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1998.
Calcination-dependence ofplatinum cluster formation in NaY zeolite: A xenon-129 NMR study. Structure and Reactivity of Surfaces. :269-278.
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1989. Double quantum NMR in solids. Magnetic Resonance in Condensed Matter: Recent developments. :127-129.
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1977. ![application/pdf](/modules/file/icons/application-pdf.png)
"Lighting Up" NMR and MRI in Colloidal and Interfacial Systems. Magnetic Resonance in Colloid and Interface Sciences. :97-106.
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2002. ![application/pdf](/modules/file/icons/application-pdf.png)
"Lighting Up" NMR and MRI in Colloidal and Interfacial Systems. Magnetic Resonance in Colloid and Interface Sciences. :97-106.
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2002. ![application/pdf](/modules/file/icons/application-pdf.png)
2-Dimensional Xe-129 Exchange Nmr Measurements of Xenon Dynamics in Na-a Zeolite. Zeolites and Related Microporous Materials: State of the Art 1994. 84:519-526.
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1994. 2-Dimensional Xe-129 Exchange Nmr Measurements of Xenon Dynamics in Na-a Zeolite. Zeolites and Related Microporous Materials: State of the Art 1994. 84:519-526.
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1994. 3 Geometrical Isomers of a 2,4-Disubstituted Bicyclobutane. Chemical Communications. (7):396-&.
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1968. ![application/pdf](/modules/file/icons/application-pdf.png)
3-Dimensional Variable-Angle Nuclear-Magnetic-Resonance Exchange Spectroscopy without Rotor Axis Hopping. Journal of Chemical Physics. 101(3):1852-1864.
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1994. ![application/pdf](/modules/file/icons/application-pdf.png)
3-Dimensional Variable-Angle Nuclear-Magnetic-Resonance Exchange Spectroscopy without Rotor Axis Hopping. Journal of Chemical Physics. 101(3):1852-1864.
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1994. ![application/pdf](/modules/file/icons/application-pdf.png)
Application of rotational resonance to inhomogeneously broadened systems. Chemical Physics Letters. 251(3-4):223-229.
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1996. ![application/pdf](/modules/file/icons/application-pdf.png)
Applications of Laser-Polarized 129 XE NMR to Biomolecular Assays. Magnetic Resonance Imaging. (21):1235-1239.
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2003. ![application/pdf](/modules/file/icons/application-pdf.png)
Broad-Band Heteronuclear Spin Decoupling in Solids. Chemical Physics Letters. 144(4):324-327.
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1988. ![application/pdf](/modules/file/icons/application-pdf.png)
C-13 Chemical-Shift Tensor Correlation Via Spin-Diffusion in Solid Tropolone Using Switched-Angle Spinning Spectroscopy. Journal of Chemical Physics. 103(22):9844-9854.
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1995. ![application/pdf](/modules/file/icons/application-pdf.png)
C-13 Chemical-Shift Tensor Correlation Via Spin-Diffusion in Solid Tropolone Using Switched-Angle Spinning Spectroscopy. Journal of Chemical Physics. 103(22):9844-9854.
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1995. ![application/pdf](/modules/file/icons/application-pdf.png)
C-13 Chemical-Shift Tensor Correlation Via Spin-Diffusion in Solid Tropolone Using Switched-Angle Spinning Spectroscopy. Journal of Chemical Physics. 103(22):9844-9854.
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1995. ![application/pdf](/modules/file/icons/application-pdf.png)
Chemical analysis using J-coupling multiplets in zero-field NMR. Chemical Physics Letters. 580:160-165.
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2013. ![application/pdf](/modules/file/icons/application-pdf.png)
Coherent Isotropic Averaging in Zero-Field Nuclear-Magnetic-Resonance .1. General-Theory and Icosahedral Sequences. Journal of Chemical Physics. 103(10):3966-3981.
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1995. ![application/pdf](/modules/file/icons/application-pdf.png)
Coherent Isotropic Averaging in Zero-Field Nuclear-Magnetic-Resonance .2. Cubic Sequences and Time-Reversal of Spin Couplings. Journal of Chemical Physics. 103(10):3982-3997.
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1995. ![application/pdf](/modules/file/icons/application-pdf.png)
Correlation of Isotropic and Anisotropic Chemical-Shifts in Solids by 2-Dimensional Variable-Angle-Spinning Nmr. Israel Journal of Chemistry. 32(2-3):161-164.
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1992. ![application/pdf](/modules/file/icons/application-pdf.png)
Cross Polarization from Laser-Polarized Solid Xenon to (Co2)-C-13 by Low-Field Thermal Mixing. Chemical Physics Letters. 205(2-3):168-170.
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1993. ![application/pdf](/modules/file/icons/application-pdf.png)
Decoherence-protected transitions of nitrogen-vacancy centers in 99% 13C-enriched diamond. arXiv:1506.05484.
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2015. ![application/pdf](/modules/file/icons/application-pdf.png)
Design of a conformation-sensitive xenon-binding cavity in the ribose-binding protein. Angewandte Chemie-International Edition. 43(46):6320-6322.
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2004. ![application/pdf](/modules/file/icons/application-pdf.png)
Detection and characterization of xenon-binding sites in proteins by Xe-129 NMR spectroscopy. Journal of Molecular Biology. 322(2):425-440.
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2002. ![application/pdf](/modules/file/icons/application-pdf.png)