| JKMRS Volume 26, No 4, pp 51, Efficient baseline suppression v... | |
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| 2022년 12월 20일 / 조회수: 556 | |
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Efficient baseline suppression via TIP and modified DEPTH Hyun
Namgoong* R&D
Division, Kolon Industries, Seoul 07793, Republic of Korea Received Dec 6, 2022; Revised Dec
19, 2022; Accepted Dec 20, 2022 Abstract The
baseline flattened NMR spectrum has been achieved by several methodologies
including pulse manipulation with a series of phase cycling. The background
signal inherent in the probe is also main source of baseline distortion both in
solution and solid NMR. The simple direct
polarization with 90o pulse flipping the magnetization from the z-axis
onto the receiver coil requires the strong rf pulse enough to encompass the
wide frequency range to excite the resonance of interest nuclei. Albeit the
perfect polarization 90o pulse, the signal from the unwanted magnetic
fields such as background signal can not be completely suppressed by suitable
phase cycling. Moreover, slowly baseline wiggling signal from the low g
nuclei is not easy to eliminate with multiple pulse manipulation. So there is
still need to contrive the new scheme for that purpose in an adroit manner. In
this article new triple pulse excitation schemes for TIP and modified DEPTH
pulse sequence are analytically examined in terms of arbitrary phase and flip
angle of pulse. The suitable phase cycling for these pulse trains is necessary
for the good sensitivity and resolution of the spectrum. It is observed that
the 13C sensitivity TIP experiment is almost equal to the CP/MAS
with modified DEPTH sequence, both of which are applicable to both solid and
solution state NMR. Keywords DEPTH, TIP pulse
sequence, polarization, baseline suppression, phase cycling
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| 첨부파일 | 3_NamH.pdf |