Book LibraryScience & NatureTowards an understanding of induced-charge electrokinetics at large applied voltages in concentrated solutions
Towards an understanding of induced-charge electrokinetics at large applied voltages in concentrated solutions Book Cover

Towards an understanding of induced-charge electrokinetics at large applied voltages in concentrated solutions Book Summary

by Martin Z. Bazant; Mustafa Sabri Kilic; Brian D. Storey; Armand Ajdari
18.0 minutes

This page condenses Towards an understanding of induced-charge electrokinetics at large applied voltages in concentrated solutions into a quick summary with author background, historical context, and chapter takeaways so you can understand Martin Z. Bazant; Mustafa Sabri Kilic; Brian D. Storey; Armand Ajdari's core ideas faster.

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Title
Towards an understanding of induced-charge electrokinetics at large applied voltages in concentrated solutions
Author
Martin Z. Bazant; Mustafa Sabri Kilic; Brian D. Storey; Armand Ajdari
Reading Time
18.0 minutes
Category
Science & Nature
Audio
Not available

Quick Answers

Start with the most useful search-style answers about Towards an understanding of induced-charge electrokinetics at large applied voltages in concentrated solutions.

Who is Martin Z. Bazant; Mustafa Sabri Kilic; Brian D. Storey; Armand Ajdari?

Martin Z. Bazant是麻省理工学院化学工程系的教授,Mustafa Sabri Kilic是麻省理工学院数学系的成员,Brian D. Storey是富兰克林W. Olin工程学院的教授,Armand Ajdari是CNRS UMR Gulliver 7083, ESPCI的研究员。

Who should read Towards an understanding of induced-charge electrokinetics at large applied voltages in concentrated solutions?

本文的目标读者包括化学工程师、物理学家、材料科学家以及对微流控和纳米流体学感兴趣的研究人员。特别是那些关注非线性电动现象、电化学和界面科学的专业人士,以及需要在高电压和高浓度条件下理解和应用电动现象的工程师和科学家。

What is the background behind Towards an understanding of induced-charge electrokinetics at large applied voltages in concentrated solutions?

电动现象的研究历史悠久,可以追溯到一个世纪前的Helmholtz和Smoluchowski。他们提出的经典理论主要适用于稀溶液和低表面电势的情况。然而,随着微流控技术的快速发展,人们开始关注在高电压和高浓度条件下电动现象,这使得经典理论面临挑战。

Key Points

MindMap

Target Audience

本文的目标读者包括化学工程师、物理学家、材料科学家以及对微流控和纳米流体学感兴趣的研究人员。特别是那些关注非线性电动现象、电化学和界面科学的专业人士,以及需要在高电压和高浓度条件下理解和应用电动现象的工程师和科学家。

Author Background

Martin Z. Bazant是麻省理工学院化学工程系的教授,Mustafa Sabri Kilic是麻省理工学院数学系的成员,Brian D. Storey是富兰克林W. Olin工程学院的教授,Armand Ajdari是CNRS UMR Gulliver 7083, ESPCI的研究员。这些作者在各自领域都有深厚的学术背景和研究经验,共同致力于非线性电动力学现象的研究。

Historical Context

电动现象的研究历史悠久,可以追溯到一个世纪前的Helmholtz和Smoluchowski。他们提出的经典理论主要适用于稀溶液和低表面电势的情况。然而,随着微流控技术的快速发展,人们开始关注在高电压和高浓度条件下电动现象,这使得经典理论面临挑战。本文正是在这一背景下,对非线性电动现象进行了深入研究,并提出了对传统理论的修正。

Chapter Summary