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首页> 外文期刊>CrystEngComm >Structural diversity of hydrogen-bonded complexes comprising phenol-based and pyridine-based components: NLO properties and crystallographic and spectroscopic studies
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Structural diversity of hydrogen-bonded complexes comprising phenol-based and pyridine-based components: NLO properties and crystallographic and spectroscopic studies

机译:包含酚类和吡啶基组分的氢键复合物的结构多样性:NLO性能和结晶和光谱研究

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Synthesis of compounds with improved physicochemical properties, including nonlinear optical phenomena such as second harmonic generation, might be considered as one of the most challenging aspects of crystal engineering. In this work, we examine the diversity of hydrogen bond networks and relative efficiencies of second harmonic generation in new noncentrosymmetric complexes comprising phenol-based hydrogen bond donors (2,5-dinitrophenol, 4-nitrophenol, 2,3,5,6-tetrachlorophenol) and pyridinium-based hydrogen bond acceptors (2-aminopyridine, 3,5-dimethylpyridine, 2,3,6-trimethylpyridine): 2-aminopyridinium 2,5-dinitrophenolate [(2APy)(+)center dot(2,5-DNP)-] (1), 2-aminopyridinium 4-nitrophenolate 4-nitrophenol [(2APy)(+)center dot(4-NP)-center dot(4-NP)] (2), 2,3,6-trimethylpyridinium 2,3,5,6-tetrachlorophenolate [(2,3,6C)(+)center dot(TCP)-] (3), and 3,5-dimethylpyridine 2,3,5,6-tetrachlorophenol [(3,5L)center dot(TCP)] (4). In compounds (1)-(3), proton transfer occurs; specifically, compounds (1) and (3) are classified as salts while compound (2) belongs to the ionic co-crystal class. Only in the case of compound (4), no evidence of proton transfer is found, attesting to its co-crystal nature. The 2,5-DNP molecule was found to possess a short intramolecular O-H center dot center dot center dot O hydrogen bond and crystallize in the monoclinic crystal system with space group P2(1). Crystal structure analysis reveals that the substituted phenol-pyridine complexes crystallize as salts linked by N-H center dot center dot center dot O hydrogen bonds in the orthorhombic crystal system with space group Pna2(1), (1) and (2), or P2(1)2(1)2(1) (3), whereas (4) crystallizes in the monoclinic Cc space group as a formally molecular complex (1 : 1) linked by O-H center dot center dot center dot N hydrogen bonds. Additionally, the vibrational study results are also presented. These results have been discussed in the context of the hydrogen bond network present in the investigated crystals. The relative efficiencies of the second harmonic generation (SHG) process for compounds (1)-(4) were examined under 800 nm irradiation using the Kurtz-Perry powder technique. Low SHG efficiency on the order of 10(-4) vs. that of KDP was observed for compounds (1) and (4), which is ascribed to the self-filtering effect. For these compounds, the two-photon excited fluorescence was additionally registered.
机译:具有改善的物理化学性质的化合物的合成,包括非线性光学现象,如二次谐波产生,可能被认为是晶体工程最具挑战性的方面之一。在这项工作中,我们研究了包含酚类氢键供体(2,5-二硝基苯酚,4-硝基苯酚,2,3,5,6-四氯苯酚(2,5-二硝基苯酚,2,3,5,6-四氯苯酚)中氢键网络和第二次谐波产生的相对效率的多样性)基于吡啶基的氢键受体(2-氨基吡啶,3,5-二甲基吡啶,2,3,6-三甲基吡啶):2-氨基吡啶鎓2,5-二滴激蛋白[(2apy)(+)中心点(2,5- DNP) - ](1),2-氨基吡啶鎓4-硝基苯甲酸4-硝基苯酚[(2apy)(+)中心点(4-NP) - 中心点(4-NP)](2),2,3,6-三甲基吡啶2,3,5,6-四氯苯酚酸[(2,3,6c)(+)中心点(TCP) - ](3),以及3,5-二甲基吡啶2,3,5,6-四氯苯酚[(3 ,5L)中心点(TCP)](4)。在化合物(1) - (3)中,发生质子转移;具体地,化合物(1)和(3)被分类为盐,而化合物(2)属于离子共晶类。只有在化合物(4)的情况下,没有发现质子转移的证据,证明其共晶性。发现2,5-DNP分子具有短分子内O-H中心点中心点中心点氢键,并在具有空间组P2(1)的单斜晶体系中结晶。晶体结构分析表明,取代的酚吡啶配合物在具有空间组PNA2(1),(1)和(2)或P2( 1)2(1)2(1)(3),而(4)在单斜核CC空间基团中结晶,作为由OH中心点中心点中心点N氢键连接的正式分子复合物(1:1)。此外,还提出了振动研究结果。已经在研究晶体中存在的氢键网络的背景下讨论了这些结果。使用Kurtz-Perry粉末技术在800nm辐射下检查二次谐波产生(SHG)方法的相对效率(1) - (4)。对于化合物(1)和(4),观察到kdp的低SHG效率为10(-4)。(1)和(4),其归因于自过滤效果。对于这些化合物,另外注册了双光子激发荧光。

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