Synthesis and Application of Hyperbranched Polymers

Authors

  • Yiling Liu

DOI:

https://doi.org/10.54097/9sv45905

Keywords:

Hyperbranched polymers, polycondensation, self-condensation, ring-opening polymerization, synthesis methods.

Abstract

Hyperbranched polymers have the special structure caused by different types of synthetic procedures such as single monomer methodology and double monomer methodology. Under the process of single monomer methodology, polycondensation, self-condensation, and ring-opening polymerization will be introduced in this paper, from the traditional to recent methods. From different synthetic methodologies, hyperbranched polymers have specialized properties to fulfill applications in various fields. They can be used in oil recovery for petroleum engineering and drug delivery for biomedicine field. As the synthesis methods become more developed, the properties of hyperbranched polymers can match the application requirements in more refined way, which gives the prospect of enhancing the efficiency and accuracy use in different engineering fields. It is meaningful to keep the research on hyperbranched polymers to let them have more usage in many fields of engineering, which can benefit human beings’ life from many aspects that causes influence of people’s daily life.

Downloads

Download data is not yet available.

References

Fréchet J and Tomalia A 2001 West Sussex: Wiley.

Gao C and Yan D 2004 Prog. Polym. Sci. 29 183–275.

Tobias K, Holger F 2020 Hyperbranched polymer architectures: From Flory's AB(f-1) polycondensates to controlled structures Polymer. Volume 211. (Preprint gr-qc/123113).

Odian G. 1991 Principles for polymerization, 3rd ed. (New York: Wiley) p 125–32.

Kricheldorf R, Zang Z, Schwarx G. 1982 New polymer syntheses. 6. Linear and branched poly (3-hydroxy-benzoates). 23: 1821–1829.

Kim H, Webster W 1988 Hyperbranched polyphenylenes. 29 (2): 310–1.

Fréchet J, Henmi M, Gitsov I, Aoshima S, Leduc M and Grubbs RB 1995 SCVP: an approach to dendritic materials. 269: 1080–1083.

Zhang Y and Yu W 2022 Front. Energy Res. 10: 894096.

Gao C, Yan D 2001 Polyaddition of B2 and BB2 type monomers to A2 type monomer. 1. Synthesis of highly branched copoly (sulfone-amine) s. Macromolecules 34: 156–161.

Wanbin Z, Yanmeng W, Shaowu W, Zehua G, Ce Z, Xiuzhong Z and Guanghua Z 2022 Journal of Molecular Liquids. 355 118937.

Higashihara T, Segawa, Y and Sinananwanich, W 2012 Polym J. 44 14–29.

Mu B, Liu T and Tian W 2019 Macromol. Rapid Commun. 40 1800471.

Voit I 1995 Acta Polym. 46 87–99.

Malmstrom E, Johansson M and Hult A 1995 Hyperbranched aliphatic polyesters Macromolecules. 28 1698–1703.

Zhang Y and Yu W 2022 Front. Energy Res. 10: 894096.

Li X, Shi L, Li H and Yuan Z 2018 J. Petroleum Sci. Eng. 166, 25–32.

Sun Y, Lu F, Yang H and Lu C 2019 Nanoscale 11 27 12889–12897.

Sun H, Lei X, Shen B, Zhang H, Liu J and Li G 2018 J. Energy Chem. 27 (4), 1198–1207.

Zheng C, Fu H and Duan W 2021 J. Petroleum Sci. Eng. 196.

Cuneo T and Gao H 2020 WIREs Nanomed nanobiotechnol. e1640.

Wang W, Ma J, Jin F and Liao J 2017 Experimental and Therapeutic Medicine. 14 3105–3111.

Zhuang Y, Su Y, Peng Y, Wang D, Deng H, Xi X and Lu Y 2014 Biomacromolecules. 15 1408–1418.

Liu G, Zhang G, Hu J, Wang X, Zhu M and Liu S 2015 Journ. of the Americ. Chem. Soc. 137 11645–11655.

Hu X, Liu G, Li Y, Wang X and Liu S 2015 Journ. of the Americ. Chem. Soc. 137 362–368.

Zhao L, Wu X, Wang X, Duan C, Wang H, Punjabi A and Han G 2017 ACS Mac. Letters. 6 700–704.

Downloads

Published

27-02-2024

How to Cite

Liu, Y. (2024). Synthesis and Application of Hyperbranched Polymers. Highlights in Science, Engineering and Technology, 84, 50-57. https://doi.org/10.54097/9sv45905