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Effectively designing infrared nonlinear optical materials with magnetism, MMn6Ga6S16 (M = Ca, Sr, Ba, and Pb), aided by stable open frameworks
Inorganic Chemistry Frontiers ( IF 6.1 ) Pub Date : 2024-07-04 , DOI: 10.1039/d4qi01084a
Kaixuan Li 1 , Yujie Zhang 1 , Xianchao Zhu 1 , Hongping Wu 1 , Zhanggui Hu 1 , Jiyang Wang 1 , Yicheng Wu 1
Affiliation  

Infrared nonlinear optical (NLO) materials are crucial to the development of laser technology. However, finding ways to effectively synthesize them is still a big challenge. Herein, aided by a stable open framework, four IR NLO materials, MMn6Ga6S16 (M = Ca, Sr, Ba, and Pb), have been effectively synthesized in a high-temperature vacuum sealing system. They all crystallize in a non-centrosymmetric (NCS) space group, P[6 with combining macron], and their structures feature a three-dimensional open framework composed of Mn–S single and double chains and Ga–S single and double chains, in which these one-dimensional chains increase the structural flexibility and adjustability to accommodate varied cations with different ionic radii. Remarkably, MMn6Ga6S16 (M = Ca, Sr, Ba, and Pb) exhibit not only comprehensive NLO performances including appropriate NLO responses and band gaps and a wide transmission range but also para-magnetism in magnetic properties, indicating that MMn6Ga6S16 (M = Ca, Sr, Ba, and Pb) are potential IR multifunctional materials. This work suggests that a stable open framework can be used to construct varied structures, which brings a new platform for effectively designing multifunctional materials.

中文翻译:


借助稳定的开放框架,有效设计具有磁性的红外非线性光学材料 MMn6Ga6S16(M = Ca、Sr、Ba 和 Pb)



红外非线性光学(NLO)材料对于激光技术的发展至关重要。然而,找到有效合成它们的方法仍然是一个巨大的挑战。在此,借助稳定的开放框架,四种红外非线性光学材料 MMn 6 Ga 6 S 16 (M = Ca、Sr、Ba 和 Pb) ,已在高温真空密封系统中有效合成。它们均结晶在非中心对称(NCS)空间群P [6 with combining macron] 中,其结构具有由Mn-S单双链和Ga-S单双链组成的三维开放框架,其中这些一维链增加了结构灵活性和可调节性,以适应具有不同离子半径的各种阳离子。值得注意的是,MMn 6 Ga 6 S 16 (M = Ca、Sr、Ba 和 Pb)不仅表现出全面的 NLO 性能,包括适当的 NLO 响应和频带间隙和较宽的传输范围,而且磁性具有顺磁性,表明 MMn 6 Ga 6 S 16 (M = Ca, Sr, Ba,和Pb)是潜在的红外多功能材料。这项工作表明,稳定的开放框架可用于构建不同的结构,这为有效设计多功能材料带来了新的平台。
更新日期:2024-07-04
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