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二氧化硅工程化纳米容器在低离子强度和高离子强度介质中的表征与行为

Characterization and Behaviour of Silica Engineered Nanocontainers in Low and High Ionic Strength Media.

作者信息

Ferreira Violeta, Figueiredo Joana, Martins Roberto, Sushkova Alesia, Maia Frederico, Calado Ricardo, Tedim João, Loureiro Susana

机构信息

CESAM-Centre for Environmental and Marine Studies & Department of Biology, University of Aveiro, 3810-193 Aveiro, Portugal.

CICECO-Aveiro Institute of Materials & Department of Materials and Ceramic Engineering, University of Aveiro, 3810-193 Aveiro, Portugal.

出版信息

Nanomaterials (Basel). 2023 May 26;13(11):1738. doi: 10.3390/nano13111738.

Abstract

Mesoporous silica engineered nanomaterials are of interest to the industry due to their drug-carrier ability. Advances in coating technology include using mesoporous silica nanocontainers (SiNC) loaded with organic molecules as additives in protective coatings. The SiNC loaded with the biocide 4,5-dichloro-2-octyl-4-isothiazolin-3-one (DCOIT), i.e., SiNC-DCOIT, is proposed as an additive for antifouling marine paints. As the instability of nanomaterials in ionic-rich media has been reported and related to shifting key properties and its environmental fate, this study aims at understanding the behaviour of SiNC and SiNC-DCOIT in aqueous media with distinct ionic strengths. Both nanomaterials were dispersed in (i) low- (ultrapure water-UP) and (ii) high- ionic strength media-artificial seawater (ASW) and f/2 medium enriched in ASW (f/2 medium). The morphology, size and zeta potential (ζP) of both engineering nanomaterials were evaluated at different timepoints and concentrations. Results showed that both nanomaterials were unstable in aqueous suspensions, with the initial ζP values in UP below -30 mV and the particle size varying from 148 to 235 nm and 153 to 173 nm for SiNC and SiNC-DCOIT, respectively. In UP, aggregation occurs over time, regardless of the concentration. Additionally, the formation of larger complexes was associated with modifications in the ζP values towards the threshold of stable nanoparticles. In ASW, SiNC and SiNC-DCOIT formed aggregates (<300 nm) independently of the time or concentration, while larger and heterogeneous nanostructures (>300 nm) were detected in the f/2 medium. The pattern of aggregation detected may increase engineering nanomaterial sedimentation rates and enhance the risks towards dwelling organisms.

摘要

介孔二氧化硅工程纳米材料因其药物载体能力而受到该行业的关注。涂层技术的进展包括使用负载有机分子的介孔二氧化硅纳米容器(SiNC)作为防护涂层中的添加剂。负载杀生剂4,5-二氯-2-辛基-4-异噻唑啉-3-酮(DCOIT)的SiNC,即SiNC-DCOIT,被提议作为防污海洋涂料的添加剂。由于已报道纳米材料在富含离子的介质中不稳定,且这与关键性能的变化及其环境归宿有关,本研究旨在了解SiNC和SiNC-DCOIT在具有不同离子强度的水性介质中的行为。两种纳米材料都分散在(i)低离子强度介质(超纯水-UP)和(ii)高离子强度介质-人工海水(ASW)以及富含ASW的f/2培养基(f/2培养基)中。在不同时间点和浓度下评估了两种工程纳米材料的形态、尺寸和zeta电位(ζP)。结果表明,两种纳米材料在水性悬浮液中都不稳定,在UP中初始ζP值低于-30 mV,SiNC和SiNC-DCOIT的粒径分别从148至235 nm和153至173 nm变化。在UP中,无论浓度如何,随着时间的推移都会发生聚集。此外,更大复合物的形成与ζP值向稳定纳米颗粒阈值的变化有关。在ASW中,SiNC和SiNC-DCOIT独立于时间或浓度形成聚集体(<300 nm),而在f/2培养基中检测到更大且不均匀的纳米结构(>300 nm)。检测到的聚集模式可能会增加工程纳米材料的沉降速率,并增加对栖息生物的风险。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/95d5/10254789/b74939bdd59a/nanomaterials-13-01738-g001.jpg

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