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Highly porous polypyrrole (PPy)‐coated TiO2/ZnO nanofibrous mat has been successfully synthesized. The core TiO2/ZnO nanofibers have an average diameter of ca. 100 nm and the shell of ultrathin PPy layer has a thickness of ca. 7 nm. The NH3 gas sensor using the as‐prepared material exhibited a fast response over a wide dynamic range and high sensitivity with a detection limit of 60 ppb (S/N=3). Compared to conventional pristine PPy film, the improved performance in NH3 detection can be attributed to the free access of NH3 to PPy and a minimized gas diffusion resistance through the ultrathin PPy layer.  相似文献   
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Highly conductive palladium/titanium dioxide (Pd/TiO2) nanofibers have been successfully fabricated by electroless-plating Pd on the electrospun TiO2 nanofibers. The application of Pd/TiO2 nanofibers for electrooxidation of glycerol was demonstrated. The results showed that Pd/TiO2 nanofibers can greatly promote glycerol electrooxidation in alkaline medium, and both glycerol and KOH concentrations had an effect on the peak current density and the peak potential. The mechanism of desorption of poisoning intermediate was discussed by changing the upper potential limit. The application of the Pd/TiO2 nanofibers for electrooxidation of methanol, ethylene glycol, and 1,2-propanediol was also demonstrated.  相似文献   
3.
Apolipoprotein E (ApoE)’s ϵ4 alle is the most important genetic risk factor for late onset Alzheimer's Disease (AD). Cell-surface heparan sulfate (HS) is a cofactor for ApoE/LRP1 interaction and the prion-like spread of tau pathology between cells. 3-O-sulfo (3-O-S) modification of HS has been linked to AD through its interaction with tau, and enhanced levels of 3-O-sulfated HS and 3-O-sulfotransferases in the AD brain. In this study, we characterized ApoE/HS interactions in wildtype ApoE3, AD-linked ApoE4, and AD-protective ApoE2 and ApoE3-Christchurch. Glycan microarray and SPR assays revealed that all ApoE isoforms recognized 3-O-S. NMR titration localized ApoE/3-O-S binding to the vicinity of the canonical HS binding motif. In cells, the knockout of HS3ST1-a major 3-O sulfotransferase-reduced cell surface binding and uptake of ApoE. 3-O-S is thus recognized by both tau and ApoE, suggesting that the interplay between 3-O-sulfated HS, tau and ApoE isoforms may modulate AD risk.  相似文献   
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