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Dissolution and removal of templates were achieved by extensive dialysis against water at temperatures below the LCST of PDEGMA.
The smallest emulsion templates were achieved when using 7% (w/w) mixture of Span80/Tween80 at HLB 6, 15% (w/w) water, and sonication time of 30 min.
Nano-scaled templates were achieved when mixed surfactants (Span80/Tween80 and Span80/Brij30) at HLB 6 were used while using Span80 or other HLB values resulted in micron-sized templates.
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The removal of templates was achieved by overoxidation in the presence of 0.05 mol dm−3 NaOH.
Fast, efficient ligation of several sizes of ssDNA templates was achieved.
Comparison between the test and retest templates was achieved by voxel-by-voxel t test.
The identification of the openEHR archetypes and COSMIC templates is achieved by ARCHETYPE_IDs and unique template names respectively.
Preparation of continuous mesoporous carbon membranes without the use of an intermediate inorganic template was achieved using a thermosetting phenolic resin, resorcinol/phloroglucinol/formaldehyde, and a thermally-decomposable organic template, Pluronic F127 (PEO106–PPO70–PEO106).
Optimization of the parameters for the processing of the negative NaCl template was achieved by initially investigating the effect of sintering conditions on the microstructure and mechanical properties of bulk NaCl.
Superposition of the built LhSorP5CS model on the template was achieved by Swiss PDB viewer programme.
The high-resolution SEM image in Figure 3e shows that nearly 98% pore filling ratio on the top surface of template was achieved at this location in the template.
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