Non‐planar polyimides with monomer containing four triphenylamines for near‐infrared electrochromism and TNP detection

Author:

Ma Yufan1,Xia Shixuan1,Zhai Minghao1,Zhang Ce1,Hong Tianjiao1,Zhang Baixin1,Cai Wan‐an1,Niu Haijun1ORCID,Wang Wen2

Affiliation:

1. Key Laboratory of Functional Inorganic Material, Ministry of Education, Department of Macromolecular Materials and Engineering, School of Chemical, Chemical Engineering and Materials Heilongjiang University Harbin People's Republic of China

2. School of Materials Science and Engineering Harbin Institute of Technology Harbin People's Republic of China

Abstract

AbstractBy using triphenylamine (TPA) with a propeller structure connected to the planar fluorene unit as monomer, three novel polyimide (PI)s were prepared through chemical imidization of N,N′‐(9,9‐bis(4‐(diphenylamino) phenyl)‐9H‐fluorene‐2,7‐diyl)‐bis(N‐(4‐methoxyphenyl) benzene‐1,4‐diamine) (TPAF‐NH2) with three kinds of dianhydrides. The three dimensional configurations are designed to decrease molecular stacking rising from strong imide bond, and for faster ion transport in cavity of PIs. All the three PIs have good performance of electrochromic(EC) and sensor. With the voltage increasing from 0 to 1.2 V, the color of P2 film changes from original yellow to red to blue with the response time of only 2.3 s (colored time [tc]) and 2.8 s (bleached time [tb]). The coloring efficiency (CE) of P2 reaches 310 cm2 C−1, with optical contrast (ΔT) of 54%. Especially, the electroactivity of P3 does not decrease significantly after 6000 s cycle. Additionally, there are dual‐band in near‐infrared (NIR) area after the PI being oxidized. P1 with photoluminescence (PL) quantum efficiency (φPL) of 48% can detect trinitrophenol (TNP) effectively. The novel PIs have promising prospect in NIR EC and TNP detection devices.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Materials Chemistry,Polymers and Plastics,Surfaces, Coatings and Films,General Chemistry

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