Tag: sepcon

Using Alumina Deposition to Modulate Pore Size

The Cambridge Microsystems Savannah 200 atomic layer deposition (ALD) system uses a two-step chemical process that alternates pulses of water vapor and trimethylaluminum (TMA) to build a layer of Al2O3 on a silicon substate. Because of the two-step nature of

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Fluorosphere wash and measurement with Tecan and Fluorescent microscope

Karl and I have been working to measure separations using SEPCONs with particles ranging in size from 20 nm to 1 µm. We started out naively enough by slightly diluting some flourospheres we found in the refrigerator, putting them in the

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SiN-NP in 50 nm SiN

Using a 6″ wafer, we start with 50 nm of RV SiN, then deposit 40 nm a-Si followed by 20 nm of SiO2.  RTP of 1050 C, 100 C/s, 60s.  JP patterned the wafer to make standard SEPCON chips. The

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Updated: 25-40-25 nm OSO SEPCONS

We created a 25-40-25 OSO stack with a SEPCON pattern.  RTP at 1050 C 100 C/s 60 s.  The following images show a comparison between the STEM detector and the SEM detector, and then a couple more images at 100

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SEMs of burst 30-50-30 NSN SEPCON

Below are some SEM images of a burst 30-50-30 NSN membrane in a SEPCON pattern.  Many similar chips failed at lower pressures, but this one survived to ~5-7 psi.  (didn’t keep close track of the chips after they were burst,

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NSN SEPCONs

Still trying to reproduce Joe’s large pore material on SEPCONs using NSN stacks.  This post has data from two wafers with 30/50/30 and 30/100/30 NSN.  RTP is 1000C 50C/s for 1min.  Nitride is etched off by placing samples in 50%

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Update: 30/100/30 OSO, 30/75/30 & 30/100/30 NSN SEPCON

We are trying to reproduce the very small pores Joe created with 30/100/30 OSO and large pores created with 30/100/30 NSN using a SEPCON pattern.  (Joe’s previous post.) We had a problem with several chips releasing from the center of

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High salt concentrations (~50mM) shouldn't be used to tune effective pore sizes for gold colloid separations

What we’d like to have accompany the Sepcon filters is a general way to tune the pore sizes for any given separation. If, for instance, someone wanted to have a filter cutoff of 12nm, we could create a custom wafer

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