Hollow natural rubber latex particles as bio-based alternative white pigment for coating applications

天然橡胶 涂层 颜料 高分子科学 材料科学 白色(突变) 化学 纳米技术 复合材料 有机化学 生物化学 基因
作者
Duangkamol Promlok,Kritayakorn Sonongbua,Mutita Wilepsuwan,Teeraporn Suteewong,Pramuan Tangboriboonrat
出处
期刊:Industrial Crops and Products [Elsevier]
卷期号:188: 115593-115593
标识
DOI:10.1016/j.indcrop.2022.115593
摘要

Due to the broad particle size distribution as well as non-spherical shape of natural rubber (NR) latex particles, the non-collapse hollow NR latex particles (HL-NRPs) with well-defined void structure were developed aiming to use as an eco-friendly white pigment/additive for coatings. These hybrid HL-NRPs were prepared via the seeded emulsion polymerization of methyl methacrylate/divinylbenzene/acrylic acid (MMA/DVB/AA) monomers on NR core particles in one-pot. Using cumene hydroperoxide (CHP)/tetraethylene pentamine (TEPA) as a redox initiator, the copolymerization occurred at the particle/water interface. Without seed removal, a single void inside NRP was in situ formed by the phase separation process. Hydrophobic and elastic NR became the inner wall which strengthened the HL particles. Whereas its indigenous stabilizers, i.e., proteins-lipids, allowed the osmosis from the aqueous medium to further expand the void. The proposed mechanism was illustrated using oleic acid (OA) as a model fatty acid for non-rubber substances. Since the multiple light scattering inside the hollow structure could enhance their refractive index, the optical performance of HL-NRPs as a low-density opacifying agent in poly(vinyl alcohol) matrix, was examined using UV-Vis spectroscopy . Results showed that the HL-NRPs-based films exhibited high blocking ability over UV and visible regions. Moreover, the HL-NRPs coated with chitosan (CS) enabled these nanocomposites to adsorb the formaldehyde vapor. For sustainable development, HL-NRPs/CS could potentially be a green alternative white pigment/additive for coatings. • Well-defined hollow structure was formed in natural rubber particle in one-pot. • Phase separation between rubber molecules and monomers determined hollow formation. • Void and asymmetrical shape attributed to hiding power and ultraviolet blocking. • Chitosan-coated hollow particles showed ability to adsorb formaldehyde vapor.
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