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Chitin synthase [ 15] was highly up-regulated with fold-change (FC) values of: CUST_58227, 84.49-fold increase; CUST_24765, 75.81-fold increase; CUST_39082, 60.81-fold increase; and CUST_56685, 34.93-fold increase, indicating their potential roles controlling shell formation, as chitinous material is synthesized during the D-shaped stage and contributes to the shell framework.
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It is found that the piezoelectric parameters that contribute to the shell's natural frequencies is of a small order for thin PVDF shells, and is thereby negligible.
Additionally, part of the Zn removed would subsequently segregate towards the surface, favored by their high mobility even at RT [52, 53], contributing to the shell structure observed in the HR-TEM images.
Relatively few matrix proteins contributing to the shell in molluscs have been identified and most of the studies so far have focused on single proteins such as Asprich, lustrin A, perlustrin and calconectin, whilst other proteins involved in calcium deposition include carbonic anhydrase [ 36, 38- 40, 70- 72].
Further this change should not alter the coordination chemistry as it retains the essential chemical feature of site 4, a hydroxyl that can contribute to the coordination shell of the permeant ion [31] (Figure 2C).
This may be explained by light absorption capability of the FT-2 due to their rough shell contributes to the good photocatalytic activity.
The efficient interfacial electron transfer from the excited CdS moieties to the decorated ultrathin MoS2 shell contributes to the synergistic effect of photocatalytic and electrocatalytic process for the boosting of catalytic efficiency.
The cooperative effect of ammonium and strong oxidizing ion on electrophilic oxidation of ferrocene contributes to the in situ formation of carbon shell on the nanocrystals.
It has been suggested that the presence of drug on the surface and outer shell of NLC contributes to the initial burst release, whilst drug incorporated in deeper lipid phase contributes to sustained release [29].
This reaction significantly contributes to the polysiloxane cross-linking and therefore makes shells of microcapsules stronger.
The amazing enhanced electrical performance can be contributed to the core-shell structured, which prevents the pulverization of anode during charge/discharge process.
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