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Hiba Shihab Ahmed Hiba.s.ahmed@uodiyala.edu.iq
Mostefe Mostefe Khalid Mohammed mostafa.khalid.mohammed@uodiyala.edu.iq
Noor Hatem Khorsheed nour_hatem_enge@uodiyala.edu.iq
Eman Mudher Esmail mostafa.khalid.mohammed@uodiyala.edu.iq


Abstract

Due to the unique properties of a heterocyclic compound, it gained attention in the field of materials science. This study aims to provide a comprehensive synthesis of new co-polymers containing 1,3,4-thiadiazole. For this, a thorough search of electronic databases was conducted to identify relevant articles published from 2010 to 2021, using appropriate keywords and inclusion criteria. The selected studies were critically evaluated, and data was extracted and synthesized. The review includes a discussion of the various approaches used to prepare copolymers containing 1,3,4-thiadiazole, such as oxidative polymerization, electrochemical polymerization, and other methods. The properties and applications of the synthesized copolymers were also analyzed, including their thermal stability, electrical conductivity, and optical properties. The review concludes with an outlook on the prospects of co-polymers containing 1,3,4-thiadiazole and their potential applications in various fields, such as optoelectronics, sensors, and energy storage devices. The findings provide a valuable resource for researchers and engineers interested in the synthesis and properties of co-polymers containing 1,3,4-Thiadiazole.

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How to Cite
Shihab Ahmed, H., Mostefe Khalid Mohammed, M., Hatem Khorsheed, N., & Mudher Esmail, E. (2024). Review On Systematic Mapping Study For Synthesis Of Polymers Containing 1,3,4 Thiadiazole. Al-Kitab Journal for Pure Sciences, 9(01), 14–33. https://doi.org/10.32441/kjps.09.01.p2
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Review Article

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Quek JY, Zhu Y, Roth PJ, Davis TP, Lowe AB. RAFT Synthesis and aqueous solution behavior of novel pH-and thermo-responsive (co) polymers derived from reactive poly (2-vinyl-4, 4-dimethylazlactone) scaffolds. Macromolecules. 2017 Sep 24;46(18):7290-302.

Quek JY, Roth PJ, Evans RA, Davis TP, Lowe AB. Reversible addition–fragmentation chain transfer synthesis of amidine‐based, CO2‐responsive homo and AB diblock (Co) polymers comprised of histamine and their gas‐triggered self‐assembly in water. Journal of Polymer Science Part A: Polymer Chemistry. 2015 Jan 15;51(2):394-404.

Bhebhe MN, De Eulate EA, Pei Y, Arrigan DW, Roth PJ, Lowe AB. Reactive Conjugated Polymers: Synthesis, Modification, and Electrochemical Properties of Polypentafluorophenylacetylene (Co) Polymers. Macromolecular Rapid Communications. 2017 Jan;38(2):1600450.

Zhu Y, Noy JM, Lowe AB, Roth PJ. The synthesis and aqueous solution properties of sulfobutylbetaine (co) polymers: comparison of synthetic routes and tuneable upper critical solution temperatures. Polymer Chemistry. 2015;6(31):5705-18.

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Ghosh NG, Sarkar A, Zade SS. The type-II nn inorganic/organic nano-heterojunction of Ti3+ self-doped TiO2 nanorods and conjugated co-polymers for photoelectrochemical water splitting and photocatalytic dye degradation. Chemical Engineering Journal. 2021 Mar 1;407:127227.

Michálek J, Abbrent S, Musil M, Kovářová J, Hodan J, Dybal J. New type of gel polymer electrolytes based on selected methacrylates and their characteristics. Part II. Fluorinated Co-polymers. Electrochimica Acta. 2016 Aug 1;208:211-24.

Gomez I, Mantione D, Leonet O, Blazquez JA, Mecerreyes D. Hybrid sulfur− selenium co‐polymers as cathodic materials for lithium batteries. ChemElectroChem. 2018 Jan 12;5(2):260-5.

Lebedeva OV, Pozhidaev YN, Sipkina EI. The synthesis and properties of copolymers based on N-vinylpyrazole. International Polymer Science and Technology. 2015 Apr;42(4):27-32.

Salikhov RB, Biglova YN, Mullagaliev IN, Salikhov TR, Mustafin AG. Functionalized polyanilines: influence of the surface morphology on the electrophysical and sensory properties of thin films based on them. Letters on Materials. 2021 May 1;11(2):140-5.

Venkatesan S, Obadja N, Chang TW, Chen LT, Lee YL. Performance improvement of gel-and solid-state dye-sensitized solar cells by utilization the blending effect of poly (vinylidene fluoride-co-hexafluropropylene) and poly (acrylonitrile-co-vinyl acetate) co-polymers. Journal of Power Sources. 2015 Dec 5;268:77-81.

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