TY - JOUR
T1 - Intrinsic Fluorescence Regulation of Aliphatic Hyperbranched Polyphosphate Esters via Steric Hindrance Reduction
AU - Bai, Lihua
AU - Ge, Xiaoqian
AU - Deng, Shenghe
AU - Zhao, Shunsheng
AU - Yang, Hui
AU - Li, Juanmin
AU - Yan, Hongxia
AU - Liu, Xiangrong
N1 - Publisher Copyright:
© 2026 American Chemical Society
PY - 2026/5/28
Y1 - 2026/5/28
N2 - Unconventional fluorescent polymers are attracting increasing attention due to their unique optical properties and broad application potential. To investigate their fluorescence behavior, a series of aliphatic hyperbranched polyphosphate esters exhibiting unconventional fluorescence were synthesized in this study. Experimental and theoretical calculation results revealed that inter/intramolecular hydrogen bonds facilitated molecular aggregation and enhanced the n−π interaction between oxygen and P═O groups. These reinforced n−π interactions promoted spatial electronic communication, thereby generating intrinsic fluorescence. Moreover, reducing the steric hindrance between functional groups may have enhanced the spatial electronic communication, which is likely associated with stronger fluorescence intensity and longer emission wavelengths. The obtained polymers were successfully applied in ion sensing and the fabrication of fluorescent hydrogels. Therefore, this work not only provides crucial insights into the origin of unconventional fluorescence but also offers an efficient strategy for developing high-performance unconventional fluorescent polymers.
AB - Unconventional fluorescent polymers are attracting increasing attention due to their unique optical properties and broad application potential. To investigate their fluorescence behavior, a series of aliphatic hyperbranched polyphosphate esters exhibiting unconventional fluorescence were synthesized in this study. Experimental and theoretical calculation results revealed that inter/intramolecular hydrogen bonds facilitated molecular aggregation and enhanced the n−π interaction between oxygen and P═O groups. These reinforced n−π interactions promoted spatial electronic communication, thereby generating intrinsic fluorescence. Moreover, reducing the steric hindrance between functional groups may have enhanced the spatial electronic communication, which is likely associated with stronger fluorescence intensity and longer emission wavelengths. The obtained polymers were successfully applied in ion sensing and the fabrication of fluorescent hydrogels. Therefore, this work not only provides crucial insights into the origin of unconventional fluorescence but also offers an efficient strategy for developing high-performance unconventional fluorescent polymers.
UR - https://www.scopus.com/pages/publications/105040765030
U2 - 10.1021/acs.jpclett.6c01030
DO - 10.1021/acs.jpclett.6c01030
M3 - 快报
C2 - 42118978
AN - SCOPUS:105040765030
SN - 1948-7185
VL - 17
SP - 5983
EP - 5989
JO - Journal of Physical Chemistry Letters
JF - Journal of Physical Chemistry Letters
IS - 21
ER -