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Highly stable phosphorene isomers based on a buckled honeycomb lattice

机译:基于一个高度稳定的phosphorene同分异构体扣蜂巢晶格

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摘要

Due to their high stabilities and tuneable electronic structures, two dimensional isomers of black phosphorene (BP) have drawn great attention recently. By carefully considering the bonding characteristics of phosphorus atoms, we propose a buckled honeycomb lattice strategy to search for possible highly stable phosphorene isomers. As an example, phosphorene isomers with a unit cell size no larger than 8 atoms are fully explored and 14 isomers, including the well-known -, -, -, -, and epsilon-phosphorene, are discovered and named from P-I to P-XIV in the order of their relative stabilities. Among these isomers, P-II and P-III are two newly found isomers with superior stability comparable to BP, whose formation energies are just 0.01 and 0.03 eV per atom higher than that of BP (-phosphorene), respectively, and both are more stable than the well-known blue phosphorene (-phosphorene). These new phosphorene isomers exhibit a wide range of medium energy band gaps from 0.30 to 2.66 eV, various HOMO/LUMO energy levels and, therefore, can be used for various optoelectronic and device applications.
机译:由于其高稳定性和可协调的电子结构、二维同分异构体黑色phosphorene (BP)已经引起了极大的关注最近。磷原子的特点,我们提出一个扣蜂巢晶格搜索策略可能的高度稳定phosphorene同分异构体。例子,phosphorene单位细胞的同分异构体大小不超过8原子得到充分的探讨和14个同分异构体,其中包括著名的-,-,-epsilon-phosphorene、发现得名于P-XIV导出的订单相对的稳定性。和P-III是两个新发现的同分异构体优越的稳定性与英国石油(BP)的地层能量只是0.01和0.03 eV原子高于BP (-phosphorene),分别,都是比更稳定著名的蓝色phosphorene (-phosphorene)。新phosphorene同分异构体表现出广泛的从0.30到2.66 eV介质能量带隙,各种各样的HOMO和LUMO能级,因此可用于各种光电子和设备应用程序。

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