Lazovenko, A. N.; Ignatov, V. A.; Zhelobkova, I. V., Journal of general chemistry of the USSR, 1981, vol. 51, # 3, p. 546 - 549
作者:Lazovenko, A. N.、Ignatov, V. A.、Zhelobkova, I. V.
DOI:——
日期:——
LAZOVENKO A. N.; IGNATOV V. A.; ZHELOBKOVA I. V., ZH. OBSHCH. XIMII, 1981, 51, HO 3, 679-682
作者:LAZOVENKO A. N.、 IGNATOV V. A.、 ZHELOBKOVA I. V.
DOI:——
日期:——
CATHODE ACTIVE MATERIAL FOR LITHIUM SECONDARY BATTERY AND METHODE OF MANUFACTURING THE SAME
申请人:SK INNOVATION CO., LTD.
公开号:US20200144612A1
公开(公告)日:2020-05-07
A cathode active material for a lithium secondary battery includes a lithium metal oxide particle and a thio-based compound formed on at least portion of a surface of the lithium metal oxide particle. The thio-based compound has a double bond that contains a sulfur atom. Chemical stability of the lithium metal oxide particle may be improved and surface residues may be reduced by the thio-based compound.
CATHODE ACTIVE MATERIAL FOR LITHIUM SECONDARY BATTERY AND METHOD OF MANUFACTURING THE SAME
申请人:SK INNOVATION CO., LTD.
公开号:US20210408532A1
公开(公告)日:2021-12-30
A cathode active material for a lithium secondary battery includes a lithium metal oxide particle and a thio-based compound formed on at least portion of a surface of the lithium metal oxide particle. The thio-based compound has a double bond that contains a sulfur atom. Chemical stability of the lithium metal oxide particle may be improved and surface residues may be reduced by the thio-based compound.
Facile one-pot synthesis of thio and selenourea derivatives: A new class of potent urease inhibitors
作者:Kirubakaran Sivapriya、Perumal Suguna、Arun Banerjee、Vadivelu Saravanan、Desirazu N. Rao、Srinivasan Chandrasekaran
DOI:10.1016/j.bmcl.2007.07.085
日期:2007.11
A facile, one-pot synthesis of thio and selenourea derivatives from amines using tetrathiomolybdate 1 and tetraselenotungstate 2 as sulfur and selenium transfer reagents, respectively, is reported. The compounds were tested for their activity as urease inhibitors and some of the compounds showed potent activity in the nanomolar range towards jack bean urease.