论文标题

2d Janus niobium oxydihalide nbo $ xy $:电子,光子学和可持续能源应用的多功能高动力压电半导体

2D Janus Niobium Oxydihalide NbO$XY$: Multifunctional High-Mobility Piezoelectric Semiconductor for Electronics, Photonics and Sustainable Energy Applications

论文作者

Su, Tong, Lee, Ching Hua, Guo, San-Dong, Wang, Guangzhao, Ong, Wee-Liat, Zhao, Weiwei, Yang, Shengyuan A., Ang, Yee Sin

论文摘要

二维(2D)氧化氢盐Nboi $ _2 $最近已被证明是出色的平面内压电和非线性光学材料。在这里,我们表明,Janus Niobium Oxydihalide,NBO $ XY $(X,Y = Cl,Br,I和X $ \ neq $ Y),是一个多功能各向异性半导体家族,具有出色的压电,电子,电子,光催化和光学特性。 NBO $ xy $是稳定的,并且具有弹性的单层,带有$ \ sim 1.9 $ ev的可见光状态。 NBO $ xy $的各向异性载流子的移动性在于$ 10^3 \ sim 10^4 $ cm $^2 $ v $ v $^{ - 1} $ s $ s $^{ - 1} $,它代表了bandgap $ \ \ gtrsim 2 $ 2 $ ev的2d半导体中最高的一些。反转对称性破坏在Janus nbo $ xy $生成相当的平面外$ d_ {31} $ piezoelectric响应,同时仍保留强大的面板压电。值得注意的是,NBO $ xy $表现出额外的平面压电响应,$ d_ {32} $最大为0.55 pm/v。 g $ _0 $ W $ _0 $ -BSE计算进一步揭示了可见的到粉状物质中NBO $ xy $的强烈线性光学二分法。在深紫外线制度($ 5 \ sim6 $ eV)中,具有$ 14 \ sim18 $ \%的光学吸收峰值优于其他绝大多数2D材料。高载体的移动性,强烈的光学吸收,相当大的内置电场和与整体水分兼容的频段对齐进一步表明NBO $ xy $ xy $ xy $ xy $ nbo $ xy $在能量转换应用中的优势。我们进一步提出了一个定向应力传感设备,以证明如何用于功能设备应用程序如何利用平面外压电。我们的发现揭示了用于灵活电子,光电子,紫外光子学,压电和可持续能源应用的特殊多功能2D半导体。

Two-dimensional (2D) niobium oxydihalide NbOI$_2$ has been recently demonstrated as an excellent in-plane piezoelectric and nonlinear optical materials. Here we show that Janus niobium oxydihalide, NbO$XY$ (X, Y = Cl, Br, I and X$\neq$Y), is a multifunctional anisotropic semiconductor family with exceptional piezoelectric, electronic, photocatalytic and optical properties. NbO$XY$ are stable and mechancially flexible monolayers with band gap around the visible light regime of $\sim 1.9$ eV. The anisotropic carrier mobility of NbO$XY$ lies in the range of $10^3 \sim 10^4$ cm$^2$V$^{-1}$s$^{-1}$, which represents some of the highest among 2D semiconductors of bandgap $\gtrsim 2$ eV. Inversion symmetry breaking in Janus NbO$XY$ generates sizable out-of-plane $d_{31}$ piezoelectric response while still retaining a strong in-plane piezoelectricity. Remarkably, NbO$XY$ exhibits an additional out-of-plane piezoelectric response, $d_{32}$ as large as 0.55 pm/V. G$_0$W$_0$-BSE calculation further reveals the strong linear optical dichroism of NbO$XY$ in the visible-to-ultraviolet regime. The optical absorption peaks with $14\sim18$ \% in the deep UV regime ($5\sim6$ eV), outperforming the vast majority of other 2D materials. The high carrier mobility, strong optical absorption, sizable built-in electric field and band alignment compatible with overall water splitting further suggest the strengths of NbO$XY$ in energy conversion application. We further propose a directional stress sensing device to demonstrate how the out-of-plane piezoelectricity can be harnessed for functional device applications. Our findings unveil NbO$XY$ as an exceptional multifunctional 2D semiconductor for flexible electronics, optoelectronics, UV photonics, piezoelectric and sustainable energy applications.

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