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1811 33
1812 2
1815 4
1816 49
1817 1
1818 26
1819 13
1820 18
1821 49
1822 22
1823 3
1824 19
1825 36
1826 44
1827 74
1828 70
1829 73
1830 13
1831 5
1832 9
1833 15
1834 110
1835 45
1836 78
1837 21
1838 12
1839 285
1840 100
1841 309
1842 77
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1867 599
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1872 608
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1874 379
1875 371
1876 342
1877 335
1878 401
1879 400
1880 331
1881 1317
1882 641
1883 858
1884 395
1885 520
1886 448
1887 879
1888 419
1889 379
1890 391
1891 318
1892 446
1893 503
1894 501
1895 788
1896 597
1897 683
1898 589
1899 472
1900 529
1901 439
1902 473
1903 478
1904 814
1905 503
1906 456
1907 565
1908 514
1909 1324
1910 526
1911 547
1912 784
1913 538
1914 524
1915 579
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1923 810
1924 580
1925 644
1926 1023
1927 1068
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1929 987
1930 1161
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1932 1005
1933 1069
1934 1069
1935 1062
1936 1090
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1938 1220
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1940 970
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1945 2042
1946 4558
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1950 10943
1951 14227
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1953 14625
1954 14333
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1956 14769
1957 15273
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1972 42937
1973 45094
1974 44848
1975 62164
1976 65406
1977 64613
1978 67054
1979 70757
1980 74392
1981 77528
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1983 89207
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1986 102154
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1993 148630
1994 152696
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1998 172725
1999 182742
2000 202037
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2004 250519
2005 276748
2006 299517
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The following term was not found in PubMed: 5-Dimethyl-3-thiofuroylfuran
Page 1
2,5-Bis(1,3-dithiol-2-yl-idene)-1,3-dithiol-ane-4-thione.
Ueda K, Suzuki K, Kunimoto K, Yoza K. Ueda K, et al. Acta Crystallogr Sect E Struct Rep Online. 2012 Jan;68(Pt 1):o52. doi: 10.1107/S1600536811051518. Epub 2011 Dec 10. Acta Crystallogr Sect E Struct Rep Online. 2012. PMID: 22259554 Free PMC article.
The mol-ecular skeleton is almost planar: the average distance of the atoms from their mean plane is 0.128 (7) A in the ordered mol-ecule, and 0.088 (5) and 0.123 (2) A in the major and minor disorder components, respectively. The ordered and disordered mol-ecules form sep …
The mol-ecular skeleton is almost planar: the average distance of the atoms from their mean plane is 0.128 (7) A in the ordered mol-ecule, a …
Synthesis and Structure of [eta(5)-1,2,4-(Me(3)Si)(3)C(5)H(2)](2)Th(bipy) and Its Reactivity toward Small Molecules.
Wang S, Wang D, Heng Y, Li T, Ding W, Zi G, Walter MD. Wang S, et al. Inorg Chem. 2024 Apr 9. doi: 10.1021/acs.inorgchem.4c00635. Online ahead of print. Inorg Chem. 2024. PMID: 38591749
Halide exchange of (Cp(3tms))(2)ThCl(2) (1; Cp(3tms) = eta(5)-1,2,4-(Me(3)Si)(3)C(5)H(2)) with Me(3)SiI furnishes (Cp(3tms))(2)ThI(2) (2), which is then reduced with potassium graphite (KC(8)) in the presence of 2,2'- …
Halide exchange of (Cp(3tms))(2)ThCl(2) (1; Cp(3tms) = eta(5)-1,2,4-(Me(3)Si)(3)C(5)H(2)) with Me(3)SiI furnishe …
2-{[2,2-Bis(diethyl-amino)-ethan-2-ylium-thio-yl]sulfan-yl}-1,1-bis-(diethyl-amino)-ethyl-ium bis-(perchlorate).
Ohno K, Sugaya T, Fujihara T, Nagasawa A. Ohno K, et al. Acta Crystallogr Sect E Struct Rep Online. 2012 Sep 1;68(Pt 9):o2753-4. doi: 10.1107/S1600536812035453. Epub 2012 Aug 23. Acta Crystallogr Sect E Struct Rep Online. 2012. PMID: 22969636 Free PMC article.
The title salt, C(20)H(42)N(4)S(2) (2+).2ClO(4) (-), was obtained from the reaction of bis-(diethyl-amino)-carbeniumdithio-carboxyl-ate, (Et(2)N)(2)C(2)S(2), with Fe(ClO(4))(2).6H(2)O in CH(2)Cl(2). ...The N( …
The title salt, C(20)H(42)N(4)S(2) (2+).2ClO(4) (-), was obtained from the reaction of bis-(diethyl-amino)-carbeniumdithio-car …
Structural diversity among copper(I) ethylene adducts of 3,6-bis(2-pyridyl)-1,2,4,5-tetrazine.
Maekawa M, Miyazaki T, Sugimoto K, Okubo T, Kuroda-Sowa T, Munakata M, Kitagawa S. Maekawa M, et al. Dalton Trans. 2013 Mar 28;42(12):4258-66. doi: 10.1039/c2dt32649c. Dalton Trans. 2013. PMID: 23340488
The reaction of Cu(ClO(4)).6H(2)O, Cu turnings, and 3,6-bis(2-pyridyl)-1,2,4,5-tetrazine (bptz) in Me(2)CO under C(2)H(4) afforded brownish-red needle crystals of {[Cu(2)(bptz(-))(C(2)H(4))(2)](ClO(4))}(2) (1) as a mi …
The reaction of Cu(ClO(4)).6H(2)O, Cu turnings, and 3,6-bis(2-pyridyl)-1,2,4,5-tetrazine (bptz) in Me(2)CO under …
Facile Light-Induced Transformation of [Ru(II)(bpy)(2)(bpyNO)](2+) to [Ru(II)(bpy)(3)](2).
Karbakhsh Ravari A, Pineda-Galvan Y, Huynh A, Ezhov R, Pushkar Y. Karbakhsh Ravari A, et al. Inorg Chem. 2020 Oct 5;59(19):13880-13887. doi: 10.1021/acs.inorgchem.0c01446. Epub 2020 Sep 14. Inorg Chem. 2020. PMID: 32924462
Ru-based coordination compounds have important applications as photosensitizers and catalysts. [Ru(II)(bpy)(2)(bpyNO)](2+) (bpy = 2,2'-bipyridine and bpyNO = 2,2'-bipyridine-N-oxide) was reported to be extremely light-sensitive, but its l …
Ru-based coordination compounds have important applications as photosensitizers and catalysts. [Ru(II)(bpy)(2)(bpyNO)](2+) (bp …
Ni(2,2':6',2"-Terpyridine-4'-carboxylate)(2) Zwitterions and Carboxylate Polyanions in Mixed-Ligand Uranyl Ion Complexes with a Wide Range of Topologies.
Thuéry P, Harrowfield J. Thuéry P, et al. Inorg Chem. 2022 Jun 27;61(25):9725-9745. doi: 10.1021/acs.inorgchem.2c01220. Epub 2022 Jun 10. Inorg Chem. 2022. PMID: 35687129
Both [(UO(2))(2)(c-1,2-chdc)Ni(tpyc)(2)(NO(3))(2)](2).4CH(3)CN (1) and [(UO(2))(2)(tdc)Ni(tpyc)(2)(NO(3))(2)](2) (2), where c-1,2-chdc(2-) is cis-1,2-cyclohexanedicarboxylate …
Both [(UO(2))(2)(c-1,2-chdc)Ni(tpyc)(2)(NO(3))(2)](2).4CH(3)CN (1) and [(UO(2))(2)(t …
Formation and hydrolysis of gas-phase [UO(2) (R)](+) : RCH(3) , CH(2) CH(3) , CHCH(2) , and C(6) H(5).
Tatosian I, Bubas A, Iacovino A, Kline S, Metzler L, Van Stipdonk M. Tatosian I, et al. J Mass Spectrom. 2019 Sep;54(9):780-789. doi: 10.1002/jms.4430. Epub 2019 Sep 5. J Mass Spectrom. 2019. PMID: 31426122
However, CID of the alkoxides [UO(2) (OCH(2) CH(3) )](+) and [UO(2) (OCH(2) CH(2) CH(3) )](+) produced [UO(2) (CH(3) )](+) and [UO(2) (CH(2) CH(3) )](+) , respectively. ...CID of the acrylate and benzoate versions of the com …
However, CID of the alkoxides [UO(2) (OCH(2) CH(3) )](+) and [UO(2) (OCH(2) CH(2) CH(3) )](+) produced [U …
Effect of Nonmagnetic Ion Deficiency on Magnetic Structure: Density Functional Study of Sr(2)MnO(2)Cu(2-x)Te(2), Sr(2)MO(2)Cu(2)Te(2) (M = Co, Mn), and the Oxide-Hydrides Sr(2)VO(3)H, Sr(3)V(2)O(5)H(2), and SrVO(2)H.
Koo HJ, Whangbo MH. Koo HJ, et al. Inorg Chem. 2019 Nov 4;58(21):14769-14776. doi: 10.1021/acs.inorgchem.9b02456. Epub 2019 Oct 24. Inorg Chem. 2019. PMID: 31647647
Another puzzling observation is the contrasting magnetic structures of Sr(2)CoO(2)Cu(2)Te(2) and Sr(2)MnO(2)Cu(1.58)Te(2), consisting of the layers made up of corner-sharing MO(4)Te(2) (M = Co, Mn) octahedra. ...We investiga …
Another puzzling observation is the contrasting magnetic structures of Sr(2)CoO(2)Cu(2)Te(2) and Sr(2)MnO …
SO(2) and SO(3) reactions with [(C(5)Me(5))(2)Sm-O-Sm(C(5)Me(5))(2)]: a DFT investigation and comparison with CO(2) reactivity.
Louyriac E, Roesky PW, Maron L. Louyriac E, et al. Dalton Trans. 2017 Jun 28;46(24):7660-7663. doi: 10.1039/c7dt01703k. Epub 2017 May 31. Dalton Trans. 2017. PMID: 28561819
The reactions of [Cp*(2)Sm-O-SmCp*(2)] with SO(2) and SO(3) are reported using DFT calculations and compared with the reactivity of CO(2). These reactions exhibit similar features yielding [Cp*(2)-Sm-(mu-eta(1):eta(2)-OSO(2))-SmCp* …
The reactions of [Cp*(2)Sm-O-SmCp*(2)] with SO(2) and SO(3) are reported using DFT calculations and compared with the r …
Coordination chemistry and structural rearrangements of the Me(2)PCH(2)AlMe(2) ambiphilic ligand.
Paskaruk K, Emslie DJH, Britten JF. Paskaruk K, et al. Dalton Trans. 2022 Oct 11;51(39):15040-15048. doi: 10.1039/d2dt02519a. Dalton Trans. 2022. PMID: 36112126
Reaction of 2 equivalents of (Me(2)PCH(2)AlMe(2))(2) with [{RhCl(cod)}(2)] (cod = 1,5-cyclooctadiene) afforded [{kappa(2)P,P-(Me(3)Al)ClMeAl(CH(2)PMe(2))(2)}Rh(cod)] (1), which features a kappa(2)-coordi …
Reaction of 2 equivalents of (Me(2)PCH(2)AlMe(2))(2) with [{RhCl(cod)}(2)] (cod = 1,5-cyclooctadie …
12,935,792 results
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