Li Zijian, Jin Wenqi, Zhang Fangfang, Chen Zilong, Yang Zhihua, Pan Shilie
Key Laboratory of Functional Materials and Devices for Special Environments of CAS, Xinjiang Technical Institute of Physics and Chemistry of CAS, Xinjiang Key Laboratory of Electronic Information Materials and Devices, 40-1 South Beijing Road, Urumqi, 830011, China.
University of Chinese Academy of Sciences, Beijing, 100049, China.
Angew Chem Int Ed Engl. 2022 Jan 21;61(4):e202112844. doi: 10.1002/anie.202112844. Epub 2021 Nov 22.
Ultraviolet (UV) nonlinear optical (NLO) crystals which can produce short-wavelength lasers via a direct second harmonic generation (SHG) process are of great importance in modern laser technology. Currently, the exploration of UV NLO crystals in borosulfates is nearly stagnant since the non-phase matching (PM) property lies on the small birefringence induced by the intrinsically small optical anisotropy of the tetrahedral groups. Herein, for the first time, the planar [BO ] units were introduced into borosulfates leading to a boron-rich borosulfate (NH ) B SO with unprecedented [B SO ] layers and evidently enhanced birefringence. To the best of our knowledge, it achieves the shortest SHG PM wavelength of 252 nm in all reported borosulfates with deep UV cutoff edge (184 nm), large SHG response (1.1×KDP at 1064 nm and 0.15×β-BBO at 532 nm) and large birefringence (0.053 at 1064 nm) and is easy to grow single crystals via simple chemical vapor deposition method. These results confirm the feasibility of utilizing planar [BO ] units to optimize birefringence of borosulfates, and also open up broad prospects for UV NLO crystals in boron-rich borosulfates.
能够通过直接二次谐波产生(SHG)过程产生短波长激光的紫外(UV)非线性光学(NLO)晶体在现代激光技术中具有重要意义。目前,硼硫酸盐中紫外NLO晶体的探索几乎停滞不前,因为非相位匹配(PM)特性取决于四面体基团固有的小光学各向异性所引起的小双折射。在此,首次将平面[BO]单元引入硼硫酸盐中,得到了一种富硼硼硫酸盐(NH)B SO,其具有前所未有的[B SO]层且双折射明显增强。据我们所知,它在所有报道的硼硫酸盐中实现了最短的SHG PM波长252 nm,具有深紫外截止边(184 nm)、大的SHG响应(在1064 nm处为1.1×KDP,在532 nm处为0.15×β-BBO)和大双折射(在1064 nm处为0.053),并且易于通过简单化学气相沉积法生长单晶。这些结果证实了利用平面[BO]单元优化硼硫酸盐双折射的可行性,也为富硼硼硫酸盐中的紫外NLO晶体开辟了广阔前景。