Hofmeister Effects Shine in Nanoscience

Abstract Hofmeister effects play a crucial role in nanoscience by affecting the physicochemical and biochemical processes. Thus far, numerous wonderful applications from various aspects of nanoscience have been developed based on the mechanism of Hofmeister effects, such as hydrogel/aerogel engineer...

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Main Author: Weichen Wei
Format: Article
Language:English
Published: Wiley 2023-08-01
Series:Advanced Science
Subjects:
Online Access:https://doi.org/10.1002/advs.202302057
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author Weichen Wei
author_facet Weichen Wei
author_sort Weichen Wei
collection DOAJ
description Abstract Hofmeister effects play a crucial role in nanoscience by affecting the physicochemical and biochemical processes. Thus far, numerous wonderful applications from various aspects of nanoscience have been developed based on the mechanism of Hofmeister effects, such as hydrogel/aerogel engineering, battery design, nanosynthesis, nanomotors, ion sensors, supramolecular chemistry, colloid and interface science, nanomedicine, and transport behaviors, etc. In this review, for the first time, the progress of applying Hofmeister effects is systematically introduced and summarized in nanoscience. It is aimed to provide a comprehensive guideline for future researchers to design more useful Hofmeister effects‐based nanosystems.
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spelling doaj.art-f94841332f634d769690b20c1ef11f652023-08-04T07:49:49ZengWileyAdvanced Science2198-38442023-08-011022n/an/a10.1002/advs.202302057Hofmeister Effects Shine in NanoscienceWeichen Wei0Department of Nanoengineering University of California San Diego La Jolla San Diego CA 92093 USAAbstract Hofmeister effects play a crucial role in nanoscience by affecting the physicochemical and biochemical processes. Thus far, numerous wonderful applications from various aspects of nanoscience have been developed based on the mechanism of Hofmeister effects, such as hydrogel/aerogel engineering, battery design, nanosynthesis, nanomotors, ion sensors, supramolecular chemistry, colloid and interface science, nanomedicine, and transport behaviors, etc. In this review, for the first time, the progress of applying Hofmeister effects is systematically introduced and summarized in nanoscience. It is aimed to provide a comprehensive guideline for future researchers to design more useful Hofmeister effects‐based nanosystems.https://doi.org/10.1002/advs.202302057Hofmeister effecthydrogel engineeringion‐responsive nanosystemsnanotechnologysupramolecular chemistry
spellingShingle Weichen Wei
Hofmeister Effects Shine in Nanoscience
Advanced Science
Hofmeister effect
hydrogel engineering
ion‐responsive nanosystems
nanotechnology
supramolecular chemistry
title Hofmeister Effects Shine in Nanoscience
title_full Hofmeister Effects Shine in Nanoscience
title_fullStr Hofmeister Effects Shine in Nanoscience
title_full_unstemmed Hofmeister Effects Shine in Nanoscience
title_short Hofmeister Effects Shine in Nanoscience
title_sort hofmeister effects shine in nanoscience
topic Hofmeister effect
hydrogel engineering
ion‐responsive nanosystems
nanotechnology
supramolecular chemistry
url https://doi.org/10.1002/advs.202302057
work_keys_str_mv AT weichenwei hofmeistereffectsshineinnanoscience