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Manganese oxide image

The shift of the amide I mode (FTIR spectra) from 1657 to 1646 cm-1 was attributed to a change in the a-helix native structure to fl-sheets, secondary structure conformations. Atomic Force Microscopy (AFM) images display the coating of the manganese oxide surface as well as the unfolding in a ellipsoidal chain of the protein molecules after adsorption and immobilization on the surface. [Pg.460]

The two higher energy electronic absorption bands of TAA-OL-1 are the result of quantum confinement effects that arise when the size of the particles becomes smaller than the electron-hole pair in the bulk semiconductor material. The large band-gap was corresponded to nano-particle sizes of manganese oxide. TEM images of 0,1 M TAA manganese oxide colloids were obtained [33, 34]. The particle sizes are between 30 100 nm. [Pg.396]

Figure 8. Micro-XRF image of Pu sorbed onto manganese oxide coatings on smectite grains in Yucca Mountain tuff reacted with a Pu(V)-containing aqueous solution. Image was collected on the insertion device beam line 13- - at GSECARS (Advanced Photon Source), (after Duff et al. 1999a,b)... Figure 8. Micro-XRF image of Pu sorbed onto manganese oxide coatings on smectite grains in Yucca Mountain tuff reacted with a Pu(V)-containing aqueous solution. Image was collected on the insertion device beam line 13- - at GSECARS (Advanced Photon Source), (after Duff et al. 1999a,b)...
Figure 1.12 Overview of manganese oxide and cobalt hydroxide nanoflakes. (a,b) Manganese oxide with (a) FETEM image and Tyndall light scattering inset and (b) HAADF-STEM image of magnified flakes (c,d) Cobalt hydroxide nanoflakes with (c) FETEM image and dispersed inset and (d) HAADF-STEM of mosaic structure. Reproduced from Ref [47], by permission of the Royal Society of Chemistry. Figure 1.12 Overview of manganese oxide and cobalt hydroxide nanoflakes. (a,b) Manganese oxide with (a) FETEM image and Tyndall light scattering inset and (b) HAADF-STEM image of magnified flakes (c,d) Cobalt hydroxide nanoflakes with (c) FETEM image and dispersed inset and (d) HAADF-STEM of mosaic structure. Reproduced from Ref [47], by permission of the Royal Society of Chemistry.
FIGURE 10.12 SEM Images (upper part of the figure) of iron oxide, manganese oxide, cobalt oxide, chromium oxide, molybdenum oxide respectively (from left to right). The lower part of the Fig. 10.12 is corresponding TEM pictures [35]. [Pg.392]

Lattice imaging by high resolution transmission electron microscopy (HRTEM) of fibrous manganese(IV) oxide minerals demonstrated the exis-... [Pg.343]


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