Nuclear magnetic resonance(NMR)spectroscopy is a powerful tool for analyzing molecular structure and composition.However,traditional NMR experiments suffer from long acquisition times,especially in multidimensional NM...Nuclear magnetic resonance(NMR)spectroscopy is a powerful tool for analyzing molecular structure and composition.However,traditional NMR experiments suffer from long acquisition times,especially in multidimensional NMR spectroscopy.This problem,to some extent,limits broader applications of NMR techniques.Various methods have been proposed to accelerate sampling,including non-uniform sampling(NUS),multi-FID acquisition(MFA),Hadamard encoding,Fourier encoding,spatial encoding Ultrafast 2D NMR(UF2DNMR),and so on.The review focuses on rapid sampling methods developed in contemporary China,introducing their fundamental principles and applications while discussing their respective advantages and disadvantages.展开更多
从骨碎补(Drynaria fortunei)的乙酸乙酯萃取物中分离得到了2个黄酮苷类化合物,结合其理化性质,并通过ESI-MS,IR,1 H NMR,13 C NMR,1 H-1 H COSY,HSQC,HMBC等多种波谱学方法进行结构鉴定,鉴定化合物1和2分别为山奈酚-3-O-β-D-6″′-乙...从骨碎补(Drynaria fortunei)的乙酸乙酯萃取物中分离得到了2个黄酮苷类化合物,结合其理化性质,并通过ESI-MS,IR,1 H NMR,13 C NMR,1 H-1 H COSY,HSQC,HMBC等多种波谱学方法进行结构鉴定,鉴定化合物1和2分别为山奈酚-3-O-β-D-6″′-乙酰基-吡喃葡萄糖-(1→4)-α-L-吡喃鼠李糖苷及山奈酚-3-O-β-D-吡喃葡萄糖-(1→4)-α-L-吡喃鼠李糖苷,并对二者的1 H NMR化学位移信号进行了全归属,纠正了文献中C-5和C-9的归属错误.展开更多
利用1 H NMR、13 C NMR、COSY、HSQC和HMBC等多种核磁共振技术,结合MS技术,确认了皂苷Tb的2个糖基化产物的结构,即偏诺皂苷元-3-O-α-D-葡萄糖-(1→3)-[α-L-鼠李糖-(1→2)]-β-D-葡萄糖苷(1)和偏诺皂苷元-3-O-α-D-葡萄糖-(1→4)-α-D...利用1 H NMR、13 C NMR、COSY、HSQC和HMBC等多种核磁共振技术,结合MS技术,确认了皂苷Tb的2个糖基化产物的结构,即偏诺皂苷元-3-O-α-D-葡萄糖-(1→3)-[α-L-鼠李糖-(1→2)]-β-D-葡萄糖苷(1)和偏诺皂苷元-3-O-α-D-葡萄糖-(1→4)-α-D-葡萄糖-(1→3)-[α-L-鼠李糖-(1→2)]-β-D-葡萄糖苷(2).化合物1和2为新化合物,对其1 H NMR和13 CNMR信号分别进行了全归属和详细分析.展开更多
基金financially supported by the National Natural Science Foundation of China(grant numbers 22174118,12411530077,and 22374124).
文摘Nuclear magnetic resonance(NMR)spectroscopy is a powerful tool for analyzing molecular structure and composition.However,traditional NMR experiments suffer from long acquisition times,especially in multidimensional NMR spectroscopy.This problem,to some extent,limits broader applications of NMR techniques.Various methods have been proposed to accelerate sampling,including non-uniform sampling(NUS),multi-FID acquisition(MFA),Hadamard encoding,Fourier encoding,spatial encoding Ultrafast 2D NMR(UF2DNMR),and so on.The review focuses on rapid sampling methods developed in contemporary China,introducing their fundamental principles and applications while discussing their respective advantages and disadvantages.
文摘从骨碎补(Drynaria fortunei)的乙酸乙酯萃取物中分离得到了2个黄酮苷类化合物,结合其理化性质,并通过ESI-MS,IR,1 H NMR,13 C NMR,1 H-1 H COSY,HSQC,HMBC等多种波谱学方法进行结构鉴定,鉴定化合物1和2分别为山奈酚-3-O-β-D-6″′-乙酰基-吡喃葡萄糖-(1→4)-α-L-吡喃鼠李糖苷及山奈酚-3-O-β-D-吡喃葡萄糖-(1→4)-α-L-吡喃鼠李糖苷,并对二者的1 H NMR化学位移信号进行了全归属,纠正了文献中C-5和C-9的归属错误.
文摘利用1 H NMR、13 C NMR、COSY、HSQC和HMBC等多种核磁共振技术,结合MS技术,确认了皂苷Tb的2个糖基化产物的结构,即偏诺皂苷元-3-O-α-D-葡萄糖-(1→3)-[α-L-鼠李糖-(1→2)]-β-D-葡萄糖苷(1)和偏诺皂苷元-3-O-α-D-葡萄糖-(1→4)-α-D-葡萄糖-(1→3)-[α-L-鼠李糖-(1→2)]-β-D-葡萄糖苷(2).化合物1和2为新化合物,对其1 H NMR和13 CNMR信号分别进行了全归属和详细分析.