- 2 Department of Materials Science and Engineering, Research Institute for
- All three of the as-prepared precursor spheres for the D-, 2M- and 3M-SnO2 spheres were composed of a tetragonal SnO2 phase (JCPDS no. 41–1445) (Supplementary Figure S3). The higher crystallinity of PS-mediated macroporous precursor spheres can ...
- Mechanism of mechanical quenching and mechanoluminescence in phosphorescent
- All of the patterns were identical to the Powder Diffraction File standard for the hexagonal phase of CaZnOS (JCPDS 01-072-3547), although a very small amount of ZnS impurity was observed for Cu concentrations of 0% and 0.05%. When the Cu ...
- Thermal decomposition synthesis of functionalized PdPt alloy nanodendrites
- Compared with standard diffraction data of single Pt (JCPDS-04-0802 Pt) and Pd (JCPDS-46-1043Pd), the representative diffraction peaks of PdPt@PtPd CSNDs are coincidently located between them (Figure 1a), demonstrating the formation of the ...
- Multifunctional upconversion–nanoparticles–trismethylpyridylporphyrin
- (d) X-ray diffraction pattern of as-prepared β-NaGdF4:Yb,Tm@NaGdF4 nanoparticles, consistent with the standard pattern of β-NaGdF4 (JCPDS 06-0342). (e) Optical photographs of UCNP–PEG–FA/PC70 in water, phosphate-buffered saline, fetal bovine ...
- Ultra-small, size-controlled Ni(OH) 2 nanoparticles: elucidating the
- All XRD diffraction peaks can be indexed as a hexagonal phase β-Ni(OH)2 (space group P-3m1(164), a=b=0.313 nm, c=0.463 nm, JCPDS 14-0117) without showing any impurity phase.
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