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The instable polyelectrolyte multilayer, hybrid templates, and assembly cycles were demonstrated to be three indispensable factors responsible for the formation of this type of 3D stable capsules.
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Dot-plot alignments between the template and assembly pseudomolecules under both assembly conditions are shown in Additional file 2 while numerical score comparisons of the same pseudomolecules are shown in Table 1.
Templated synthesis and assembly of nanoscale plasmonic building blocks to form rationally designed architectures have emerged as an overarching strategy for addressing this challenge [36 38].
Template-guided fabrication and assembly of nanomaterials based on AAMs are cost-effective and scalable methods to program and engineer the shape and morphology of nanostructures and nanomaterials.
Template-guided fabrication and assembly of nanomaterials, particularly based on porous anodic alumina membranes (AAMs), have attracted great amount of attention due to the fact that AAMs are formed by self-organizing mechanism and they enable direct assembly of nanomaterials with controlled density[21 25].
Various methods have been tried to modify the friction surface such as ion beam etching [12], silicon template [10], anodic aluminum oxide template [13], and synthesis and assembly of nanoparticles and nanowires [11, 14].
The novel graphene nanowires were synthesized via a template strategy involving reduction and assembly process of nanosized graphene oxides (nGO), pyrolysis of polystyrene spheres (PS) template and catalytic reaction between GO and PS decomposition products.
MK, SK and RR contributed to RNA isolation, library construction, template preparation, sequence determination and assembly.
MK, AMM, HK, KH and RR contributed to library construction, template preparation, sequence determination and assembly.
KH, MK, HK, BS, ES and RR contributed to library construction, template preparation, sequence determination and assembly.
In these experiments, it is difficult to exclude the presence of residual cell wall template fragments because synthesis and assembly of the wall can continue via newly synthesized precursors or catalytic enzymes [ 10 13].
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