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相关概念视频

¹³C NMR: Distortionless Enhancement by Polarization Transfer (DEPT)01:20

¹³C NMR: Distortionless Enhancement by Polarization Transfer (DEPT)

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When proton-coupled carbon-13 spectra are simplified by a broadband proton decoupling technique, structural information about the coupled protons is lost. Distortionless enhancement by polarization transfer (DEPT) is a technique that provides information on the number of hydrogens attached to each carbon in a molecule. While the DEPT experiment utilizes complex pulse sequences, the pulse delay and flip angle are specifically manipulated. The resulting signals have different phases depending on...
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¹³C NMR: ¹H–¹³C Decoupling01:04

¹³C NMR: ¹H–¹³C Decoupling

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The probability of having two carbon-13 atoms next to each other is negligible because of the low natural abundance of carbon-13. Consequently, peak splitting due to carbon-carbon spin-spin coupling is not observed in spectra. However, protons up to three sigma bonds away split the carbon signal according to the n+1 rule, resulting in complicated spectra.
A broadband decoupling technique is used to simplify these complex, sometimes overlapping, signals. Broadband decoupling relies on a...
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Two-Dimensional (2D) NMR: Overview01:12

Two-Dimensional (2D) NMR: Overview

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The 1D NMR spectrum of large and complex molecules like natural products has complicated splitting patterns and overlapping signals, which can be easily interpreted using 2-dimensional (2D) NMR. Unlike 1D NMR, 2D NMR has two frequency axes that provide the coupling information between the nucleus A and nucleus B in a molecule. The process from which 2D spectra are obtained has four steps.
The first step is the preparation period, during which nucleus A is excited with a radiofrequency pulse....
858
2D NMR: Overview of Heteronuclear Correlation Techniques01:18

2D NMR: Overview of Heteronuclear Correlation Techniques

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Heteronuclear correlation spectroscopy is an analytical technique that investigates the coupling between different types of nuclei, often a proton and an X-nucleus, such as carbon-13 or nitrogen-15. This method is commonly used in nuclear magnetic resonance (NMR) spectroscopy to gain insights into complex chemical compounds' structural and compositional aspects. A typical heteronuclear correlation spectrum displays X-nucleus chemical shifts on one axis and a proton spectrum on the other...
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NMR Spectrometers: Overview01:20

NMR Spectrometers: Overview

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NMR spectrometers consist of a strong magnet, a radiofrequency transmitter, and a detector attached to a computer console for recording spectra of samples containing NMR-active nuclei. In first-generation NMR instruments called continuous-wave spectrometers, the resonance frequencies of the nuclei are determined by frequency-sweep or field-sweep methods. The magnetic field strength is fixed and the rf signal is swept in the former, while the radiofrequency signal is fixed and the magnetic field...
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NMR Spectrometers: Radiofrequency Pulses and Pulse Sequences01:17

NMR Spectrometers: Radiofrequency Pulses and Pulse Sequences

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A pulse is a short burst of radio waves distributed over a range of frequencies that simultaneously excites all the nuclei in the sample. Upon passing a radio frequency pulse along the x-axis, the nuclei absorb energy corresponding to their Larmor frequencies and achieve resonance. This shifts the net magnetization vector from the z-axis toward the transverse plane. This angle of rotation of the magnetization vector, or the flip angle, is proportional to the duration and intensity of the pulse.
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连续波 (CW) 照片CIDNPNMR光谱学:一个教程

Lars T Kuhn1, Míriam Pérez-Trujillo2

  • 1Institut für Physikalische Chemie, Albert-Ludwigs-Universität Freiburg, Freiburg i. Br., Germany.

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光化学诱导的动态核极化 (光CIDNP) 增强了研究激素反应和生物分子的NMR灵敏度. 本教程指导用户进行1D光CIDNP核磁共振实验,并提供实用设置和分析建议.

关键词:
其他国家超极化在位光谱摄影化学照片-CIDNP

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科学领域:

  • 磁共振光谱学
  • 物理化学
  • 生物物理化学

背景情况:

  • 光化学诱导的动态核极化 (光CIDNP) 是一种核自旋选择性现象.
  • 传统上用于激素反应的机制研究和探测生物分子相互作用.
  • 最近的进展和实验室NMR使人们重新对光CIDNP作为敏感的超极化方法感兴趣.

研究的目的:

  • 为非专家用户提供关于进行1D质子 (1H) 和异质核光CIDNP核磁共振实验的实用指南.
  • 详细说明实验设置,包括光源,合和光敏感剂的选择.
  • 解释照片CIDNP的数据采集,分析和样本准备.

主要方法:

  • 使用高场NMR光谱仪和持续波 (CW) 照明.
  • 合适的1D 1H和异质核光CIDNP脉冲方案的描述.
  • 照片CIDNP特定的获取参数和光源触发的解释.

主要成果:

  • 提出了选择合适的实验设置的策略.
  • 提供关于对光 CIDNP 的样本准备的实用建议.
  • 提供有关1D照片CIDNP数据的有意义获取和分析的指导.

结论:

  • 照片CIDNP已经成熟成为一种多功能和高度敏感的NMR超极化技术.
  • 本教程为用户提供了实施1D照片CIDNP NMR的知识.
  • 该方法为化学和生物学中的各种应用提供了更高的灵敏度.