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In situ evaluation of interfacial affinity in CeI(2)based hybrid nanoparticles by pulsed field gradient NMR

(2005) CHEMICAL COMMUNICATIONS. p.1019-1021
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MLA
RIBOT, F, V ESCAX, C ROILAND, et al. “In Situ Evaluation of Interfacial Affinity in CeI(2)based Hybrid Nanoparticles by Pulsed Field Gradient NMR.” CHEMICAL COMMUNICATIONS 8 (2005): 1019–1021. Print.
APA
RIBOT, F., ESCAX, V., ROILAND, C., SANCHEZ, C., Martins, J., BIESEMANS, M., VERBRUGGEN, I., et al. (2005). In situ evaluation of interfacial affinity in CeI(2)based hybrid nanoparticles by pulsed field gradient NMR. CHEMICAL COMMUNICATIONS, (8), 1019–1021.
Chicago author-date
RIBOT, F, V ESCAX, C ROILAND, C SANCHEZ, José Martins, M BIESEMANS, I VERBRUGGEN, and R WILLEM. 2005. “In Situ Evaluation of Interfacial Affinity in CeI(2)based Hybrid Nanoparticles by Pulsed Field Gradient NMR.” Chemical Communications (8): 1019–1021.
Chicago author-date (all authors)
RIBOT, F, V ESCAX, C ROILAND, C SANCHEZ, José Martins, M BIESEMANS, I VERBRUGGEN, and R WILLEM. 2005. “In Situ Evaluation of Interfacial Affinity in CeI(2)based Hybrid Nanoparticles by Pulsed Field Gradient NMR.” Chemical Communications (8): 1019–1021.
Vancouver
1.
RIBOT F, ESCAX V, ROILAND C, SANCHEZ C, Martins J, BIESEMANS M, et al. In situ evaluation of interfacial affinity in CeI(2)based hybrid nanoparticles by pulsed field gradient NMR. CHEMICAL COMMUNICATIONS. ROYAL SOC CHEMISTRY; 2005;(8):1019–21.
IEEE
[1]
F. RIBOT et al., “In situ evaluation of interfacial affinity in CeI(2)based hybrid nanoparticles by pulsed field gradient NMR,” CHEMICAL COMMUNICATIONS, no. 8, pp. 1019–1021, 2005.
@article{302237,
  author       = {RIBOT, F and ESCAX, V and ROILAND, C and SANCHEZ, C and Martins, José and BIESEMANS, M and VERBRUGGEN, I and WILLEM, R},
  issn         = {1359-7345},
  journal      = {CHEMICAL COMMUNICATIONS},
  language     = {eng},
  number       = {8},
  pages        = {1019--1021},
  publisher    = {ROYAL SOC CHEMISTRY},
  title        = {In situ evaluation of interfacial affinity in CeI(2)based hybrid nanoparticles by pulsed field gradient NMR},
  year         = {2005},
}

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