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Crisis and catharsis in atomic physics 期刊论文
Science, 2020
作者:  Wim Ubachs
收藏  |  浏览/下载:8/0  |  提交时间:2020/11/30
Study revealing the secret behind a key cellular process refutes biology textbooks 新闻
来源平台:EurekAlert. 发布日期:2020
作者:  admin
收藏  |  浏览/下载:1/0  |  提交时间:2020/11/30
Are diagnostic imaging studies with positive conclusions or titles published faster? 新闻
来源平台:EurekAlert. 发布日期:2020
作者:  admin
收藏  |  浏览/下载:0/0  |  提交时间:2020/11/20
Machine learning model helps characterize compounds for drug discovery 新闻
来源平台:EurekAlert. 发布日期:2020
作者:  admin
收藏  |  浏览/下载:0/0  |  提交时间:2020/10/15
High-precision molecular measurement 期刊论文
Science, 2020
作者:  Masaki Hori
收藏  |  浏览/下载:2/0  |  提交时间:2020/09/08
A molecular mediator for reductive concerted proton-electron transfers via electrocatalysis 期刊论文
Science, 2020
作者:  Matthew J. Chalkley;  Pablo Garrido-Barros;  Jonas C. Peters
收藏  |  浏览/下载:4/0  |  提交时间:2020/08/18
Abundant fungi adapt to broader environmental gradients than rare fungi in agricultural fields 期刊论文
Global Change Biology, 2020
作者:  Shuo Jiao;  Yahai Lu
收藏  |  浏览/下载:9/0  |  提交时间:2020/06/01
gnomAD Consortium releases its first major studies of human genetic variation 新闻
来源平台:EurekAlert. 发布日期:2020
作者:  admin
收藏  |  浏览/下载:18/0  |  提交时间:2020/05/29
Study: could dark matter be hiding in existing data? 新闻
来源平台:EurekAlert. 发布日期:2020
作者:  admin
收藏  |  浏览/下载:1/0  |  提交时间:2020/05/15
Ionic solids from common colloids 期刊论文
NATURE, 2020, 580 (7804) : 487-+
作者:  Delord, T.;  Huillery, P.;  Nicolas, L.;  Hetet, G.
收藏  |  浏览/下载:6/0  |  提交时间:2020/07/03

Oppositely charged colloidal particles are assembled in water through an approach that allows electrostatic interactions to be precisely tuned to generate macroscopic single crystals.


From rock salt to nanoparticle superlattices, complex structure can emerge from simple building blocks that attract each other through Coulombic forces(1-4). On the micrometre scale, however, colloids in water defy the intuitively simple idea of forming crystals from oppositely charged partners, instead forming non-equilibrium structures such as clusters and gels(5-7). Although various systems have been engineered to grow binary crystals(8-11), native surface charge in aqueous conditions has not been used to assemble crystalline materials. Here we form ionic colloidal crystals in water through an approach that we refer to as polymer-attenuated Coulombic self-assembly. The key to crystallization is the use of a neutral polymer to keep particles separated by well defined distances, allowing us to tune the attractive overlap of electrical double layers, directing particles to disperse, crystallize or become permanently fixed on demand. The nucleation and growth of macroscopic single crystals is demonstrated by using the Debye screening length to fine-tune assembly. Using a variety of colloidal particles and commercial polymers, ionic colloidal crystals isostructural to caesium chloride, sodium chloride, aluminium diboride and K4C60 are selected according to particle size ratios. Once fixed by simply diluting out solution salts, crystals are pulled out of the water for further manipulation, demonstrating an accurate translation from solution-phase assembly to dried solid structures. In contrast to other assembly approaches, in which particles must be carefully engineered to encode binding information(12-18), polymer-attenuated Coulombic self-assembly enables conventional colloids to be used as model colloidal ions, primed for crystallization.