We report new measurements of the ratio of the electric form factor to the magnetic form factor of the neutron, G n E /G n M , obtained via recoil polarimetry from the quasielastic 2 H( e, e ′ n) 1 H reaction at Q 2 values of 0.45, 1.13, and 1.45 (GeV/c) 2 with relative statistical uncertainties of 7.6 and 8.4% at the two higher Q 2 points, which were not reached previously via polarization measurements. Scale and systematic uncertainties are small.
We
report on the reversible detection of CaptAvidin, a tyrosine
modified avidin, with single-walled carbon nanotube (SWNT) field-effect
transistors (FETs) noncovalently functionalized with biotin moieties
using 1-pyrenebutyric acid as a linker. Binding affinities at different
pH values were quantified, and the sensor’s response at various
ionic strengths was analyzed. Furthermore, protein “fingerprints”
of NeutrAvidin and streptavidin were obtained by monitoring their
adsorption at several pH values. Moreover, gold nanoparticle decorated
SWNT FETs were functionalized with biotin using 1-pyrenebutyric acid
as a linker for the CNT surface and (±)-α-lipoic acid linkers
for the gold surface, and reversible CaptAvidin binding is shown,
paving the way for potential dual mode measurements with the addition
of surface enhanced Raman spectroscopy (SERS).
We have investigated Ag(I) mediated folding of a tridentate compound, containing three pyridine flaps tethered to a semirigid scaffold, into a molecular basket, using both experimental and theoretical methods. The basket formation has been shown to be highly favorable in organic media (Delta G degrees = -7.2 kcal/mol), with the assembly process allowing for another ligand to bind preferentially on the outer side.
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