TY - JOUR
T1 - Charge Mobility Enhancement for Conjugated DPP-Selenophene Polymer by Simply Replacing One Bulky Branching Alkyl Chain with Linear One at Each DPP Unit
AU - Wang, Zhijie
AU - Liu, Zitong
AU - Ning, Lu
AU - Xiao, Mingfei
AU - Yi, Yuanping
AU - Cai, Zhengxu
AU - Sadhanala, Aditya
AU - Zhang, Guanxin
AU - Chen, Wei
AU - Sirringhaus, Henning
AU - Zhang, Deqing
N1 - Publisher Copyright:
© 2018 American Chemical Society.
PY - 2018/5/8
Y1 - 2018/5/8
N2 - We demonstrate a simple, but efficient, approach for improving the semiconducting performances of DPP-based conjugated D-A polymers. This approach involves the replacement of one bulky branching alkyl chain with the linear one at each DPP unit in regular polymer PDPPSe-10 and PDPPSe-12. The UV-vis absorption, Raman spectra, PDS data, and theoretical calculations support that the replacement of bulky branching chains with linear ones can weaken the steric hindrance, and accordingly conjugated backbones become more planar and rigid. GIWAXS data show that the incorporation of linear alkyl chains as in PDPPSe-10 and PDPPSe-12 is beneficial for side-chain interdigitation and interchain dense packing, leading to improvement of interchain packing order and thin film crystallinity by comparing with PDPPSe, which contains branching alkyl chains. On the basis of field-effect transistor (FET) studies, charge mobilities of PDPPSe-10 and PDPPSe-12 are remarkably enhanced. Hole mobilities of PDPPSe-10 and PDPPSe-12 in air are boosted to 8.1 and 9.4 cm2 V-1 s-1, which are about 6 and 7 times, respectively, than that of PDPPSe (1.35 cm2 V-1 s-1). Furthermore, both PDPPSe-10 and PDPPSe-12 behave as ambipolar semiconductors under a nitrogen atmosphere with increased hole/electron mobilities up to 6.5/0.48 cm2 V-1 s-1 and 7.9/0.79 cm2 V-1 s-1, respectively.
AB - We demonstrate a simple, but efficient, approach for improving the semiconducting performances of DPP-based conjugated D-A polymers. This approach involves the replacement of one bulky branching alkyl chain with the linear one at each DPP unit in regular polymer PDPPSe-10 and PDPPSe-12. The UV-vis absorption, Raman spectra, PDS data, and theoretical calculations support that the replacement of bulky branching chains with linear ones can weaken the steric hindrance, and accordingly conjugated backbones become more planar and rigid. GIWAXS data show that the incorporation of linear alkyl chains as in PDPPSe-10 and PDPPSe-12 is beneficial for side-chain interdigitation and interchain dense packing, leading to improvement of interchain packing order and thin film crystallinity by comparing with PDPPSe, which contains branching alkyl chains. On the basis of field-effect transistor (FET) studies, charge mobilities of PDPPSe-10 and PDPPSe-12 are remarkably enhanced. Hole mobilities of PDPPSe-10 and PDPPSe-12 in air are boosted to 8.1 and 9.4 cm2 V-1 s-1, which are about 6 and 7 times, respectively, than that of PDPPSe (1.35 cm2 V-1 s-1). Furthermore, both PDPPSe-10 and PDPPSe-12 behave as ambipolar semiconductors under a nitrogen atmosphere with increased hole/electron mobilities up to 6.5/0.48 cm2 V-1 s-1 and 7.9/0.79 cm2 V-1 s-1, respectively.
UR - http://www.scopus.com/inward/record.url?scp=85046379187&partnerID=8YFLogxK
U2 - 10.1021/acs.chemmater.8b01007
DO - 10.1021/acs.chemmater.8b01007
M3 - Article
AN - SCOPUS:85046379187
SN - 0897-4756
VL - 30
SP - 3090
EP - 3100
JO - Chemistry of Materials
JF - Chemistry of Materials
IS - 9
ER -