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Figures
User Manual Version 002
BRUKER BIOSPIN
311 (327)
Figure 7.3. Comparison of a CPTOSS and CPMAS Experiment ...............................................108
Figure 7.4. CPTOSS243 Experiment on Tyrosine HCl at 6.5 kHz .............................................109
Figure 7.5. CPTOSS Experiment on Tyrosine HCl at 6.5 kHz ................................................... 110
Figure 7.6. Pulse Program for SELTICS................................................................................... 111
Figure 7.7. SELTICS at 6.5 kHz Sample Rotation on Tyrosine HCl. .......................................... 111
Figure 7.8. Cholesterylacetate Spectrum Using Sideband Suppression .................................... 112
Figure 7.9. Block Diagram of the Non-quaternary Suppression Experiment .............................. 113
Figure 7.10. Glycine 13C CPMAS NQS Experiment with a Dephasing Delay.............................. 114
Figure 7.11. Tyrosine 13C CPMAS NQS Experiment with TOSS ................................................ 115
Figure 7.12. Block Diagram of the CPPI Experiment. ................................................................. 116
Figure 7.13. CPMAS Spectrum of Tyrosine.HCl at 6.5 kHz......................................................... 117
Figure 8.1. The FSLG Hetcor Experiment ................................................................................120
Figure 8.2. The “12...” icon, and the ased icon in eda. .............................................................121
Figure 8.3. The ased Display ...................................................................................................122
Figure 8.4. FSLG Hetcor Spectrum Tyrosine HCl .....................................................................125
Figure 8.5. FSLG Hetcor Spectrum Tyrosine HCl .....................................................................126
Figure 9.1. Comparison of HETCOR with and without 13C-decoupling .....................................128
Figure 9.2. HETCOR Using Windowless Phase Ramps............................................................130
Figure 9.3. HETCOR on tyrosine *HCl without (left) and with LG contact (1msec contact) ........136
Figure 10.1. RFDR Pulse Sequence for 2D CPMAS Exchange Experiment ................................138
Figure 10.2. The “123” Icon in the Menu Bar of the Data Windows Acquisition Parameter Page .139
Figure 10.3. 13C Histidine Signal Decay as a Function of the RFDR Mixing Time ......................141
Figure 10.4. 2D RFDR Spectrum of 13C fully Labelled Histidine (RFDR mixing time 1.85 ms). ...142
Proton Driven Spin Diffusion (PDSD)
Figure 11.1. CPSPINDIFF Pulse Sequence ...............................................................................145
Figure 11.2. The Acquisition Parameter Window (eda) ..............................................................147
Figure 11.3. POPT Result for the cw Decoupling Power Variation ..............................................150
Figure 11.4. 13C CPSPINDIFF of fully labeled tyrosine*HCl, spinning at 22 kHz, 4.6 msec mix. Up-
Figure 11.5. Comparison of DARR/PDSD ..................................................................................152
Figure 11.6. 13C DARR of Fully Labelled Ubiquitine Spinning at 13 kHz ....................................153
Figure 12.1. REDOR Pulse Sequence .......................................................................................157
Figure 12.2. 2D data set after “xf2” processing. .........................................................................160
Figure 12.3. T1/T2 Relaxation for further Analysis of the Data Figure and the Analysis Interface 161
Figure 12.4. Saving Data to Continue to the Relaxation Window ................................................161
Figure 12.5. Setting the Correct Analysis Parameter..................................................................162
Figure 12.6. Plot of the Normalized Signal Intensity Versus the Evolution Time ..........................163
Figure 12.7. Experimental data for the glycine 13C{15N}-REDOR ..............................................164
Figure 12.8. Comparison of Experimental Data to a Simulation with Reduced Dipolar Coupling .165
Figure 12.9. Experimental data with the corresponding M2 parabolic analysis............................ 166
Содержание Solid State NMR
Страница 1: ...Version Bruker BioSpin think forward NMR Spectroscopy Solid State NMR 002 AVANCE Solids User Manual...
Страница 8: ...8 BRUKER BIOSPIN User Manual Version 002 Contents...
Страница 14: ...14 327 BRUKER BIOSPIN User Manual Version 002 Test Samples...
Страница 104: ...104 327 BRUKER BIOSPIN User Manual Version 002 Practical CP MAS Spectroscopy on Spin 1 2 Nuclei...
Страница 118: ...118 327 BRUKER BIOSPIN User Manual Version 002 Basic CP MAS Experiments...
Страница 122: ...122 327 BRUKER BIOSPIN User Manual Version 002 FSLG HETCOR Figure 8 3 The ased Display...
Страница 154: ...154 327 BRUKER BIOSPIN User Manual Version 002 Proton Driven Spin Diffusion PDSD...
Страница 172: ...172 327 BRUKER BIOSPIN User Manual Version 002 SUPER Figure 13 3 The Acquisition Parameter Window eda...
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Страница 192: ...192 327 BRUKER BIOSPIN User Manual Version 002 Symmetry Based Recoupling...
Страница 212: ...212 327 BRUKER BIOSPIN User Manual Version 002 Relaxation Measurements...
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