Synthesis and characterization of poly(3‐thiophene acetic acid) upon binding by cationic groups

Author:

Linh Nguyen Ngoc1,Thi Tran Minh23,Linh Duong Khanh4,Huong Vu Thi4,Hung Ha Manh5,Oanh Doan Thi Yen6,Trung Vu Quoc4

Affiliation:

1. Faculty of Pharmacy Thanh Do University of Education Kim Chung, Hoai Duc Hanoi 10000 Viet Nam

2. Institute for Theoretical and Applied Research Duy Tan University, 01 Phung Chi Kien, Cau Giay Hanoi 10000 Viet Nam

3. Faculty of Natural Sciences Duy Tan University 254 Nguyen Van Linh Da Nang 55000 Viet Nam

4. Faculty of Chemistry Hanoi National University of Education 136 Xuan Thuy, Cau Giay Hanoi 10000 Viet Nam

5. Faculty of General Education Hanoi University of Mining and Geology Duc Thang, Bac Tu Liem Hanoi 10000 Viet Nam

6. Publishing House for Science and Technology, Vietnam Academy of Science and Technology 18 Hoang Quoc Viet, Cau Giay Hanoi 10000 Viet Nam

Abstract

AbstractStructure, surface properties and morphology of a regioirregular conjugated poly(3‐thiophene acetic acid) (PTAA) and four polyelectrolytes based on PTAA with various cations were studied by using FT‐IR, 1H‐NMR spectroscopy and SEM. The properties of PTAA and its polyelectrolytes depend on the unique combination of a hydrophobic backbone and hydrophilic ionic side groups. The thermal stability, fluorescence and conductivity properties were investigated. These polymers exhibited fluorescence emissions at about 565 nm characterized for the π‐conjugated polythiophene. Undoped polymers have a better conductivity than previous polymers.

Publisher

Wiley

Reference36 articles.

1. Synthesis and characterization of polythiophenes from hydrazone derivatives sidegroups;Vu Q. T.;Vietnam J. Chem.,2016

2. Conjugated Polyelectrolytes: Synthesis and Applications

3. Conjugated Polyelectrolytes: Synthesis, Photophysics, and Applications

4. Synthesis of polythiophene containing heterocycle on the side chain: A review

5. Fluorescent properties of some polythiophenes synthesized from 2‐(thiophen‐3‐yl)acetohydrazide and acetophenone;Nguyen N. L.;Vietnam J. Chem.,2020

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