Sentence examples for atoms were successfully from inspiring English sources

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X-ray photoelectron spectroscopy demonstrated that the nitrogen and fluorine atoms were successfully doped into the rGO structure at atomic percentages of 2.51 and 0.74, respectively.

% nitrogen atoms were successfully doped in GNS.

In a proof-of-principle experiment conducted with cold 87Rb atoms, simultaneous rearrangements of up to N=9 single atoms were successfully performed.

The results confirmed that Ni atoms were successfully doped into Na3V2(PO4) crystal and substituted the V sites.

XPS revealed the presence of metallic Ni and Ni2O3 states, as well as Ni and Al atoms were successfully doped in NiAl ZnO films, which did not result in a change in ZnO crystal structure and orientation.

The transmission electron microscopy (TEM) and X-ray diffraction (XRD) results revealed that the structure of MWCNTs does not be destroyed during the doping process, and X-ray photoelectron spectroscopy (XPS) analysis demonstrated the boron atoms were successfully doped in the structure of MWCNTs.

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The Li atoms are successfully and stably intercalated into the interlayer of g-C3N4 by n-butyl lithium (n-BuLi).

c Low-resolution and d high-resolution transmission electron microscopy images of KB350Z-900. Figure 2a, b shows that the nitrogen atoms are successfully doped into the carbon structure of three types of ORR catalysts.

Based on the interaction between the carboxyl groups and silver atoms, the GNPs were successfully assembled on the surface of AgMSs [30]. Figure 6a,b,c,d clearly reveals that GNPs are homogeneously distributed on the surface of AgMSs.

Graphene, the super thin carbon material that's been exciting scientists in the decade+ since single-atom thick graphene crystallites were successfully extracted from the bulk material, continues to give hints of a promising future blending electronics and biology.

No impurity peaks or superstructure peaks were found, indicating that some of the Ni2+, Mn4+, Mn3+, and O2− atoms in the spinel phase were successfully substituted by Cr3+ and F−.

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