首页> 外文期刊>Journal of Physical Organic Chemistry >Tuning HOMO-LUMO levels: Trends leading to the design of 9-fluorenone scaffolds with predictable electronic and optoelectronic properties
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Tuning HOMO-LUMO levels: Trends leading to the design of 9-fluorenone scaffolds with predictable electronic and optoelectronic properties

机译:调整HOMO-LUMO水平:导致设计具有可预测的电子和光电特性的9-芴酮支架的趋势

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Highest occupied molecular orbital-lowest unoccupied molecular orbital (HOMO-LUMO) tuning is an important consideration in the development of organic-based semiconducting materials. A study of the specific effects and overall trends for the HOMO-LUMO tuning of a diverse series of 9-fluorenones by means of extended conjugation and substituent effects is described. Trends were explored in a range of compounds, beginning with structures having highly electron-withdrawing substituents and progressing to structures having highly electron-donating substituents. Compounds with an incremental increase in conjugation were also examined. Electrochemical and optical measurements were used to calculate the HOMO-LUMO levels and HOMO-LUMO bandgap (HLG) for each structure. Results from both methods were compared and correlated with the differences in molecular structure. Increasing the electron-donating character of the substituents was observed to decrease the HLG and increase the energy levels of the HOMO and the LUMO, whereas an increase in the electron-withdrawing character produced the opposite results. Increasing conjugation decreased the HLG, increased the HOMO energy level, but decreased the LUMO energy level. Spectroscopic evidence of substituent influence on the carbonyl suggests that substituents directly impact the HLG by influencing the availability of nonbonding electrons within the carbonyl, which impacts the probability of an nπ* transition. The data presented not only elaborate on the HOMO-LUMO tuning of 9-fluorenone systems but also enable the consideration of 9-fluorenones as analogous models for HOMO-LUMO tuning in other more complex polyaromatic systems such as bifluorenylidenes. These trends may provide insight into developing materials with specifically tuned HLGs and HOMO-LUMO levels for a variety of applications.
机译:在有机基半导体材料的开发中,最高占据分子轨道最低最低未占据分子轨道(HOMO-LUMO)调整是重要的考虑因素。描述了通过扩展的共轭和取代效应,对一系列9-芴酮进行HOMO-LUMO调节的特定效应和总体趋势的研究。探索了一系列化合物的趋势,从具有高吸电子取代基的结构开始,发展到具有高给电子取代基的结构。还检查了结合增加的化合物。电化学和光学测量用于计算每个结构的HOMO-LUMO水平和HOMO-LUMO带隙(HLG)。比较了两种方法的结果,并将其与分子结构的差异相关联。观察到增加取代基的供电子特性可降低HLG并增加HOMO和LUMO的能级,而吸电子特性的提高则产生相反的结果。共轭的增加降低了HLG,增加了HOMO能级,但降低了LUMO能级。取代基对羰基的影响的光谱证据表明,取代基通过影响羰基内非键合电子的可利用性而直接影响HLG,从而影响nπ*跃迁的可能性。所提供的数据不仅详细介绍了9-芴酮体系的HOMO-LUMO调节,而且还考虑了将9-芴酮作为其他复杂的多芳族体系(如联芴基)中HOMO-LUMO调节的类似模型。这些趋势可以为开发具有专门调整的HLG和HOMO-LUMO水平的材料提供各种应用的见识。

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