Author: Jessica Snyder

Particle Separations with Cellulose Membranes

I tried particle separations with the 30kD cellulose membranes from Millipore using the same setup as previous experiments.  Basically the results are that neither 5 nor 20nm particles pass through the membranes whether in water or 10mM KCl. Absorbance Data:

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Stabilizing Gold in Salts using Protein Adsorption

As mentioned previously, gold colloids are not stable in high salts because salts reduce the repulsive forces between particles and cause aggregation.  I have been able to dissolve naked gold colloids in 10mM KCl without aggregation, but the particles crash

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Gold Ladder

I obtained gold in 5nm, 20nm, 40nm, and 60nm through Mort/Oberdorster Lab.  Separations were performed with fully crystallized samples from SC 073.  Here are sizing and absorbance data: In Water I have tried 24 hour separations in diH2O (SC 073)

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5nm gold separations

I set up separations of 5nm Au nanoparticles in both H2O and KCl in a new system.  The stir cell isn’t always reliable for separations due to leaking and contaminating (?) particles from the plastic.  To perform these separations, I

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Supplemental Permeability Figures

These are a couple of figures that may appear in the supplementary materials for the permeability paper. The first tries to explain that most of our permeability is due to the largest pores.  The lines plotted are the cumulative number

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Gold Spectra

This is a follow-up to my last post about gold separations.  Using the Tecan, I’ve scanned the absorbance spectrum of all the gold particles we posses in water, 10 mM KCl, and 100 mM KCl.  Here are the results: The

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SC 073, SC 074 Diffusion Separations

Two of the newer wafers, SC 073 and SC 074, came back with ~30 intact samples.  This would be more than enough for the separation work that I’m trying to finish, so I decided to see if they were any

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Gold Update

A long running side story to my research has been attempted separations of nanogold. The basic idea is that we want to separate EM quality gold nanoparticles with the membrane, but I have had problems detecting gold in the filtrate

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Alternate Smoluchowski Equation

My previous post on Electroomosis theory describes the deviation between expected and calculated zeta potential using the Smoluchowski equation. In this post I will explain another method of solving for the zeta potential and I will consider the mistakes made

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Electroosmosis Bits and Pieces

This post explains that electroosmosis in our material is higher than we expected. Jim suggested that maybe we don’t have fully developed flow in our thin material. Here I attempt to find the entrance length, or distance until fully developed

Posted in NRG
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