Hu Cong, Mutailipu Miriding, Wang Ying, Guo Fengjiao, Yang Zhihua, Pan Shilie
Key Laboratory of Functional Materials and Devices for Special Environments of CAS, Xinjiang Technical Institute of Physics & Chemistry of CAS, Xinjiang Key Laboratory of Electronic Information Materials and Devices, 40-1 South Beijing Road, Urumqi 830011, China.
Phys Chem Chem Phys. 2017 Sep 27;19(37):25270-25276. doi: 10.1039/c7cp04154c.
Second harmonic generation (SHG) response is one of the most essential properties of nonlinear optical (NLO) materials. To achieve relatively strong SHG response, a feasible strategy is to introduce stereochemically active lone pair (SCALP) cations, such as Bi. NLO materials with Bi usually exhibit a huge difference in SHG response, the inner correlation between the activity of SCALP and SHG response still being unclear owing to the lack of quantization estimation of the intensity of SCALP. Based on the calculation results of density functional theory (DFT), we develop a theoretical method to compute the intensity of the Bi-6s SCALP, which could describe the stereochemical behavior and exert significantly influences on some apparent optical properties, such as SHG response. Using the method, we further analyze a series of bismuth borates which exhibit an apparent hierarchy in SHG response: BiBOF (12 × KDP), α-BiBO (8.2 × KDP), BiZnOBO (4 × KDP), CaBiBO (2 × KDP), and BiBO (1.2 × KDP). Combining the experimental measurements for the SHG responses, electronic structure analysis and the real-space atom cutting method, we explore the mechanism of the hierarchy in SHG response.
二次谐波产生(SHG)响应是非线性光学(NLO)材料最重要的特性之一。为了实现相对较强的SHG响应,一种可行的策略是引入立体化学活性孤对(SCALP)阳离子,如Bi。含Bi的NLO材料通常在SHG响应上表现出巨大差异,由于缺乏对SCALP强度的量化估计,SCALP活性与SHG响应之间的内在关联仍不明确。基于密度泛函理论(DFT)的计算结果,我们开发了一种计算Bi-6s SCALP强度的理论方法,该方法可以描述立体化学行为,并对一些表观光学性质(如SHG响应)产生显著影响。使用该方法,我们进一步分析了一系列在SHG响应上呈现明显层级关系的硼酸铋:BiBOF(12×KDP)、α-BiBO(8.2×KDP)、BiZnOBO(4×KDP)、CaBiBO(2×KDP)和BiBO(1.2×KDP)。结合SHG响应的实验测量、电子结构分析和实空间原子切割方法,我们探究了SHG响应层级关系的机制。