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Featured researches published by Yanchun Guo.


Journal of Organic Chemistry | 2013

Unexpected insertion of CO2 into the pentacoordinate P–N Bond: Atherton–Todd-type reaction of hydrospirophosphorane with amines

Shuxia Cao; Peng Gao; Yanchun Guo; Huamin Zhao; Jun Wang; Yifan Liu; Yufen Zhao

The Atherton-Todd-type reaction of pentacoordinate hydrospirophosphoranes with amines was investigated, and a novel CO2 insertion reaction into the pentacoordinate P-N bond under mild conditions was developed. The mechanism and stereochemistry of the CO2 insertion reaction between hydrospirophosphoranes and secondary amines were proposed via a carbon-13 labeling experiment, a (31)P NMR tracing experiment, and X-ray diffraction analysis. The chlorinated spirophosphorane intermediate was first generated with stereoretention of the configuration at phosphorus and subsequently was attacked by a carbamate anion formed from CO2 and a secondary amine. It was found that rear attack of nucleophilic substitution with stereoinversion at pentacoordinate phosphorus was the preferred route, although front attack happened for sterically hindered reactants. The configuration of the CO2 insertion product depended mainly upon the original phosphorus configuration of the hydrospirophosphoranes.


Journal of Mass Spectrometry | 2009

Fragmentation of deprotonated cyclic dipeptides by electrospray ionization mass spectrometry

Yanchun Guo; Shuxia Cao; Donghui Wei; Xiangkun Zong; Xingbo Yuan; Mingsheng Tang; Yufen Zhao

The fragmentation pathways of deprotonated cyclic dipeptides have been studied by electrospray ionization multi-stage mass spectrometry (ESI-MSn) in negative mode. The results showed that the fragmentation pathways of deprotonated cyclic dipeptides depended significantly on the different substituents, the side chains of amino acid residues at the diketopiperazine ring. In the spectra of deprotonated cyclic dipeptides, the ion [M-H-substituent radical]- was firstly observed in the ESI mode. The characteristic fragment ions [M-H-substituent radical]- and [M-H-(substituent-H)]- could be used as the symbols of particular cyclic dipeptides. The hydrogen/deuterium (H/D) exchange experiment, the high-resolution mass spectrometry (Q-TOF) and theoretical calculations were used to rationalize the proposed fragmentation pathways and to verify the differences between the fragmentation pathways. The relative Gibbs free energies (DeltaG) of the product ions and possible fragmentation pathways were estimated using the B3LYP/6-31++G(d, p) model. The results have some potential applications in the structural elucidation and interpretation of the mass spectra of homologous compounds and will enrich the gas-phase ESI-MS ion chemistry of cyclic dipeptides.


Spectroscopy | 2009

ESI-MSn study on the fragmentation of protonated cyclic-dipeptides

Yanchun Guo; Shuxia Cao; Xiangkun Zong; Xin-Cheng Liao; Yufen Zhao

Cyclic dipeptides are relatively simple compounds that can exhibit a great variety of important biological activities. The fragmentation pathways of protonated cyclic dipeptides have been studied by electrospray ionization multistage mass spectrometry (ESI-MS n ). The mass spectra studies of the cyclic dipeptides showed that the cyclic dipeptides with the similar substituents, the side chains of amino acid residues at the diketopiperazine ring, followed the same fragmentation pathway. In the fragmentation spectra of protonated cyclic dipeptides, some characteristic fragment ions were observed and could be used to distinguish the cyclic dipeptides. The hydrogen/deuterium (H/D) exchange experiment and the high-resolution mass spectrometry (Q-TOF) were used to verify and rationalize the proposed fragmentation pathways. These observations may have some potential applications in the structural elucidation and interpretation of the mass spectra of homologous compounds.


Journal of Mass Spectrometry | 2011

Fragmentation studies of pentacoordinated bisaminoacylspirophosphoranes by negative electrospray ionization mass spectrometry

Shuxia Cao; Yanchun Guo; Xinshuai Wu; Huamin Zhao; Yufen Zhao

Fragmentation pathways of a series of pentacoordinated bisaminoacylspirophosphoranes were elucidated by electrospray ionization multistage mass spectrometry (ESI-MS(n)) in negative mode. The deprotonated ions of pentacoordinated bisaminoacylspirophosphoranes tend to eliminate a corresponding amino acid to form base peak. The hydrogen/deuterium exchange experiment, the high-resolution mass spectrometry, (13)C stable isotope labeling experiment and theoretical calculations were used to rationalize the proposed fragmentation pathways and to verify the differences between the fragmentation pathways. The results indicate that the negative molecular ions of pentacoordinated bisaminoacylspirophosphoranes dissociate through its open-chain tricoordinated tautomers. The relative Gibbs free energies (ΔG) of the product ions and proposed fragmentation pathways were estimated using the B3LYP/6-31 + + G(d, p) model. The results have some potential applications in the identification structures of similar spirophosphorane compounds by ESI-MS(n).


Phosphorus Sulfur and Silicon and The Related Elements | 2015

The 3JCCNP Coupling Constants of Pentacoordinate Spirophosphorane Derivatives: As a Method to Assign Relative Configuration

Shuxia Cao; Zhongfei Zhou; Wang Dai; Pei Zhao; Yanchun Guo; Yufen Zhao

GRAPHICAL ABSTRACT Abstract The phosphorus-carbon coupling constant 3JCCNP was found to be sensitive to the relative configuration of pentacoordinate spirophosphorane diastereoisomers, while the 2JCNP value remained almost unchanged. The 3JCCNP value of the spirophosphorane with ΛP configuration at phosphorus was obviously larger than that with ΔP configuration. The rule, 3JCCNP (ΛP) > 3JCCNP (ΔP), for pentacoordinate spirophosphorane diastereoisomers was used to assign the configurations of new alkoxy spirophosphorane derivatives, and satisfactory results were achieved. The results showed that the coupling constant 3JCCNP might be used as a reliable probe for the configuration of pentacoordinate spirophosphorane derivatives.


Journal of Mass Spectrometry | 2018

The investigation of substituent effects on the fragmentation pathways of pentacoordinated phenoxyspirophosphoranes by ESI-MSn

Xiaoyan Cui; Can Sun; Pei Zhao; Yanyan Wang; Yanchun Guo; Yufen Zhao; Shuxia Cao

The fragmentation pathways of pentacoordinated phenoxyspirophosphoranes were investigated in the positive mode by electrospray ionization multistage mass spectrometry. The results demonstrate that the sodium adducts of the title compounds undergo two competitive fragmentation pathways, and the fragmentation patterns are heavily dependent on the various substituent patterns at the phenolic group. An electron-withdrawing substituent at the ortho-position always results in the removal of a corresponding phenol analogue, while cleavage by spiroring opening becomes the predominant fragmentation pathway if an electron-donating substituent is at the phenolic group. The substituent effects on the competitive fragmentation pathways were further elucidated by theoretical calculations, single crystal structure analysis, and high-resolution mass spectrometry. The results contribute to the understanding of the gas-phase fragmentation reactions and the structure identification of spirophosphorane analogues by electrospray ionization multistage mass spectrometry.


Journal of Mass Spectrometry | 2017

Fragmentation studies of sartans by electrospray ionization mass spectrometry

M. Peng; S. Li; J. Wu; Yanchun Guo; Shuxia Cao; Yufen Zhao

Sartans and related analogues with 5-oxo-l, 2, 4-oxadiazole ring and tetrazole ring are investigated in detail using collision-induced dissociation (CID) method in positive ion mode by electrospray ionization tandem mass spectrometry (ESI-MSn ). It is found that the protonated sartans and related analogues tend to form the N-substituted-3-substituted phenanthridin-6-amine ion which has a large conjugative structure. The possible fragmentation pathways were proposed for the first time, and the key structure of product ions was confirmed by high resolution tandem mass spectrometry and theoretical calculation. It is very helpful for understanding the intriguing roles of sartans analogues in fragmentation reactions and enriching the knowledge of the gas-phase chemistry of the oxadiazole and tetrazole ring. Copyright


Chemical Research in Chinese Universities | 2006

Studies on Fragmentation Pathways of N-Ethoxy (phenyl) phosphoryl Amino Acids by Electrospray Ionization Tandem Mass Spectrometry

Shuxia Cao; Hong-wei Li; Yanchun Guo; Xin-Cheng Liao; Yufen Zhao

The positive and negative ESI-MS/MS spectra of N-ethoxy(phenyl) phosphoryl amino acids (EPP-AA) were investigated by electrospray ionization (ESI) ion trap mass spectrometry. The fragmentation pathways of [M + Na]+ and [M − H]− ions are proposed and rationalized. The observation may have some potential applications in the interpretation of the MS/MS spectra of novel N-phosphoryl compounds. The complexity of MS/MS spectra of EPP-AA [M + Na]+ ions is decreased compared with that of N-dialkyloxyphosphoryl amino acid. Therefore, the new phosphonamidate method may be considered one of the superior methods that can be used in sequencing peptides and proteins extensively.


Tetrahedron Letters | 2012

Preliminary stereochemical investigation of the Atherton–Todd-type reaction between valine hydrospirophosphorane and phenols

Shuxia Cao; Yanchun Guo; Jun Wang; Lin Qi; Peng Gao; Huamin Zhao; Yufen Zhao


Chinese Chemical Letters | 2015

Synthesis and antitumor activity of α-aminophosphonate derivatives containing thieno[2,3-d]pyrimidines

Yanchun Guo; Jing Li; Jiao-Li Ma; Zhi-Ran Yu; Hai-Wei Wang; Wen-Juan Zhu; Xin-Cheng Liao; Yufen Zhao

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Pei Zhao

Zhengzhou University

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Peng Gao

Zhengzhou University

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Wang Dai

Zhengzhou University

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Can Sun

Zhengzhou University

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Jun Wang

Zhengzhou University

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