Nanostructured Polymer Membranes 2016
DOI: 10.1002/9781118831779.ch1
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Processing and Characterizations: State‐of‐the‐Art and New Challenges

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Cited by 2 publications
(1 citation statement)
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“…125,126 Some researchers have seen nanomembranes as molecular filters 127 or sensors for humidity in optical microcavity, 128 but many have noticed their immense ability in biomedical applications. 129 Scientists have paid a lot of attention to nanomembranes due to their unique properties such as low weight, high flexibility, robustness, adhesion strength, and, in some cases, transparency. [130][131][132] Therefore, they are able to be utilized in diverse bioengineering fields [133][134][135][136] such as designing sensors, 137,138 antimicrobial surfaces, 139,140 nanobiological reactors, 141 biomotors, 142 biointerfaces for cellular matrices, 143 and specially drug release devices 144,145 and tissue engineering.…”
Section: Polymeric Nanomembranesmentioning
confidence: 99%
“…125,126 Some researchers have seen nanomembranes as molecular filters 127 or sensors for humidity in optical microcavity, 128 but many have noticed their immense ability in biomedical applications. 129 Scientists have paid a lot of attention to nanomembranes due to their unique properties such as low weight, high flexibility, robustness, adhesion strength, and, in some cases, transparency. [130][131][132] Therefore, they are able to be utilized in diverse bioengineering fields [133][134][135][136] such as designing sensors, 137,138 antimicrobial surfaces, 139,140 nanobiological reactors, 141 biomotors, 142 biointerfaces for cellular matrices, 143 and specially drug release devices 144,145 and tissue engineering.…”
Section: Polymeric Nanomembranesmentioning
confidence: 99%