Parella Teodor
Servei de Ressonància Magnètica Nuclear, Universitat Autònoma de Barcelona, E-08193 Bellaterra, Barcelona, Catalonia, Spain.
Magn Reson Chem. 2018 Apr;56(4):230-250. doi: 10.1002/mrc.4706. Epub 2018 Feb 14.
Two-dimensional J-resolved (Jres) NMR experiments offer a simple, user-friendly spectral representation where the information of coupling constants and chemical shifts are separated into two orthogonal frequency axis. Since its initial proposal 40 years ago, Jres has been the focus of considerable interest both in improving the basic pulse sequence and in its successful application to a wide range of studies. Here, the latest developments in the design of novel Jres pulse schemes are reviewed, mainly focusing on obtaining pure absorption lineshapes, minimizing strong coupling artifacts, and also optimizing sensitivity and experimental measurements. A discussion of several Jres versions for the accurate measurement of a different number of homonuclear (J ) and heteronuclear (J ) coupling constants is presented, accompanied by some illustrative examples.
二维J分辨(Jres)核磁共振实验提供了一种简单、用户友好的光谱表示方法,其中耦合常数和化学位移信息被分离到两个正交的频率轴上。自40年前首次提出以来,Jres一直是人们相当感兴趣的焦点,无论是在改进基本脉冲序列方面,还是在其成功应用于广泛的研究方面。本文综述了新型Jres脉冲序列设计的最新进展,主要集中在获得纯吸收线形、最小化强耦合伪影以及优化灵敏度和实验测量方面。文中还讨论了几种用于精确测量不同数量同核(J)和异核(J)耦合常数的Jres版本,并伴有一些示例说明。