Influence of cellulose nanofibers on the behavior of Pickering emulsions. Part II: Thixotropy and dynamic-mechanical tests

Author:

Cui Shu-Ming12ORCID,Hashmi Saud3ORCID,Li Wen-Qiang1,Handschuh-Wang Stephan4ORCID,Zhu Cheng-Tian1,Wang Shi-Chang1,Yang Pian-Pian5,Zhu Guang-Ming1,Stadler Florian J.1ORCID

Affiliation:

1. College of Materials Science and Engineering, Shenzhen Key Laboratory of Polymer Science and Technology, Guangdong Research Center for Interfacial Engineering of Functional Materials, Nanshan District Key Laboratory for Biopolymers and Safety Evaluation, Shenzhen University 1 , Shenzhen 518055, China

2. South China Advanced Institute for Soft Matter Science and Technology, School of Emergent Soft Matter, South China University of Technology 2 , Guangzhou 510640, China

3. Department of Polymer & Petrochemical Engineering, NED University of Engineering & Technology 3 , Karachi, Sindh 75270, Pakistan

4. College of New Materials and New Energies, Shenzhen Technology University 4 , Shenzhen 518118, China

5. College of Management, Shenzhen University 5 , Shenzhen 518055, China

Abstract

Nonlinear rheology of Pickering emulsions is used to further investigate the nonlinear and unrecoverable transformation of inner structures, which is beyond the linear viscoelastic regime of tiny structural disturbances. Exploring various rheological methods plays a vital role in emulsion applications, such as simulating the macroscopic structural transformation between static and liquidlike flow states, strain overshoot, and regeneration for broken structures. According to our previous studies, cellulose nanofibers (CNFs) Pickering emulsions are a typical system for investigating polymer-based emulsions with the auxiliary surfactant [didodecyldimethylammonium bromide (DDAB)] for enhancing CNF absorption. To further study different rheological properties by varying CNF or DDAB contents, multiple interval thixotropic test, large amplitude oscillatory shear, and concentration-time-dependent superposition are employed to study the linear viscoelasticity and structural transformation of nonlinear range. This research was conducted based on the previous published works [Cui et al., Materials 15, 8285 (2022)] as a further characterization for the same sample series.

Funder

National Natural Science Foundation of China

National Key R&D Program of China

Shenzhen Fundamental Research Funds

Publisher

Society of Rheology

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