Development of photoluminescent hydrogen-bonded frameworks based on pyromellitic diimide-tethered carboxylic acid hosts and multi-bonding solvent guests†

IF 5.2 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
Raju Ram Puniya, Priyanka Takhar, Monika Chhapoliya, Rinki Deka, Dhruba Jyoti Kalita and Devendra Singh
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Abstract

The significance of hydrogen-bonding interactions in improving the chemical and physical properties of functional materials related to sustainable energy, gas absorption, catalysis, and pharmaceuticals has gained considerable research attention. In this report, some unprecedented hydrogen bond motifs between the –COOH group and the solvents capable of forming multiple hydrogen bonds with –COOH are studied. The effects of such diverse motifs on the construction of 3D supramolecular architectures of hydrogen-bonded host–guest frameworks and their optical properties are elucidated. For this purpose, structural studies on seven solvates, namely, 1a (1:2DMF), 1b (1:2pyridine), 1c (1:2quinoline), 2a (1:2DMF), 2b (1:2pyridine), 2c (1:2quinoline), and 2d (1:1quinoline:2piperidine), of two isomeric pyromellitic diimide hosts 1 and 2 were carried out. Single crystal X-ray diffraction (SCXRD) analyses revealed that solvates 1a, 2a, and 2b show 3D non-porous supramolecular host–guest networks, whereas solvates 1b, 1c, 2c, and 2d show 3D supramolecular host–guest channelled architectures accommodating guest solvent molecules within the cavities of different dimensions. Formation of different hydrogen bond motifs, either cyclic/ring (R) or discrete (D) or a combination of both, between the –COOH groups of isomeric hosts and identical guest molecules is analysed through density functional theory (DFT) calculations. Minor differences in the interaction energies of different motifs of isomeric hosts with the same guest suggest that the formation of either motif depends on the steric orientations of hosts and other weak host–guest interactions in the crystal lattices. Solid state fluorescence emission properties of solvates 1a, 2a, and 2b are found to be similar to their respective hosts, whereas those of solvates 1b, 1c, 2c, and 2d are different from their hosts. Along with the diversity of supramolecular synthons, frontier molecular orbital (FMO) analysis of hydrogen-bonded model structures explained well the different emission behaviours of solvates. Thermal analyses for the solvates are in good agreement for the association of the numbers of guest solvent molecules with both the isomeric hosts. Overall, this research is focused on establishing the phenomena for the formation of distinct hydrogen bond patterns between the two similar host–guest binding groups together with the effect of supramolecular states on the photophysical properties of such hydrogen-bonded complexes.

Abstract Image

开发基于吡咯烷二亚胺系羧酸主链和多键溶剂客体的光致发光氢键框架†。
氢键相互作用在改善与可持续能源、气体吸收、催化和制药相关的功能材料的化学和物理性质方面具有重要意义,已获得相当多的研究关注。本报告研究了 -COOH 基团与能够与 -COOH 形成多个氢键的溶剂之间一些前所未有的氢键结构。本报告阐明了这些不同主题对构建三维超分子结构氢键主宾框架及其光学性质的影响。为此,研究人员对两种异构吡咯烷二亚胺宿主 1 和 2 的七种溶剂化物,即 1a(1:2DMF)、1b(1:2 吡啶)、1c(1:2 喹啉)、2a(1:2DMF)、2b(1:2 吡啶)、2c(1:2 喹啉)和 2d(1:1 喹啉:2 哌啶)进行了结构研究。单晶 X 射线衍射(SCXRD)分析表明,溶解物 1a、2a 和 2b 显示出三维无孔超分子主-客网络,而溶解物 1b、1c、2c 和 2d 显示出三维超分子主-客通道结构,在不同尺寸的空腔内容纳客溶剂分子。通过密度泛函理论(DFT)计算,分析了同分异构主分子和相同客体分子的 -COOH 基团之间形成的不同氢键图案(环状/环状(R)或离散(D)或两者的组合)。异构主分子与相同客体分子的不同图案的相互作用能存在微小差异,这表明任何一种图案的形成都取决于主分子的立体定向以及晶格中其他微弱的主-客体相互作用。研究发现,溶胶 1a、2a 和 2b 的固态荧光发射特性与各自的宿主相似,而溶胶 1b、1c、2c 和 2d 的固态荧光发射特性则与宿主不同。除了超分子合子的多样性之外,氢键模型结构的前沿分子轨道(FMO)分析也很好地解释了溶质的不同发射行为。溶胶的热分析结果与客体溶剂分子数量与两种异构体宿主的关联十分吻合。总之,这项研究的重点是确定两种相似的主客结合基团之间形成不同氢键模式的现象,以及超分子状态对这种氢键复合物光物理特性的影响。
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来源期刊
Materials Advances
Materials Advances MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
7.60
自引率
2.00%
发文量
665
审稿时长
5 weeks
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