A Review of Investigations and Applications of Biocides in Nanomaterials and Nanotechnologies

Author:

Issayeva Assem12,Sharipova Altynay2,Aidarova Saule1,Madybekova Galiya3,Katona Jaroslav4ORCID,Turganbay Seitzhan1,Miller Reinhard5ORCID

Affiliation:

1. “One Belt, On Road” Petroleum Engineering Institute, Kazakh-British Technical University, 050000 Almaty, Kazakhstan

2. Mining and Metallurgical Institute, Satbayev University, 050013 Almaty, Kazakhstan

3. Faculty of Natural Sciences, South Kazakhstan Pedagogical University Named after Ozbekali Zhanibekov, 160012 Shymkent, Kazakhstan

4. Faculty of Technology Novi Sad, University of Novi Sad, Bulevar Cara Lazara 1, 21000 Novi Sad, Serbia

5. Institute of Soft Matter Physics, Technical University of Darmstadt, 64289 Darmstadt, Germany

Abstract

In recent years, the development of nanomaterials with biocidal properties has received considerable attention due to their potential applications in various industries, including food, medicine, and cultural heritage preservation. The growing demand for coatings with antibacterial properties has sparked interest from industrial sectors in exploring the incorporation of biocides into these materials. Coatings are prone to microbial growth, which can cause damage such as cracking, discoloration, and staining. To combat these problems, the integration of biocides into coatings is a crucial strategy. Biocide-embedded nanomaterials offer numerous advantages, including high efficiency in small quantities, ease of application, good chemical stability, low toxicity, and non-bioaccumulation. Encapsulated nanobiocides are particularly attractive to the agro-industry, because they can be less toxic than traditional biocides while still effectively controlling microbial contamination. To fully exploit the benefits of nanobiocides, future research should focus on optimizing their synthesis, formulation, and delivery methods. The purpose of this review is to summarize the current status of biocide nanomaterials, discuss potential future research directions, and highlight research methods, the development of new forms of nanomaterials, and studies of their physico-chemical properties. Biocide nanocapsules of DCOIT (4,5-Dichloro-2-octyl-2H-isothiazol-3-one) are chosen as an example to illustrate the research pathways.

Funder

Committee of Science of the Ministry of Science and Higher Education of the Republic of Kazakhstan

Publisher

MDPI AG

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