143 results on '"Atomic Pair Distribution Function"'
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2. Resolving the Structure of Ti 3 C 2 T x MXenes through Multilevel Structural Modeling of the Atomic Pair Distribution Function
3. Resolving the structure of Ti3C2Tx MXenes through multilevel structural modeling of the atomic pair distribution function
4. Atomic-scale structure of nanocrystalline Ba{sub x}Sr{sub 1-x}TiO{sub 3} (x = 1, 0.5, 0) by x-ray diffraction and the atomic pair distribution function technique.
5. High-energy X-ray powder diffraction and atomic-pair distribution-function studies of charged/discharged structures in carbon-hybridized Li2MnSiO4 nanoparticles as a cathode material for lithiumion batteries
6. Resolving the Structure of Ti[subscript 3]C[subscript 2]T[subscript x] MXenes through Multilevel Structural Modeling of the Atomic Pair Distribution Function
7. Confirmation of disordered structure of ultrasmall CdSe nanoparticles from X-ray atomic pair distribution function analysis
8. Nanoscale structural order from the atomic pair distribution function (PDF): There's plenty of room in the middle
9. Robust structure and morphology parameters for CdS nanoparticles by combining small-angle X-ray scattering and atomic pair distribution function data in a complex modeling framework
10. Robust structure and morphology parameters for CdS nanoparticles by combining small-angle X-ray scattering and atomic pair distribution function data in a complex modeling framework
11. Robust Structure and Morphology Parameters for CdS Nanoparticles by Combining Small-angle X-ray Scattering and Atomic Pair Distribution Function Data in a Complex Modeling Framework
12. Structure of Nanocrystalline Ti 3 C 2 MXene Using Atomic Pair Distribution Function
13. Structure of Nanocrystalline Ti3C2 MXene Using Atomic Pair Distribution Function
14. Structure of Nanocrystalline Ti3C2 MXene Using Atomic Pair Distribution Function
15. Structure of Nanocrystalline Ti3C2 MXene Using Atomic Pair Distribution Function
16. Robust structure and morphology parameters for CdS nanoparticles by combining small-angle X-ray scattering and atomic pair distribution function data in a complex modeling framework
17. Structure of Nanocrystalline Ti3C2 MXene Using Atomic Pair Distribution Function
18. Structure of Nanocrystalline Ti3C2 MXene Using Atomic Pair Distribution Function
19. Understanding hydrogen storage properties of metal hydrides using the atomic pair distribution function
20. Robust structure and morphology parameters for CdS nanoparticles by combining small-angle X-ray scattering and atomic pair distribution function data in a complex modeling framework
21. Structure of Nanocrystalline Ti 3 C 2 MXene Using Atomic Pair Distribution Function
22. Structural Study of Biotic and Abiotic Poorly-crystalline Manganese Oxides Using Atomic Pair Distribution Function Analysis
23. Structural study of biotic and abiotic poorly-crystalline manganese oxides using atomic pair distribution function analysis
24. Detailed mapping of the local Ir{sup 4+} dimers through the metal-insulator transitions of CuIr{sub 2}S{sub 4} thiospinel by x-ray atomic pair distribution function measurements.
25. Evidence for Anomalous Bond Softening and Disorder Below 2 nm Diameter in Carbon-Supported Platinum Nanoparticles from the Temperature-Dependent Peak Width of the Atomic Pair Distribution Function
26. Evidence for anomalous bond softening and disorder below 2 nm diameter in carbon supported platinum nanoparticles from the temperature dependent peak width of the atomic pair distribution function
27. Evidence for Anomalous Bond Softening and Disorder Below 2 nm Diameter in Carbon-Supported Platinum Nanoparticles from the Temperature-Dependent Peak Width of the Atomic Pair Distribution Function
28. Evidence for Anomalous Bond Softening and Disorder Below 2 nm Diameter in Carbon-Supported Platinum Nanoparticles from the Temperature-Dependent Peak Width of the Atomic Pair Distribution Function
29. Confirmation of disordered structure of ultrasmall CdSe nanoparticles from X-ray atomic pair distribution function analysis
30. Confirmation of disordered structure of ultrasmall CdSe nanoparticles from X-ray atomic pair distribution function analysis
31. Confirmation of disordered structure of ultrasmall CdSe nanoparticles from X-ray atomic pair distribution function analysis
32. Evidence for anomalous bond softening and disorder below 2 nm diameter in carbon supported platinum nanoparticles from the temperature dependent peak width of the atomic pair distribution function
33. Confirmation of disordered structure of ultrasmall CdSe nanoparticles from X-ray atomic pair distribution function analysis
34. Confirmation of disordered structure of ultrasmall CdSe nanoparticles from X-ray atomic pair distribution function analysis
35. Evidence for anomalous bond softening and disorder below 2 nm diameter in carbon supported platinum nanoparticles from the temperature dependent peak width of the atomic pair distribution function
36. Accurate structure analysis of Mo[subscript 6]S[subscript y]I[subscript z] nanowires from atomic pair distribution function (PDF) analysis
37. Phase separation and nanostructuring in the thermoelectric material PbTe[subscript 1−x]S[subscript x] studied using the atomic pair distribution function technique
38. Relationship Between the Atomic Pair Distribution Function and Small-Angle Scattering: Implications for Modeling of Nanoparticles
39. Variation in the rRtio of Mg 2 Co and MgCo 2 in Aamorphous-Like Mechanically Alloyed Mg x Co 100? X Using Atomic Pair Distribution Function Analysis
40. Nyquist-Shannon sampling theorem applied to refinements of the atomic pair distribution function
41. Nyquist-Shannon sampling theorem applied to refinements of the atomic pair distribution function
42. Detailed Mapping of the Local + Dimers through the Metal-Insulator Transitions of S Thiospinel by X-Ray Atomic Pair Distribution Function Measurements
43. Local Structural Evolution of Mechanically Alloyed Mg[sub 50]Co[sub 50] Using Atomic Pair Distribution Function Analysis
44. Quantitative size-dependent structure and strain determination of CdSe nanoparticles using atomic pair distribution function analysis
45. Atomic-scale structure of nanocrystals by high-energy x-ray diffraction and atomic pair distribution function analysis : study of Fe{sub x}Pd{sub 100-x} (x=0, 26, 28, 48) nanoparticles.
46. Atomic Pair Distribution Function Analysis from the ARCS Chopper Spectrometer at the Spallation Neutron Source
47. Structure of Nanocrystalline MgFe2O4 from X-ray Diffraction, Rietveld and Atomic Pair Distribution Function Analysis
48. Nanoscale structural order from the atomic pair distribution function (PDF): There's plenty of room in the middle
49. Atomic-scale structure of nanocrystalline Ba{sub x}Sr{sub 1-x}TiO{sub 3} (x=1,0.5,0) by X-ray diffraction and the atomic pair distribution function technique.
50. Structure of nanocrystalline GaN from X-ray diffraction, Rietveld and atomic pair distribution function analyses
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