TY - JOUR
T1 - A second-order nonlinear optical dendronized hyperbranched polymer containing isolation chromophores
T2 - achieving good optical nonlinearity and stability simultaneously
AU - Yang, Haitao
AU - Cheng, Ziyao
AU - Liu, Cheng
AU - Wu, Wenbo
AU - Zhang, Ke Nan
AU - Xu, Shengang
AU - Liu, Yingliang
AU - Cao, Shaokui
AU - Li, Zhen
N1 - Publisher Copyright:
© 2018, Science China Press and Springer-Verlag GmbH Germany, part of Springer Nature.
PY - 2018/5/1
Y1 - 2018/5/1
N2 - Large nonlinear optical (NLO) coefficient and good stability, two essential factors to evaluate second-order NLO materials, are difficult to be achieved in one molecule simultaneously. Herein, by utilizing the concept of “isolation chromophore”, “isolation group” and dendritic structure, a dendritic molecule D-NS and a dendronized hyperbranched polymer DHP-NS are prepared to investigate their structure-property relationship. For the small dendritic molecule D-NS, it exhibits a high d33 value of 140 pm/V. But this value can be easily dropped when the temperature is higher than 50 °C, which extremely limits its real application. After introducing D-NS into a dendronized hyperbranched polymer chains, the obtained DHP-NS also shows a high d33 value of 101 pm/V, but much better stability than D-NS. Even when its thin film was heated to 120 °C, no obvious decay can be observed in the d33 value of DHP-NS. This work demonstrates an effective strategy to realize both large NLO effect and good stability simultaneously.
AB - Large nonlinear optical (NLO) coefficient and good stability, two essential factors to evaluate second-order NLO materials, are difficult to be achieved in one molecule simultaneously. Herein, by utilizing the concept of “isolation chromophore”, “isolation group” and dendritic structure, a dendritic molecule D-NS and a dendronized hyperbranched polymer DHP-NS are prepared to investigate their structure-property relationship. For the small dendritic molecule D-NS, it exhibits a high d33 value of 140 pm/V. But this value can be easily dropped when the temperature is higher than 50 °C, which extremely limits its real application. After introducing D-NS into a dendronized hyperbranched polymer chains, the obtained DHP-NS also shows a high d33 value of 101 pm/V, but much better stability than D-NS. Even when its thin film was heated to 120 °C, no obvious decay can be observed in the d33 value of DHP-NS. This work demonstrates an effective strategy to realize both large NLO effect and good stability simultaneously.
KW - dendritic structure
KW - dendronized hyperbranched polymer
KW - nonlinear optical
UR - http://www.scopus.com/inward/record.url?scp=85042618001&partnerID=8YFLogxK
U2 - 10.1007/s11426-017-9207-4
DO - 10.1007/s11426-017-9207-4
M3 - 文章
AN - SCOPUS:85042618001
SN - 1674-7291
VL - 61
SP - 584
EP - 591
JO - Science China Chemistry
JF - Science China Chemistry
IS - 5
ER -