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The template molecules and the non-bound thiol were removed from the modified electrode surface by washing with an alkaline solution of ethanol.
The template molecules and the non-bound thiol were removed from the molecularly imprinted polymer film capacitance sensor surface with an acidic solution of ethanol.
Moreover, the obtained polymers have many limitations, including a high level of nonspecific binding and poor site accessibility for template molecules and therefore are not used in commercial assays.
a Fluorescence emission spectra of the CdSe@SiO2/CD/MIP nanoparticles before (black line) and after (red line) removal of the template molecules and b their photo-stability dispersed in ethanol following the removal of 4-NP.
Three different proteins, namely lysozyme (Lyz), cytochrome c (Cyt) and methylated bovine serum albumin (mBSA), were tested as the template molecules and then the receptors were synthesized by sol gel reaction (imprinting process).
In this paper, we are presenting a facile, green and in situ synthesis strategy for the convenient preparation of well-dispersed gold nanoparticles (AuNPs -decorated reduced grAuNPs -decoratedO) without the use of any template molecules and poisonous reducednt.
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Chrysoidine and pyrrole were used as template molecule and functional monomer, respectively.
Glucose was used as a template molecule, and imprinted particles were prepared by non-covalent imprinting method.
The selective molecularly imprinted polymer was produced using Azathioprine and methacrylic acid as a template molecule and monomer, respectively.
Ion-pair [Py+-DS−] was supposed as a template molecule and acrylic acid, methacrylic acid, allyamine, vinylpridine and 2-hydroxy ethyl methacrylate were as tested monomers.
It was based on the comparison of the binding energy (ΔE) of the formed complexes between the template molecule and different functional monomers.
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