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Structure-mechanical property correlations in mechanochromic luminescent crystals of boron difluoride dibenzoylmethane derivatives

机译:二氟化硼二苯甲酰甲烷衍生物的机械变色发光晶体中的结构-力学性质相关性

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摘要

The structure and mechanical properties of crystalline materials of three boron difluoride dibenzoylmethane (BF(2)dbm) derivatives were investigated to examine the correlation, if any, among mechanochromic luminescence (ML) behaviour, solid-state structure, and the mechanical behaviour of single crystals. Qualitative mechanical deformation tests show that the crystals of BF(2)dbm(Bu-t)(2) can be bent permanently, whereas those of BF(2)dbm(OMe)(2) exhibit an inhomogeneous shearing mode of deformation, and finally BF(2)dbmOMe crystals are brittle. Quantitative mechanical analysis by nanoindentation on the major facets of the crystals shows that BF(2)dbm(Bu-t)(2) is soft and compliant with low values of elastic modulus, E, and hardness, H, confirming its superior suceptibility for plastic deformation, which is attributed to the presence of a multitude of slip systems in the crystal structure. In contrast, both BF(2)dbm(OMe)(2) and BF(2)dbmOMe are considerably stiffer and harder with comparable E and H, which are rationalized through analysis of the structural attributes such as the intermolecular interactions, slip systems and their relative orientation with respect to the indentation direction. As expected from the qualitative mechanical behaviour, prominent ML was observed in BF(2)dbm(Bu-t)(2), whereas BF(2)dbm(OMe)(2) exhibits only a moderate ML and BF(2)dbmOMe shows no detectable ML, all examined under identical conditions. These results confirm that the extent of ML in crystalline organic solid-state fluorophore materials can be correlated positively with the extent of plasticity (low recovery). In turn, they offer opportunities to design new and improved efficient ML materials using crystal engineering principles.
机译:研究了三种二氟化硼二苯甲酰甲烷(BF(2)dbm)衍生物的晶体材料的结构和力学性能,以研究光致变色发光(ML)行为,固态结构和单分子力学行为之间的相关性(如果有)。晶体。定性的机械变形测试表明,BF(2)dbm(Bu-t)(2)的晶体可以永久弯曲,而BF(2)dbm(OMe)(2)的晶体表现出不均匀的剪切变形模式,并且最终,BF(2)dbmOMe晶体变脆。通过纳米压痕对晶体的主要刻面进行的定量力学分析表明,BF(2)dbm(Bu-t)(2)柔软并且符合较低的弹性模量E和硬度H值,从而证实了其优越的磁化率塑性变形,这归因于晶体结构中存在许多滑动系统。相反,BF(2)dbm(OMe)(2)和BF(2)dbmOMe在相当的E和H下都相当坚硬,这通过分析结构属性(如分子间相互作用,滑移系统和它们相对于压痕方向的相对方向。正如定性机械行为所预期的那样,在BF(2)dbm(Bu-t)(2)中观察到了明显的ML,而BF(2)dbm(OMe)(2)仅表现出中等的ML和BF(2)dbmOMe显示在所有相同条件下均未检测到的ML。这些结果证实,在结晶有机固态荧光团材料中ML的程度可以与可塑性程度(低回收率)正相关。反过来,它们提供了使用晶体工程原理设计新的和改进的高效ML材料的机会。

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