, Danilo A., Alvarenga, Vinicius T., Ribeiro-Soares, Jenaina, Watanabe, Kenji, Taniguchi, Takashi, Paniago, Roberto M., Malachias, Angelo, Krambrock, Klaus, Barcelos, Ingrid D., de Matos, Christiano J. S.

论文摘要

近年来,自然发生的范德华晶体为纳米材料研究人员带来了前所未有的兴趣。到目前为止,已经确定了1800多种分层材料(LMS),但只对少数几个绝缘和自然发生的LM进行了深入研究。植物硅酸盐矿物质是一类天然和丰富的LMS,最近被认为是纳米材料绝缘的低成本来源。在这个家庭中,几乎几乎没有探索的材料出现:富洛吉属[KMG3(alsi3)O10(OH)2]。在这里,我们通过采用多种实验技术来对此LM进行高吞吐量表征,从而证实了主要的发现,并通过第一原理计算来证实。我们表明,这种材料的单层(1L)和几层是空气和温度稳定的,并且可以通过标准的机械剥落技术轻松获得,具有原子平坦的表面,比带有大量的较低的带盖,这是LMS的异常趋势。我们还系统地研究了超薄富洛昔铁的基本特性,并证明天然富洛吉胶在其晶体晶格中呈现铁杂质,从而将其带隙从约7 eV降低到3.6 eV。最后,我们在超薄范德华(Van der Waals)异质结构中将磷酸磷酸盐晶体与1L-WS2结合在一起,并进行了一项光致发光研究,揭示了1L-WS2光学质量的显着增强(即,通过中性激子的较高重组效率)与在1L-WS2/HBN HBN HEBN HETEROSTRUCTER上所获得的相似。我们的概念验证研究表明,富洛吉属应被视为低成本分层纳米材料的基于LM的良好候选者。

Naturally occurring van der Waals crystals have brought unprecedented interest to nanomaterial researchers in recent years. So far, more than 1800 layered materials (LMs) have been identified but only a few insulating and naturally occurring LMs were deeply investigated. Phyllosilicate minerals, which are a class of natural and abundant LMs, have been recently considered as a low-cost source of insulating nanomaterials. Within this family an almost barely explored material emerges: phlogopite [KMg3(AlSi3)O10(OH)2]. Here we carry out a high throughput characterization of this LM by employing several experimental techniques, corroborating the major findings with first-principles calculations. We show that monolayers (1L) and few-layers of this material are air and temperature stable, as well as easily obtained by the standard mechanical exfoliation technique, have an atomically flat surface, and lower bandgap than its bulk counterpart, an unusual trend in LMs. We also systematically study the basic properties of ultrathin phlogopite and demonstrate that natural phlogopite presents iron impurities in its crystal lattice, which decreases its bandgap from about 7 eV to 3.6 eV. Finally, we combine phlogopite crystals with 1L-WS2 in ultrathin van der Waals heterostructures and present a photoluminescence study, revealing a significant enhancement on the 1L-WS2 optical quality (i.e., higher recombination efficiency through neutral excitons) similarly to that obtained on 1L-WS2/hBN heterostructures. Our proof-of-concept study shows that phlogopite should be regarded as a good and promising candidate for LM-based applications as a low-cost layered nanomaterial.

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