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首页> 外文期刊>Inorganica Chimica Acta >Insertion of heteroallenes into the rhenium-hydride bond
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Insertion of heteroallenes into the rhenium-hydride bond

机译:杂芳烃插入hydr键

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摘要

Dithioformato [Re{eta(2)-SC(H)S}(NO)P-3]BPh4 (1), thioformamido [Re{eta(2)-RNC(H)S}(NO)P-3]BPh4 (2) (R = Et, p-tolyl), form-amido [Re{eta(2)-PhNC(H)O}(NO)P-3]BPh4 (3) and formamidinato [Re{eta(2)-p-tolylNC(H)Np-tolyl}(NO)P-3]BPh4 (4) (P = PPh2OEt) complexes were prepared by allowing the hydride ReH2(NO)P-3 to react first with triflic acid and then with the appropriate heteroallene CS2, RNCS, PhNCO and p-tolyINCNp-tolyl. Treatment of the ReH2(NO)L(PPh3)(2) [L = P(OEt)(3), PPh(OEt)(2)] and ReH2(NO) (PPh3)(3) hydrides first with triflic acid and then with isothiocyanate RNCS (R = Et, p-tolyl) gave the [Re{eta(2)-RNC(H)S}(NO) {P(OEt)(3)}(PPh3)(2)]BPh4 (5, 6) and [Re(eta(2)-RNC(H)S)(NO)(PPh3)(3)]BPh4 (7) derivatives. Depending on the nature of the phosphite, instead, the reaction of ReH2(NO)L(PPh3)(2) and ReH2(NO)(PPh3)(3) hydrides first with CF3SO3H and then with isocyanate RINCO (R1 = Ph, p-tolyl) gave the chelate [Re{eta(2)-R1NC(H)O}(NO){P(OEt)(3)}(PPh3)(2)]BPh4 (8) and [Re{eta(2)-RINC(H)O} (NO)(PPh3)(3)]BPh4 (10) complexes with P(OEt)(3) or PPh3, while the eta(1)-coordinate [Re{eta(1)-RNC(H)S}(NO){PPh(OEt)(2)}(2)(PPh3)(2)]BPh4 (9) derivative was obtained with the PPh(OEt)(2) phosphite ligand. eta(1)-Coordinate dithioformato [Re{eta(1)-SC(H)=S}(NO) {PPh(OEt)(2)}(2)(PPh3)(2)]BPh4 (11) and formato [Re{eta(1)-OC(H)=O}(NO){PPh(OEt)(2)}(2)(PPh3)(2)]BPh4 (12) complexes, as well as the formamidinato [Re{eta(2)-p-tolylNC(H)Np-tolyl}(NO){P(OEt)(3)}(PPh3)(2)]BPh4 (13) derivative were also prepared. (c) 2005 Elsevier B.V. All rights reserved.
机译:Dithioformato [Re {eta(2)-SC(H)S}(NO)P-3] BPh4(1),硫代甲酰胺基[Re {eta(2)-RNC(H)S}(NO)P-3] BPh4 (2)(R = Et,对甲苯基),甲酰胺型[Re {eta(2)-PhNC(H)O}(NO)P-3] BPh4(3)和甲酰胺基[Re {eta(2) -p-tolylNC(H)Np-tolyl}(NO)P-3] BPh4(4)(P = PPh2OEt)配合物的制备方法是,使氢化物ReH2(NO)P-3首先与三氟甲磺酸反应,然后与适当的杂亚芳基CS2,RNCS,PhNCO和对-tolyINCN-对甲苯基。 ReH2(NO)L(PPh3)(2)[L = P(OEt)(3),PPh(OEt)(2)]和ReH2(NO)(PPh3)(3)氢化物的处理首先用三氟甲磺酸和然后用异硫氰酸酯RNCS(R = Et,对甲苯基)得到[Re {eta(2)-RNC(H)S}(NO){P(OEt)(3)}(PPh3)(2)] BPh4( 5、6)和[Re(eta(2)-RNC(H)S)(NO)(PPh3)(3)] BPh4(7)衍生物。取决于亚磷酸酯的性质,ReH2(NO)L(PPh3)(2)和ReH2(NO)(PPh3)(3)氢化物首先与CF3SO3H然后与异氰酸酯RINCO(R1 = Ph,p -tolyl)得到螯合物[Re {eta(2)-R1NC(H)O}(NO){P(OEt)(3)}(PPh3)(2)] BPh4(8)和[Re {eta(2 )-RINC(H)O}(NO)(PPh3)(3)] BPh4(10)与P(OEt)(3)或PPh3配合,而eta(1)坐标[Re {eta(1)-用亚磷酸根PPh(OEt)(2)配体获得RNC(H)S}(NO){PPh(OEt)(2)}(2)(PPh3)(2)] BPh4(9)衍生物。 eta(1)-坐标二硫代甲酸酯[Re {eta(1)-SC(H)= S}(NO){PPh(OEt)(2)}(2)(PPh3)(2)] BPh4(11)和甲酸酯[Re {eta(1)-OC(H)= O}(NO){PPh(OEt)(2)}(2)(PPh3)(2)] BPh4(12)配合物以及甲酰胺还制备了{η(2)-对甲苯基NC(H)Np-甲苯基}(NO){P(OEt)(3)}(PPh3)(2)] BPh4(13)衍生物。 (c)2005 Elsevier B.V.保留所有权利。

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