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Merck

Investigating processes of nanocrystal formation and transformation via liquid cell TEM.

Microscopy and microanalysis : the official journal of Microscopy Society of America, Microbeam Analysis Society, Microscopical Society of Canada (2014-03-15)
Michael H Nielsen, Dongsheng Li, Hengzhong Zhang, Shaul Aloni, T Yong-Jin Han, Cathrine Frandsen, Jong Seto, Jillian F Banfield, Helmut Cölfen, James J De Yoreo
ABSTRACT

Recent ex situ observations of crystallization in both natural and synthetic systems indicate that the classical models of nucleation and growth are inaccurate. However, in situ observations that can provide direct evidence for alternative models have been lacking due to the limited temporal and spatial resolution of experimental techniques that can observe dynamic processes in a bulk solution. Here we report results from liquid cell transmission electron microscopy studies of nucleation and growth of Au, CaCO3, and iron oxide nanoparticles. We show how these in situ data can be used to obtain direct evidence for the mechanisms underlying nanoparticle crystallization as well as dynamic information that provide constraints on important energetic parameters not available through ex situ methods.

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Fosfato di potassio, ACS reagent, ≥99.0%
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Fosfato di potassio, powder, suitable for cell culture, suitable for insect cell culture, suitable for plant cell culture, ≥99.0%
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Fosfato di potassio, for molecular biology, ≥98.0%
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Fosfato di potassio, BioUltra, for molecular biology, anhydrous, ≥99.5% (T)
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Fosfato di potassio, 99.99% trace metals basis
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Fosfato di potassio, ReagentPlus®
USP
Fosfato di potassio, United States Pharmacopeia (USP) Reference Standard
Supelco
Fosfato di potassio, Pharmaceutical Secondary Standard; Certified Reference Material
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Fosfato di potassio, tested according to Ph. Eur., anhydrous