Methyl hydrazine as a building block for a bridge between phosphinoamine [R2P–N(R)–PR2] and phosphorus hydrazide [R2P–N(R)–N(R)–PR2]. Synthesis and coordination chemistry of a novel triphosphine [(Me2P)2N–N(Me)(PMe2)]

Author(s):  
V. Sreenivasa Reddy ◽  
Kattesh V. Katti ◽  
Charles L. Barnes
2021 ◽  
Vol 12 (1) ◽  
Author(s):  
Yu-He Xu ◽  
Nikolay V. Tkachenko ◽  
Ivan A. Popov ◽  
Lei Qiao ◽  
Alvaro Muñoz-Castro ◽  
...  

AbstractHeterometallic clusters have attracted broad interests in the synthetic chemistry due to their various coordination modes and potential applications in heterogeneous catalysis. Here we report the synthesis, experimental, and theoretical characterizations of four ternary clusters ([M2(CO)6Sn2Sb5]3− (M = Cr, Mo), and [(MSn2Sb5)2]4−, (M = Cu, Ag)) in the process of capturing the hypho- [Sn2Sb5]3− in ethylenediamine (en) solution. We show that the coordination of the binary anion to transition-metal ions or fragments provides additional stabilization due to the formation of locally σ-aromatic units, producing a spherical aromatic shielding region in the cages. While in the case of [Mo2(CO)6Sn2Sb5]3− stabilization arises from locally σ-aromatic three-centre and five-centre two-electron bonds, aromatic islands in [(AgSn2Sb5)2]4− and [(CuSn2Sb5)2]4− render them globally antiaromatic. This work describes the coordination chemistry of the versatile building block [Sn2Sb5]3−, thus providing conceptual advances in the field of metal-metal bonding in clusters.


1997 ◽  
Vol 36 (18) ◽  
pp. 1994-1995 ◽  
Author(s):  
Sabine Schlecht ◽  
Jörg Magull ◽  
Dieter Fenske ◽  
Kurt Dehnicke

Molecules ◽  
2019 ◽  
Vol 24 (2) ◽  
pp. 325
Author(s):  
Mehdi Elsayed Moussa ◽  
Stefan Welsch ◽  
Luis Dütsch ◽  
Martin Piesch ◽  
Stephan Reichl ◽  
...  

Although the triple-decker complex [Cp*Fe(µ,η5:η5-P5)Mo(CO)3] (2) was first reported 26 years ago, its reactivity has not yet been explored. Herein, we report a new high-yielding synthesis of 2 and the isolation of its new polymorph (2’). In addition, we study its reactivity towards AgI and CuI ions. The reaction of 2 with Ag[BF4] selectively produces the coordination compound [Ag{Cp*Fe(µ,η5:η5-P5)Mo(CO)3}2][BF4] (3). Its reaction with Ag[TEF] and Cu[TEF] ([TEF]− = [Al{OC(CF3)3}4]−) leads to the selective formation of the complexes [Ag{Cp*Fe(µ,η5:η5-P5)Mo(CO)3}2][TEF] (4) and [Cu{Cp*Fe(µ,η5:η5-P5)Mo(CO)3}2][TEF] (5), respectively. The X-ray structures of compounds 3–5 each show an MI ion (MI = AgI, CuI) bridged by two P atoms from two triple-decker complexes (2). Additionally, four short MI···CO distances (two to each triple-decker complex 2) participate in stabilizing the coordination sphere of the MI ion. Evidently, the X-ray structure for compound 3 shows a weak interaction of the AgI ion with one fluorine atom of the counterion [BF4]−. Such an Ag···F interaction does not exist for compound 4. These findings demonstrate the possibility of using triple-decker complex 2 as a ligand in coordination chemistry and opening a new perspective in the field of supramolecular chemistry of transition metal compounds with phosphorus-rich complexes.


2018 ◽  
Vol 2018 (15) ◽  
pp. 1683-1687 ◽  
Author(s):  
Mehdi Elsayed Moussa ◽  
Stephan Welsch ◽  
Laurence J. Gregoriades ◽  
Gábor Balázs ◽  
Michael Seidl ◽  
...  

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