A Hydrido η1-Alkynyl Diplatinum Complex Obtained from a Phosphinito Phosphanido Complex and Trimethylsilylacetylene
Abstract
:1. Introduction
2. Results and Discussion
2.1. Synthesis and Spectroscopic Features of the Hydride/Acetylide Complex 2
2.2. X-ray Structure of 2
Distances (Å) | |||
Pt(1)-C(1) | 2.036(4) | Pt(2)-P(3) | 2.3255(10) |
Pt(1)-P(1) | 2.2409(10) | Pt(2)-P(4) | 2.2690(10) |
Pt(1)-P(2) | 2.2864(10) | Pt(2)-P(2) | 2.3089(9) |
Pt(1)-H(100) | 1.80(5) | Pt(2)-H(100) | 1.65(5) |
Pt(1)-P(2) | 2.8209(2) | C(1)-C(2) | 1.192(6) |
O(1)-O(2) | 2.726(5) | O(1)-O(2)’ | 2.775(6) |
Angles (°) | |||
C(1)-Pt(1)-P(1) | 90.76(11) | P(3)-Pt(2)-P(4) | 93.84(4) |
P(1)-Pt(1)-P(2) | 104.46(4) | P(4)-Pt(2)-P(2) | 102.67(4) |
P(2)-Pt(1)-H(100) | 84.1(15) | P(2)-Pt(2)-H(100) | 86.7(16) |
C(1)-Pt(1)-H(100) | 80.7(15) | P(3)-Pt(2)-H(100) | 77.1(16) |
H(100)-Pt(1)-Pt(2) | 33.5(15) | H(100)-Pt(2)-Pt(1) | 37.0(16) |
P(2)-Pt(1)-Pt(2) | 52.49(2) | P(2)-Pt(2)-Pt(1) | 51.77(2) |
Pt(1)-P(2)-Pt(2) | 75.74(3) | Pt(1)-H(100)-Pt(2) | 109.5(28) |
Pt(1)-C(1)-C(2) | 177.1(4) | C(1)-C(2)-Si(1) | 177.2(4) |
2.3. Photoluminescence of 2
2.4. Reactivity of 2 with HBF4
3. Experimental Section
3.1. Synthesis of 2
3.2. Synthesis of [3]BF4
3.3. X-ray Structure Determination
4. Conclusions
Parameters | 2·2C6H14·H2O |
---|---|
empirical formula | C65H130O2P4Pt2Si |
Fw | 1485.84 |
T (K) | 173(1) |
crystal system; space group | triclinic; P–1 |
a (Å); α (°) | 13.1300(3); 67.8780(10) |
b (Å); β(°) | 16.4810(6); 88.243(2). |
c (Å); γ (°) | 19.1700(7); 73.174(2). |
V (Å3); Z | 3664.0(2); 2 |
Dcalcd (Mg/m3) | 1.345 |
absorption coefficient (mm−1) | 3.954 |
F(000) | 1528 |
crystal size (mm) | 0.6 × 0.2 × 0.05 |
θ range for data collection (°) | 3.19 to 27.48 |
index ranges | 0 ≤ h ≤ 16, |
−20 ≤ k ≤ 21 | |
−24 ≤ l ≤ 24 | |
No of data/restraints/params | 16,496/12/611 |
goodness of fit on F2 a | 1.014 |
final R indexes (I > 2σ(I)) a | R1 = 0.0329, wR2 = 0.0777 |
R indices (all data) a | R1 = 0.0441, wR2 = 0.082 |
largest diff. peak and hole (e·Å−3) | 1.580 and −1.078 |
Acknowledgments
Author Contributions
Conflicts of Interest
References and Notes
- Gallo, V.; Latronico, M.; Mastrorilli, P.; Nobile, C.F.; Suranna, G.P.; Ciccarella, G.; Englert, U. Synthesis of phosphido-bridged phosphinito platinum(I) complexes by reaction of cis-PtCl2(PHCy2)2 with oxygenated bases—Crystal structure of [(PCy2OMe)Pt(μ-PCy2)]2(Pt-Pt). Eur. J. Inorg. Chem. 2005, 22, 4607–4616. [Google Scholar]
- Gallo, V.; Mastrorilli, P.; Polini, F.; Latronico, M.; Re, N.; Englert, U. Reactivity of a phosphinito-bridged PtI-PtI complex with nucleophiles: Substitution versus addition. Inorg. Chem. 2008, 47, 4785–4795. [Google Scholar]
- Latronico, M.; Polini, F.; Gallo, V.; Mastrorilli, P.; Calmuschi-Cula, B.; Englert, U.; Re, N.; Repo, T.; Raisanen, M. Site selectivity in the protonation of a phosphinito bridged PtI-PtI complex: A combined NMR and density-functional theory mechanistic study. Inorg. Chem. 2008, 47, 9779–9796. [Google Scholar]
- Latronico, M.; Mastrorilli, P.; Gallo, V.; Dell’Anna, M.M.; Creati, F.; Re, N.; Englert, U. Hydrido phosphanido bridged polynuclear complexes obtained by protonation of a phosphinito bridged Pt(I) complex with HBF4 and HF. Inorg. Chem. 2011, 50, 3539–3858. [Google Scholar]
- Forniés, J.; Lalinde, E. Platinum–Carbon π-Bonded Complexes. In Comprehensive Organometallic Chemistry III; Carbtree, R.H., Mingos, D.M.P., Eds.; Elsevier: Oxford, UK, 2007; pp. 611–673. [Google Scholar]
- Belluco, U.; Bertani, R.; Michelin, R.A.; Mozzon, M. Platinum-alkynyl and -alkyne complexes: Old systems with new chemical and physical perspectives. J. Organomet. Chem. 2000, 600, 37–55. [Google Scholar]
- Hahn, C.; Miranda, M.; Chittineni, N.P.B.; Pinion, T.A.; Perez, R. Mechanistic Studies on Platinum(II) Catalyzed Hydroarylation of Alkynes. Organometallics 2014, 33, 3040–3050. [Google Scholar]
- Jourdain, I.; Knorr, M.; Strohmann, C.; Unkelbach, C.; Rojo, S.; Gómez-Iglesias, P.; Villafañe, F. Reactivity of Silyl-Substituted Iron–Platinum Hydride Complexes toward Unsaturated Molecules: 4. Insertion of Fluorinated Aromatic Alkynes into the Platinum-Hydride Bond. Synthesis and Reactivity of Heterobimetallic Dimetallacylopentenone, Dimetallacyclobutene, μ-Vinylidene, and μ2-σ-Alkenyl Complexes. Organometallics 2013, 32, 5343–5359. [Google Scholar]
- Berenguer, J.R.; Fernández, J.; Giménez, N.; Lalinde, E.; Moreno, M.T.; Sánchez, S. Unexpected Formation of Ferrocenyl(vinyl)benzoquinoline Ligands by Oxidation of an Alkyne Benzoquinolate Platinum(II) Complex. Organometallics 2013, 32, 3943–3953. [Google Scholar]
- West, N.M.; White, P.S.; Templeton, J.L. Alkyne Insertion into the Pt-H Bond of Pt(H)(1-pentene)(β-diiminate) Initiates a Reaction Cascade That Results in C-H Activation or C-C Coupling. Organometallics 2008, 27, 5252–5262. [Google Scholar]
- Wang, W.; Yang, H.B. Linear neutral platinum-acetylide moiety: Beyond the links. Chem. Commun. 2014, 50, 5171–5186. [Google Scholar]
- Muro, M.L.; Rachford, A.A.; Wang, X.; Castellano, F.N. PlatinumII Acetylide Photophysics. Top. Organomet. Chem. 2010, 29, 159–191. [Google Scholar]
- Berenguer, J.R.; Lalinde, E.; Moreno, M.T. An overview of the chemistry of homo and heteropolynuclear platinum complexes containing bridging acetylide (μ-C≡CR) ligands. Coord. Chem. Rev. 2010, 254, 832–875. [Google Scholar]
- Canty, A.J.; Sharma, M. η1-Alkynyl Chemistry for the Higher Oxidation State of Palladium and Platinum. Top. Organomet. Chem. 2011, 35, 111–128. [Google Scholar]
- Long, N.J.; Willians, C.K. Metal Alkynyl σ Complexes: Synthesis and Materials. Angew. Chem. Int. Ed. 2003, 42, 2586–2617. [Google Scholar]
- Tao, C.H.; Yam, V.W.W. Branched carbon-rich luminescent multinuclear platinum(II) and palladium(II) alkynyl complexes with phosphine ligands. J. Photochem. Photobio. C 2009, 10, 130–140. [Google Scholar]
- Wong, K.M.; Yam, V.W.W. Self-Assembly of Luminescent Alkynylplatinum(II) Terpyridyl Complexes: Modulation of Photophysical Properties through Aggregation Behavior. Acc. Chem. Res. 2011, 44, 424–434. [Google Scholar]
- Wong, W.Y. Luminescent organometallic poly(aryleneethynylene)s: Functional properties towards implications in molecular optoelectronics. Dalton Trans. 2007, 4495–4510. [Google Scholar]
- Throughout the paper, the calculated (exact mass) and the experimental (accurate) m/z values have been compared considering the principal ion (which gives the most intense peak) of the isotope pattern.
- Berenguer, J.R.; Forniés, J.; Martínez, F.; Cubero, J.C.; Lalinde, E.; Moreno, M.T.; Welch, A.J. Synthesis and reactivity of bimetallic acetylide-bridged Pt-Pt complexes. Crystal and molecular structure of [(PPh3)(C6F5)Pt(μ-C≡CPh)2Pt(C6F5)(PPh3)]. Polyhedron 1993, 12, 1797–1804. [Google Scholar]
- Benito, J.; Berenguer, J.R.; Forniés, J.; Gil, B.; Gómez, J.; Lalinde, E. Synthesis, characterization and luminescence properties of homoleptic platinum(II) acetylide complexes. Dalton Trans. 2003. [Google Scholar] [CrossRef]
- Mastrorilli, P. Bridging and Terminal (Phosphanido)platinum Complexes. Eur. J. Inorg. Chem. 2008, 31, 4835–4850. [Google Scholar]
- Mastrorilli, P.; Latronico, M.; Gallo, V.; Polini, F.; Re, N.; Marrone, A.; Gobetto, R.; Ellena, S. Facile Activation of Dihydrogen by a Phosphinito-Bridged Pt(I)-Pt(I) Complex. J. Am. Chem. Soc. 2010, 132, 4752–4765. [Google Scholar]
- Furlani, A.; Licoccia, S.; Russo, M.V.; Chiesi, V.A.; Guastini, C. New platinum hydrido acetylides. Crystal and molecular structure of [PtH{C≡C–C(OH)MeEt}(PPh3)2]. Dalton Trans. 1982. [Google Scholar] [CrossRef]
- Mastrorilli, P.; Nobile, C.F.; Latronico, M.; Gallo, V.; Englert, U.; Fanizzi, F.P.; Sciacovelli, O. Mltinuclear and dynamic NMR study of trans-[Pt(Cl)(PHCy2)2(PCy2)], [Pt(Cl)(PHCy2)3][BF4], [Pt(Cl)(PHCy2)3][Cl], trans-[Pt(Cl) (PHCy2)2{P(S)Cy2}], and trans-[Pt(Cl)(PHCy2)2{P(O)Cy2}]. Inorg. Chem. 2005, 44, 9097–9104. [Google Scholar]
- Desiraju, G.R.; Steiner, T. The Weak Hydrogen Bond in Structural Chemistry and Biology; Oxford University Press: Oxford, UK, 1999. [Google Scholar]
- Nishio, M. Weak Hydrogen Bonds in Encyclopedia of Supramolecular Chemistry; Atwood, J.L., Steed, J.L., Eds.; Marcel Dekker Inc.: New York, NY, USA, 2004. [Google Scholar]
- Ara, I.; Falvello, L.R.; Forniés, J.; Lalinde, E.; Martínez, F.; Moreno, M.T. Synthesis and Structure of New Neutral Bimetallic Platinum Hydride Complexes. Organometallics 1997, 16, 5392–5405. [Google Scholar]
- Berenguer, J.R.; Bernechea, M.; Lalinde, E. Rearrangement or C-H Activation Processes Promoted by Reaction with the Solvate [cis-Pt(C6F5)2(thf)2]. Organometallics 2007, 26, 1161–1172. [Google Scholar]
- Leoni, P.; Manetti, S.; Pasquali, M. Synthesis of New Neutral and Cationic Phosphido-Bridged Dinuclear Platinum(II) Hydride. Inorg. Chem. 1995, 34, 749–752. [Google Scholar]
- Berenguer, J.R.; Bernechea, M.; Lalinde, E. C-H and P-C(Ph) activation competitive processes caused by interaction with the solvate [cis-Pt(C6F5)2(thf)2]. Dalton Trans. 2007, 2384–2393. [Google Scholar]
- Aullón, G.; Alemany, P.; Alvarez, S. Through-ring bonding in edge-sharing dimers of square planar complexes. J. Organomet. Chem. 1994, 478, 75–83. [Google Scholar]
- Crementieri, S.; Leoni, P.; Marchetti, F.; Marchetti, L.; Pasquali, M. Stable η1-Alkynyl−μ,η1:η2-Alkenyl Complexes from the Reaction of Terminal Alkynes with Encumbered Dinuclear Platinum Compounds and Their Formyl, Methoxycarbonyl, and Hydride Derivatives. Organometallics 2002, 21, 2575–2577. [Google Scholar]
- Langrick, C.R.; Pringle, P.G.; Shaw, B.L. Bimetallic systems. Part 10. Synthesis of complexes of type [(RC≡C)Pt(µ-dppm)2Pt(C≡CR)] (dppm = Ph2PCH2PPh2, R = Ph or p-tolyl) and their corresponding “A frames” [(RC≡C)Pt(µ-dppm)2(µ-H)Pt(C≡CR)]Cl or [(RC≡C)Pt(µ-dppm)2(µ-X)Pt(C≡CR)] with X = CS2 or MeOOCC≡CCOOMe. Dalton Trans. 1985. [Google Scholar] [CrossRef]
- Lam, W.H.; Yam, V.W.W. Computational Studies on the Photophysical Properties and NMR Fluxionality of Dinuclear Platinum(II) A-Frame Alkynyl Diphosphine Complexes. Inorg. Chem. 2010, 49, 10930–10939. [Google Scholar]
- Wong, K.M.C.; Hui, K.C.; Yu, L.K.; Yam, V.W.W. Luminescence studies of dinuclear platinum(II) alkynyl complexes and their mixed-metal platinum(II) -copper(I) and -silver(I) complexes. Coord. Chem. Rev. 2002, 229, 123–132. [Google Scholar]
- Carlton, L. Relative Sign of J Couplings from Two-Dimensional NMR Spectra. Bruker Rep. 2000, 148, 28–29. [Google Scholar]
- Otwinowski, Z.; Minor, W. Macromolecular Crystallography, Part A; Carter, C.W., Jr., Sweet, R.M., Eds.; Academic Press: New York, NY, USA, 1997; Volume 276, pp. 307–326. [Google Scholar]
- Burla, M.C.; Caliandro, R.; Camalli, M.; Carrozzini, B.; Cascarano, G.L.; De Caro, L.; Giacovazzo, C.; Polidori, G.; Spagna, R. SIR2004: An improved tool for crystal structure determination and refinement. J. Appl. Crystallogr. 2005, 38, 381–388. [Google Scholar]
- Sheldrick, G.M. SHELXL-97; University of Göttingen: Göttingen, Germany, 1997. [Google Scholar]
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Latronico, M.; Gallo, V.; Lalinde, E.; Ruiz, S.; Todisco, S.; Mastrorilli, P. A Hydrido η1-Alkynyl Diplatinum Complex Obtained from a Phosphinito Phosphanido Complex and Trimethylsilylacetylene. Inorganics 2014, 2, 591-605. https://doi.org/10.3390/inorganics2040591
Latronico M, Gallo V, Lalinde E, Ruiz S, Todisco S, Mastrorilli P. A Hydrido η1-Alkynyl Diplatinum Complex Obtained from a Phosphinito Phosphanido Complex and Trimethylsilylacetylene. Inorganics. 2014; 2(4):591-605. https://doi.org/10.3390/inorganics2040591
Chicago/Turabian StyleLatronico, Mario, Vito Gallo, Elena Lalinde, Santiago Ruiz, Stefano Todisco, and Piero Mastrorilli. 2014. "A Hydrido η1-Alkynyl Diplatinum Complex Obtained from a Phosphinito Phosphanido Complex and Trimethylsilylacetylene" Inorganics 2, no. 4: 591-605. https://doi.org/10.3390/inorganics2040591
APA StyleLatronico, M., Gallo, V., Lalinde, E., Ruiz, S., Todisco, S., & Mastrorilli, P. (2014). A Hydrido η1-Alkynyl Diplatinum Complex Obtained from a Phosphinito Phosphanido Complex and Trimethylsilylacetylene. Inorganics, 2(4), 591-605. https://doi.org/10.3390/inorganics2040591