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      An overview of nanoemulsion characterization via atomic force microscopy

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          Atomic Force Microscope

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            Nanoemulsions: formation, properties and applications.

            Nanoemulsions are kinetically stable liquid-in-liquid dispersions with droplet sizes on the order of 100 nm. Their small size leads to useful properties such as high surface area per unit volume, robust stability, optically transparent appearance, and tunable rheology. Nanoemulsions are finding application in diverse areas such as drug delivery, food, cosmetics, pharmaceuticals, and material synthesis. Additionally, they serve as model systems to understand nanoscale colloidal dispersions. High and low energy methods are used to prepare nanoemulsions, including high pressure homogenization, ultrasonication, phase inversion temperature and emulsion inversion point, as well as recently developed approaches such as bubble bursting method. In this review article, we summarize the major methods to prepare nanoemulsions, theories to predict droplet size, physical conditions and chemical additives which affect droplet stability, and recent applications.
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              Nanoemulsions versus microemulsions: terminology, differences, and similarities

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                Author and article information

                Journal
                Critical Reviews in Food Science and Nutrition
                Critical Reviews in Food Science and Nutrition
                Informa UK Limited
                1040-8398
                1549-7852
                June 29 2022
                February 05 2021
                June 29 2022
                : 62
                : 18
                : 4908-4928
                Affiliations
                [1 ]Department of Food and Nutrition, University of Helsinki, Finland
                [2 ]Helsinki Institute of Sustainability Science (HELSUS), University of Helsinki, Finland
                Article
                10.1080/10408398.2021.1879727
                33543990
                3d0310bc-00a8-409a-8105-279d5efc7f15
                © 2022

                http://creativecommons.org/licenses/by/4.0/

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