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Through a facile approach BTESPT molecules are successfully grafted onto the surface of graphene oxide.
The results indicate that the per-hydroxylated pillar[5]arene molecules are successfully linked onto the surface of graphene.
Ferrocene molecules are successfully introduced into the inner hollow space of Single-walled carbon nanotubes (SWNTs) to get ferrocene-filled SWNTs (Fc@SWNTs).
Many TTCA molecules are successfully deposited on the surface of rGO through π-π conjugation, which endows the TTCA/rGO with excellent adsorption ability of As III) via As−S bond.
Fourier transform IR spectra of the GO/PPy-DEX film display peaks attributable to both GO and DEX, indicating that the drug molecules are successfully loaded into the film, along with the GO nanosheets (Supporting Information Figure S1).
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HPTCP molecules were successfully loaded onto the GO surface without affecting its original structure and property.
As displayed in Fig. 6a, the absorption spectra k of DIP molecular crystal and both perylene molecules were successfully obtained from the theoretical approach.
More importantly, the phage displaying target-specific Fab-ΔpIII molecules was successfully enriched by panning, which allows isolation of the pHf1g3A-2 phagencodingoding antigen-specific Fd molecules.
FT-IR, UV vis, XPS, Raman spectra, TEM, and AFM results demonstrate that the MPc molecules were successfully anchored on the surface of rGO sheets through π π stacking and form electron transfer interaction from MPc to rGO.
Several high-efficiency ultrafiltration membranes for separating the 150- and 67-kDa molecules, 67- and 45-kDa molecules and 45- and 15-kDa molecules were successfully prepared by following the predictions given by using the statistical analyses.
Fourier transform infrared (FTIR) spectroscopy assessment revealed that PEG and DOX molecules were successfully loaded on the MGNPs surfaces, and the amine group of DOX is the active attachment site to MGNPs.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com