Category: NRG

Congrats Dave!

PhD Dec. 15, 2010 Thanks for Everything!

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Electrodes: electrical measurements and EO tryouts

In continuation of work on ultrathin metal electrodes on pnc-Si, I tried changing metal thicknesses at different positions inside the chamber.  In this experiment, on the front side of the 30 nm thick membrane the 22 nm metal layer was

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MicroEO update

This is an update of the research on the on-chip EO pump. Due to a mistake in determining the direction of particle flow, it now looks like the particles in this post were moving by electrophoresis rather than electroosmosis.  The

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AFM of amorphous Si follow-up

Using fresh tips, I re-ran the scans of amorphous Si films deposited at different biases. Recall that our theory states that interface roughness between the Si/SiO2 is an important determinant for ultimate pore morphology. A rough interface will suppress nucleation,

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Visualizing increase in cut-off sharpness of carbonized alumina coated pnc-Si

In my last post, I introduced the concept of pore size dependent carbon growth on alumina coated membranes. Here, I have plotted a Gaussian fit of the tail of the pore size distribution of carbonized membranes (with and without an

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Asymmetrical Oxide Experiment

Based on previous data, we have seen a reduction in pore size and porosity when we increase the oxide thickness. For this experiment, we compare asymmetrical oxide thicknesses with symmetrical oxide thicknesses to observe which layer has the dominate effect

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ALD strength on 5.03

To follow up on some of Dave’s work – I was curious if the ALD alumina affects the strength of pnc-Si membranes. Punchline: 2.5 nm of Alumina seems to increase the burst pressure, while 5.0 nm reduces the burst pressure.

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Comparing growth rate of carbon on bare and alumina coated pnc-Si

This week, I did a systematic study on the growth rate of carbon on bare and aluminum oxide coated pnc-Si membranes. The bare samples were not treated prior to carbonization, while the alumina coated samples underwent a 5 nm treatment

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Metal deposition at different positions

I am trying to deposit metal on the membrane with minimal deposition inside the pores. The image below is an example of how the film quality and thickness change when the sample is positioned at different angles and distances from

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Badly Behaving BSA

For the charge model, we would like to know the surface charge density and size of our experimental molecules.  I’ve attempted to use the Zetasizer for both measurements, but as mentioned in my diffusion paper, DLS gives sizes that deviate

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