Open Research will be unavailable from 8am to 8.30am on Monday 28th July 2025 due to scheduled maintenance. This maintenance is to provide bug fixes and performance improvements. During this time, you may experience a short outage and be unable to use Open Research.
 

Strong SHG Responses in a Beryllium-Free Deep-UV-Transparent Hydroxyborate via Covalent Bond Modification

Authors

Wu, Chao
Jiang, Xingxing
Lin, Lin
Dan, Wenyan
Lin, Zheshuai
Huang, Zhipeng
Humphrey, Mark
Zhang, Chi

Journal Title

Journal ISSN

Volume Title

Publisher

Wiley

Abstract

Deep-ultraviolet (deep-UV) nonlinear optical (NLO) crystals are key materials in creating tunable deep-UV lasers for frequency conversion technology. However, practical application of the sole usable crystal, KBe2BO3F2, has been hindered by the high toxicity of beryllium and its layering tendency in crystal growth. Herein, we report a beryllium-free deep-UV NLO material NaSr3(OH)(B9O16)[B(OH)4] (NSBOH), synthesized by a covalent bond modification strategy under hydrothermal conditions. Moisture-stable NSBOH exhibits strong second-harmonic generation (SHG) at 1064 nm (3.3 × KH2PO4) and 532 nm (0.55 × β-BaB2O4), both amongst the largest powder SHG responses for a deep-UV borate, with good phase-matchability and a short wavelength cutoff edge (below 190 nm). NSBOH possesses a 3D covalent anionic [B9O19]∞ honeycomb-like framework with no layering. The Sr2+ and Na+ ions, residing in the cavities of the anionic framework, act as templates for the assembly and favorable alignment of NLO-active groups, resulting in an optimal balance between strong SHG activities and wide UV transparency. These merits indicate NSBOH is a very attractive candidate for deep-UV NLO applications.

Description

Citation

Source

Angewandte Chemie

Book Title

Entity type

Access Statement

Open Access

License Rights

Restricted until