TY - JOUR
T1 - Azaisoquinolinones
T2 - N Positions Tell You Different Stories in Their Optical Properties
AU - Li, Junbo
AU - Gao, Junkuo
AU - Li, Gang
AU - Xiong, Weiwei
AU - Zhang, Qichun
PY - 2013/12/20
Y1 - 2013/12/20
N2 - Since isoquinolinones and their derivatives have been demonstrated to be powerful building blocks in constructing larger acenes and twistacenes, azaisoquinolinones and their analogues could also be important intermediates to approach larger N-heteroacenes. In this paper, we are interested in developing a concise method to synthesize novel azaisoquinolinones building blocks and studying their physical properties. Our results showed that the different N positions have a large effect on the optical and electrochemical properties of azaisoquinolinones. For example, protonation of 6- and 7-azaisoquinolinones shows different shifts of UV-vis and FL spectra. More interestingly, 6- and 7-azaisoquinolinones exhibited different interactions with metal ions in CH 3CN solution. Upon the addition of 2 equiv of Fe3+, 6-azaisoquinolinone displayed an absorption wavelength red-shifted from 470 to 540 nm (Δλ = 70 nm) with a color change from yellow to red, while the interaction between Fe3+ and 7-azaisoquinolinone was very weak and there was no obvious color change (Δλ = 18 nm). Moreover, theoretical calculations confirmed the different optical properties with 6- and 7-azaisoquinolinones. © 2013 American Chemical Society.
AB - Since isoquinolinones and their derivatives have been demonstrated to be powerful building blocks in constructing larger acenes and twistacenes, azaisoquinolinones and their analogues could also be important intermediates to approach larger N-heteroacenes. In this paper, we are interested in developing a concise method to synthesize novel azaisoquinolinones building blocks and studying their physical properties. Our results showed that the different N positions have a large effect on the optical and electrochemical properties of azaisoquinolinones. For example, protonation of 6- and 7-azaisoquinolinones shows different shifts of UV-vis and FL spectra. More interestingly, 6- and 7-azaisoquinolinones exhibited different interactions with metal ions in CH 3CN solution. Upon the addition of 2 equiv of Fe3+, 6-azaisoquinolinone displayed an absorption wavelength red-shifted from 470 to 540 nm (Δλ = 70 nm) with a color change from yellow to red, while the interaction between Fe3+ and 7-azaisoquinolinone was very weak and there was no obvious color change (Δλ = 18 nm). Moreover, theoretical calculations confirmed the different optical properties with 6- and 7-azaisoquinolinones. © 2013 American Chemical Society.
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U2 - 10.1021/jo402338n
DO - 10.1021/jo402338n
M3 - RGC 21 - Publication in refereed journal
C2 - 24299117
SN - 0022-3263
VL - 78
SP - 12760
EP - 12768
JO - Journal of Organic Chemistry
JF - Journal of Organic Chemistry
IS - 24
ER -