TY - JOUR
T1 - Electrochromic and unique chiroptical properties of helically deformed tetraarylquinodimethanes generated from less-hindered dicationic precursors upon reduction
AU - Suzuki, Takanori
AU - Sakano, Yuto
AU - Iwai, Tomohiro
AU - Iwashita, Shinichi
AU - Miura, Youhei
AU - Katoono, Ryo
AU - Kawai, Hidetoshi
AU - Fujiwara, Kenshu
AU - Tsuji, Yasushi
AU - Fukushima, Takanori
N1 - Funding Information:
Acknowledgments: This work was supported by the Cooperative Research Program of “Network Joint Research Center for Materials and Devices” and by Grant-in Aid for Scientific Research on Innovative Areas: “Organic Synthesis Based on Reaction Integration” (No. 2105) from MEXT, Japan. TS thanks JSPS Grant-in-Aid for Challenging Exploratory Research on “Maximum Function on Minimum Skeleton (MFMS)” (No. 25620050).
PY - 2014/4/17
Y1 - 2014/4/17
N2 - Electron-donating 1,1,4,4-tetraarylbutadiene is a representative electrochromic dye, and the same chromophore can be found in 9,10-bis(diarylmethylene)-9,10-dihydrophenanthrene (dibenzo-oQD) albeit in a fixed s-cis geometry. Unlike thermodynamically unstable 7,7,8,8-tetraaryl-o- quinodimethane, spontaneous electrocyclization is prohibited by dibenzo-annulation. Several derivatives of dibenzo-oQD were successfully generated despite highly strained geometry caused by steric hindrance between the bulky diarylmethylene units. Their precursors are phenanthrene-9,10-diyl bis(diarylmethylium) dyes (PDM2+) stabilized by four electron-donating alkoxy groups. The redox pairs of dibenzo-oQD/PDM2+ exhibit vivid change in color upon redox interconversion (electrochromism). Both dibenzo-oQD and PDM2+adopt a helical conformation, whose configuration is unstable. When a chiral alkoxy substituent is attached on each of the aryl groups, the point chirality is successfully transmitted to helicity of PDM2+. Resulting diastereomeric biasing is the key for dibenzo-oQD/PDM2+to exhibit the two-way-output response (e.g., UV-vis and CD). In addition, much more strained quinodimethane derivatives, 1,2-bis(diarylmethylene)acenaphthene and 1,16-diaryldibenzo[b,n]perylene, were also generated from the dicationic precursors, demonstrating that the reductive transformation can serve as a useful protocol to generate severely deformed π-conjugated systems.
AB - Electron-donating 1,1,4,4-tetraarylbutadiene is a representative electrochromic dye, and the same chromophore can be found in 9,10-bis(diarylmethylene)-9,10-dihydrophenanthrene (dibenzo-oQD) albeit in a fixed s-cis geometry. Unlike thermodynamically unstable 7,7,8,8-tetraaryl-o- quinodimethane, spontaneous electrocyclization is prohibited by dibenzo-annulation. Several derivatives of dibenzo-oQD were successfully generated despite highly strained geometry caused by steric hindrance between the bulky diarylmethylene units. Their precursors are phenanthrene-9,10-diyl bis(diarylmethylium) dyes (PDM2+) stabilized by four electron-donating alkoxy groups. The redox pairs of dibenzo-oQD/PDM2+ exhibit vivid change in color upon redox interconversion (electrochromism). Both dibenzo-oQD and PDM2+adopt a helical conformation, whose configuration is unstable. When a chiral alkoxy substituent is attached on each of the aryl groups, the point chirality is successfully transmitted to helicity of PDM2+. Resulting diastereomeric biasing is the key for dibenzo-oQD/PDM2+to exhibit the two-way-output response (e.g., UV-vis and CD). In addition, much more strained quinodimethane derivatives, 1,2-bis(diarylmethylene)acenaphthene and 1,16-diaryldibenzo[b,n]perylene, were also generated from the dicationic precursors, demonstrating that the reductive transformation can serve as a useful protocol to generate severely deformed π-conjugated systems.
KW - Chirality
KW - Dication
KW - Dye
KW - Electrochiroptics
KW - Electrochromism
KW - ISNA-15
KW - Redox system
KW - Strained molecules
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UR - http://www.scopus.com/inward/citedby.url?scp=84899865017&partnerID=8YFLogxK
U2 - 10.1515/pac-2013-1003
DO - 10.1515/pac-2013-1003
M3 - Article
AN - SCOPUS:84899865017
SN - 0033-4545
VL - 86
SP - 507
EP - 516
JO - Pure and Applied Chemistry
JF - Pure and Applied Chemistry
IS - 4
ER -