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Considering the second-stage DPP to form the pH-sensitive shell, the PMAA cores acted as the mature particles, on the surface of which the monomers and the oligomers (see Supplementary Fig. S1) are absorbed, causing the formation of the cross-linked shell and the consequent increase in size36.
The ZnO NR cores acted as photon absorber as well as rapid charge transporter; whilst the wrinkled Ni(OH 2 nanosheets largely increased the surface area and facilitated the PEC process by lowering the energy barrier of water oxidation and suppressing electron hole recombination.
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The cores act as channels for hydrogen diffusion.
The BSCF fibre cores act as the primary structure for transferring electrons and oxygen ions by being closely connected.
The fault core acts as the fluid conduit during faulting.
The conducting shell around the core acts as a so-called plasmon resonator.
A gold nanoparticle core acts as the lorry, presenting the RNA to the cancer cells in such a way that the whole nanoparticle is engulfed.
The SS core acts as current collector in the final two-ply yarn supercapacitors with significantly improved specific capacitance and up-scaled length of supercapacitors.
Nano-order sized supramolecular assemblies called polymeric micelles possess two-separated phase structure; a hydrated hydrophilic outer shell provides their highly structural stabilities in aqueous media and a hydrophobic inner core acts as a drug loading container.
The rock mass quality of the test section obtained from SPI completed with the degree of jointing of the drill core acts as a useful reference for ground treatment design.
The hydrophilic polymer brush core acts as the nanoreactor for generating and shaping CdSe nanoparticles into nanowires via the absorption of cadmium ions by carboxylate groups in the core and subsequent introduction of H2Se gas; the hydrophobic polymer brush shell protects the nanowires from agglomeration and renders the hybrid a soluble material.
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CEO of Professional Science Editing for Scientists @ prosciediting.com