Jin-Tang Wang
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Explore the profile of Jin-Tang Wang including associated specialties, affiliations and a list of published articles.
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41
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407
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Recent Articles
1.
Liu L, Xie M, Zhou W, Wang J, Wang J, Khan A, et al.
Nat Prod Res
. 2021 Feb;
36(6):1536-1542.
PMID: 33567911
Phytochemical investigation of led to a new aspidosperma-aspidosperma bisindole alkaloid (BIA), bis-19-hydroxyvenalstonidine (), together with three known BIAs (-). The structures were established by extensive analysis of their HRESIMS, NMR...
2.
Li F, Liu L, Liu Y, Wang J, Yang M, Khan A, et al.
Phytochemistry
. 2021 Feb;
184:112673.
PMID: 33556841
The Melodinus species have been proved to be good resources of bisindole alkaloids. Six bisindole alkaloids were isolated from the leaves and stems of Melodinus cochinchinensis (Lour.) Merr. guided by...
3.
Zheng F, Liao C, Fan Q, Chen H, Zhao X, Xie Z, et al.
Curr Med Sci
. 2020 Mar;
40(2):275-280.
PMID: 32207032
Since December 2019, COVID-19 has occurred unexpectedly and emerged as a health problem worldwide. Despite the rapidly increasing number of cases in subsequent weeks, the clinical characteristics of pediatric cases...
4.
Li F, Li X, Tan L, Wang J, Yao W
Dalton Trans
. 2019 Jan;
48(6):2160-2169.
PMID: 30672533
Two new Evans-Showell-type polyoxometalate (POM)-based metal-organic complexes, namely {Cu3(L1)1.5(H2O)5[Co2Mo10H4O38]}·5H2O (1), {[Cu(L2)0.5(H2O)2]2[Co2Mo10H4O38]}·6H2O (2) (L1 = N,N'-bis(2-pyrazinecarboxamide)-1,4-butane, L2 = N,N'-bis(2-pyrazinecarboxamide)-1,6-hexane), were successfully synthesized and structurally characterized by single-crystal X-ray diffraction, elemental analysis,...
5.
Gao Y, Zhang W, He J, Wang J
Ying Yong Sheng Tai Xue Bao
. 2013 Sep;
24(5):1313-9.
PMID: 24015549
A sampling plot investigation was conducted on the seedling regeneration, stand growth, species diversity, and soil characteristics in a Pinus tabulaeformis plantation in Huanglong Mountain on the Loess Plateau of...
6.
Cang H, Bian J, Wang S, Wang J
Acta Crystallogr Sect E Struct Rep Online
. 2011 May;
66(Pt 7):o1804.
PMID: 21588013
In the title compound, C(18)H(13)N(3)O, the diaza-fluorene ring system is almost coplanar (r.m.s. deviation = 0.0640 Å) and subtends an angle of 61.5 (4)° with the plane of the meth-oxy-substituted...
7.
Cang H, Ji J, Wang S, Wang J
Acta Crystallogr Sect E Struct Rep Online
. 2011 May;
66(Pt 7):o1802.
PMID: 21588011
In the title compound, C(11)H(7)N(3), the diaza-fluorene rings are almost coplanar with an r.m.s. deviation of 0.0160 Å. In the crystal structure, C-H⋯N hydrogen bonds link mol-ecules into sheets parallel...
8.
Guo L, Tan H, Wang J, Wang J
Acta Crystallogr Sect E Struct Rep Online
. 2011 May;
65(Pt 7):o1488.
PMID: 21582789
The title compound, C(10)H(12)N(2)O(3), contains three mol-ecules in the asymmetric unit. In the crystal structure, inter-molecular N-H⋯O inter-actions link the mol-ecules into chains along the b axis. The crystal structure...
9.
Wang G, Zhuang L, Wang J
Acta Crystallogr Sect E Struct Rep Online
. 2011 May;
65(Pt 2):o293.
PMID: 21581903
The title compound, C(20)H(20)N(2)S(2), was prepared by the reaction of suberic acid and 2-amino-thio-phenol under microwave irradiation. The mol-ecule lies on an inversion center.
10.
Cang H, Jin D, Wang S, Xu B, Wang J
Acta Crystallogr Sect E Struct Rep Online
. 2011 May;
65(Pt 1):o6.
PMID: 21581701
In the mol-ecule of the title compound, C(18)H(13)N(3), the 4,5-diaza-fluorenyl-idene unit is nearly planar and is oriented at a dihedral angle of 66.31 (1)° with respect to the benzene ring....