LI Xiao-yan, CHEN Xin, HOU Peng-fei, WEI Ying, XIE Ling-hai, HUANG Wei. The "Huang-Xie Method" for the Low-cost Synthesis of Spiro[fluorene-9, 9'-xanthene] (SFX) as the Versatile Unit of Organic Semiconductors. [J]. Polymer Bulletin 36(12):1591-1597(2023)
DOI:
LI Xiao-yan, CHEN Xin, HOU Peng-fei, WEI Ying, XIE Ling-hai, HUANG Wei. The "Huang-Xie Method" for the Low-cost Synthesis of Spiro[fluorene-9, 9'-xanthene] (SFX) as the Versatile Unit of Organic Semiconductors. [J]. Polymer Bulletin 36(12):1591-1597(2023) DOI: 10.14028/j.cnki.1003-3726.2023.12.001.
The "Huang-Xie Method" for the Low-cost Synthesis of Spiro[fluorene-9, 9'-xanthene] (SFX) as the Versatile Unit of Organic Semiconductors
9'-xanthene] (SFX) is one of the versatile molecular building blocks of organic/polymer semiconductors
which is widely applied in the construction of luminescent
charge transport and trapping materials in organic optoelectronics. In the early stage
SFX without any substituent could only be synthesized by multi-step o-halobiaryl method. In 2006
Wei Huang and Ling-hai Xie (Huang-Xie) fortuitously discovered the one-pot synthesis of SFXs
which effectively solved the problem of multisteped synthesisof building blocks in organic non-plane semiconductor
and further expanded the scope of substrates of azafluorene and aromatic amine compounds
finally coined as the "Huang-Xie method" of SFXs. This method has the advantages of simple steps
high yield and low cost
which is highly highlighted by chemists in MIT and named by Japanese scientists
and extensively adopted by the peers for the design of steric semiconductors. The industry has successfully achieved the mass production of SFXs by virtue of the high efficiency of the Huang-Xie method. Up to date
SFX has been widely exploited in academia and industry by replacing 9
9'-spirobifluorene (SBF)
especially in the organic light-emitting diode (OLED) display technology from LG Company in South Korea.