Abstract
The reaction of NdN and SmN with iodine gave the iodide-nitrides (NdI2)3N(DME)4 and (SmI)3N2(THF)2, which are inert towards sulfur, in contrast to the neodymium and dysprosium iodide-nitrides prepared by the reaction of LnI2 with N2. Reaction of NdN and SmN with C6F5OH and CpH gave the organolanthanide derivatives Ln(C5F5O)3(THF)n (Ln = Nd or Sm) and Cp3Sm with moderate and low yields, respectively. Phenylacetylene and styrene do not react with SmN.
References
1.
Fagin A.A.
,
Fukin G.K.
,
Cherkasov A.V.
,
Shestakov A.F.
,
Pushkarev A.P.
,
Balashova T.V.
,
Maleev A.A.
, and
Bochkarev M.N.
, Dalt. Trans. , 2016 , 45 , 4558 .
2.
Edelmann F.T.
,
Blaurocka S.
,
Lorenza V.
, and
Chivers T.
, Z. Anorg. Allg. Chem. , 2008 , 634 , 413 .
3.
Matuska V.
,
Tersago K.
,
Kilian P.
,
van Alsenoy V.
,
Blockhuys F.
,
Slawin A.M.Z.
, and
Woollins J.D.
, Eur. J. Inorg. Chem. , 2009 , 29–30 , 4483 .
4.
Aucott S.M.
,
Bhattacharyya P.
,
Milton H.L.
,
Slawin A.M.Z.
, and
Woollins J.D.
, New J. Chem. , 2003 , 27 , 1466 .
5.
Matuska V.
,
Slawin A.M.Z.
, and
Woollins J.D.
, Inorg. Chem. , 2010 , 49 , 3064 .
6.
Slawin A.M.Z.
,
Waddell P.G.
, and
Woollins J.D.
, Acta Cryst. Sect. E Struct. Rep. , 2010 , E66 , m418 .
7.
Kempter C.
,
Kickorian N.
, and
McGuire J.
, J. Phys. Chem. , 1957 , 61 , 1237 .
8.
Klemm W.
, and
Winkelmann G.
, Z. Anorg. Allg. Chem. , 1956 , 288 , 87 .
9.
Fitzmaurice J.C.
,
Hector A.
,
Rowley A.T.
, and
Parkin I.P.
, Polyhedron , 1994 , 13 , 235 .
10.
Fagin A.A.
,
Salmova S.V.
, and
Bochkarev M.N.
, Russ. Chem. Bull. , 2009 , 1 , 230 .
11.
van den Hende J.R.
,
Hitchcock P.B.
, and
Lappert M.F.
, J. Chem. Soc. Dalt. Tra ns. , 1995 , 13 , 2251 .
12.
van den Hende J.R.
,
Hitchcock P.B.
, and
Lappert M.F.
, J. Chem. Soc. Chem. Comm. , 1994 , 12 , 1413 .
13.
Hou Z.
,
Fujita A.
,
Yoshimura T.
,
Jesorka A.
,
Zhang Y.
,
Yamazaki H.
, and
Wakatsuki Y.
, Inorg. Chem. , 1996 , 35 , 7190 .
14.
Balashova T.V.
,
Belova N.A.
,
Burin M.E.
,
Kuzyaev D.M.
,
Rumyantcev R.V.
,
Fukin G.K.
,
Pushkarev A.P.
,
Ilichev V.A.
,
Shestakov A.F.
,
Grishin I.D.
, and
Bochkarev M.N.
, RSC Adv. , 2014 , 4 , 35505 .
15.
Kuzyaev D.M.
,
Balashova T.V.
,
Burin M.E.
,
Fukin G.K.
,
Rumyantcev R.V.
,
Pushkarev A.P.
,
Ilichev V.A.
,
Grishin I.D.
,
Vorozhtsov D.L.
, and
Bochkarev M.N.
, Dalt. Trans. , 2016 , 45 , 3464 .
16.
Mehrotra R.C.
,
Singh A.
, and
Tripathi U.M.
, Chem. Rev. , 1991 , 91 , 1287 .
17.
Boyle T.J.
, and
Ottley L.A.M.
, Chem. Rev. , 2008 , 108 , 1896 .
18.
Evans W.J.
,
Greci M.A.
, and
Ziller J.W.
, Inorg. Chem. , 2000 , 39 , 3213 .
19.
Hubert-Pfalzgraf L.G.
,
Abada V.
, and
Vaissermann J.
, J. Chem. Soc. Dalt. Trans. , 1998 , 20 , 3437 .
20.
Melman J.H.
,
Emge T.J.
, and
Brennan J.G.
, Inorg. Chem. , 2001 , 40 , 1078 .
21.
Norton K.
,
Kumar G.A.
,
Dilks J.L.
,
Emge T.J.
,
Riman R.E.
,
Brik M.G.
, and
Brennan J.G.
, Inorg. Chem. , 2009 , 48 , 3573 .
22.
Maleev A.A.
,
Fagin A.A.
,
Ilichev V.A.
,
Lopatin M.A.
,
Konev A.N.
,
Samsonov M.A.
,
Fukin G.K.
, and
Bochkarev M.N.
, J. Organomet. Chem. , 2013 , 747 , 126 .
23.
Pushkarev A.P.
,
Ilichev V.A.
,
Maleev A.A.
,
Fagin A.A.
,
Konev A.N.
,
Shestakov A.F.
,
Rumyantzev R.V.
,
Fukin G.K.
, and
Bochkarev M.N.
, J. Mater. Chem. C , 2013 , 2 , 1532 .
24.
Birmingham J.M.
, and
Wilkinson G.
, J. Am. Chem. Soc. , 1956 , 78 , 42 .
