Volume 138, Issue 32 50779
ARTICLE

Synthesis and optimization of dopamine hydrochloride functionalized palygorskite and their application in protective coatings on water saturated surface of concrete

Dewen Sun

Dewen Sun

State Key Laboratory of High Performance Civil Engineering Materials, Jiangsu Sobute New Materials Co., Ltd, Nanjing, P. R. China

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Yingjie Ma

Corresponding Author

Yingjie Ma

State Key Laboratory of High Performance Civil Engineering Materials, Jiangsu Sobute New Materials Co., Ltd, Nanjing, P. R. China

Correspondence

Yingjie Ma, State Key Laboratory of High Performance Civil Engineering Materials, Jiangsu Sobute New Materials Co., Ltd, Nanjing 211103, P. R. China.

Email: [email protected]

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Liqun Lu

Liqun Lu

R & D Center, Jiangsu Fengcai Building Materials (Group) Co., Ltd., Nanjing, P. R. China

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Shuai Qi

Shuai Qi

State Key Laboratory of High Performance Civil Engineering Materials, Jiangsu Sobute New Materials Co., Ltd, Nanjing, P. R. China

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Pingping Hou

Pingping Hou

State Key Laboratory of High Performance Civil Engineering Materials, Jiangsu Sobute New Materials Co., Ltd, Nanjing, P. R. China

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Bo Li

Bo Li

State Key Laboratory of High Performance Civil Engineering Materials, Jiangsu Sobute New Materials Co., Ltd, Nanjing, P. R. China

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Qianping Ran

Qianping Ran

Jiangsu Key Laboratory of Construction Materials, School of Materials Science and Engineering, Southeast University, Nanjing, P. R. China

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Jiaping Liu

Jiaping Liu

Jiangsu Key Laboratory of Construction Materials, School of Materials Science and Engineering, Southeast University, Nanjing, P. R. China

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Jinxiang Hong

Jinxiang Hong

State Key Laboratory of High Performance Civil Engineering Materials, Jiangsu Sobute New Materials Co., Ltd, Nanjing, P. R. China

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First published: 05 April 2021
Citations: 3

Funding information: The National Natural Science Foundation of China (CN), Grant/Award Number: 52008188; The National Natural Science Foundation of China-Joint Fund of Shandong Province, Grant/Award Number: U170620242; The National Science and Technology Program during the Thirteenth Five-year Plan Period (CN), Grant/Award Number: 2017YFB0309904; The National Science Fund for Distinguished Young Scholars, Grant/Award Number: 51825203

Abstract

The synthesis process of dopamine hydrochloride functionalized palygorskite (Pal) nanoparticles (Pal@PDA) is optimized by adjusting the mass ratio of them. The optimal preparation technology of the Pal@PDA is determined by scanning electron microscopy and comparing the adhesive strength between the biomimetic protective coatings and dry and water saturated concrete surface. When the mass ratio of dopamine hydrochloride to Pal is 1:4, the prepared Pal@PDA does not contain excess polydopamine (PDA) nanoparticles and the coatings incorporating the Pal@PDA have the highest adhesive strength on dry and water saturated concrete surface at the same conditions. Compared with the pure epoxy primer, the adhesive strength between the epoxy primer incorporating 5 wt% Pal@PDA and the water saturated concrete surface increases by 25.69% (from 3.282 to 4.125 MPa). Furthermore, the Pal@PDA is embedded into pure epoxy resin to prepare the biomimetic resin composites, the tensile strength and compressive strength of the composites incorporating 5 wt% Pal@PDA are 91.20% and 34.77% higher than that of pure epoxy resin, respectively. Further studies confirm that the active groups on the Pal@PDA surface form the stable covalent and non-covalent bonds with epoxy primer and the water saturated concrete surface, which is the major mechanism of improving interfacial adhesion.

CONFLICT OF INTEREST

The authors declare no potential conflict of interest.

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