Reversible Dihydrogen Splitting and Diradical Reactivity of 1,4‐Digermabenzene‐1,4‐diide

Ebeler F, Vishnevskiy Y, Lamm J‐H, Neumann B, Stammler H-G, Ghadwal RS (2026)
ChemistryEurope 4(5): e70282.

Zeitschriftenaufsatz | Veröffentlicht | Englisch
 
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Abstract / Bemerkung

Here, we report the use of an alkyne‐functionalized amidine, PhC{N(Dipp)}N(Dipp)C≡CSiMe 3 ( 1 ) (Dipp = 2,6‐ i Pr 2 C 6 H 3 ), to access a range of Ge(IV), Ge(II/IV), Ge(II), and Ge(I) compounds based on an anionic dicarbene (ADC) framework (ADC = PhC{N(Dipp)C} 2 ). The mixed‐valent Ge(II/IV) complex [{(ADC)GeCl 3 }GeCl 2 ] ( 4 ) is obtained by partial reduction of [{(ADC)GeCl 3 }GeCl 4 ] ( 3 ). Treatment of 1 with 3 affords the Ge(IV) chloride [(ADC)GeCl 3 ] 2 ( 5 ), which can be sequentially reduced with KC 8 to give the known Ge(II) and Ge(I) species [(ADC)GeCl] 2 ( 7 ) and [(ADC)Ge] 2 ( 8 ), respectively. The 1,4‐digermabenzene‐1,4‐diide ( 8 ) is a singlet diradical that cleaves dihydrogen at room temperature to form the Ge(II) hydride [(ADC)GeH] 2 ( 9 ); under vacuum, 9 regenerates 8 . Compound 8 reacts with azobenzene and diphenylacetylene to yield the corresponding [4+2]‐cycloaddition products, [{(ADC)Ge}EPh] 2 10 (E = N) and 11 (E = C), respectively. Treatment of 8 with TEMPO (2,2,6,6‐tetramethylpiperidinyloxyl) produces the radical coupling product, the bis(TEMPO‐germylene) [(ADC)Ge{TEMPO}] 2 ( 13 ). All compounds were characterized by spectroscopic methods, and their molecular structures, including that of 9 , unknown previously, were confirmed by single‐crystal X‐ray diffraction.

Erscheinungsjahr
2026
Zeitschriftentitel
ChemistryEurope
Band
4
Ausgabe
5
Art.-Nr.
e70282
ISSN
2751-4765
eISSN
2751-4765
Page URI
https://pub.uni-bielefeld.de/record/3016352

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Ebeler F, Vishnevskiy Y, Lamm J‐H, Neumann B, Stammler H-G, Ghadwal RS. Reversible Dihydrogen Splitting and Diradical Reactivity of 1,4‐Digermabenzene‐1,4‐diide. ChemistryEurope. 2026;4(5): e70282.
Ebeler, F., Vishnevskiy, Y., Lamm, J. ‐H., Neumann, B., Stammler, H. - G., & Ghadwal, R. S. (2026). Reversible Dihydrogen Splitting and Diradical Reactivity of 1,4‐Digermabenzene‐1,4‐diide. ChemistryEurope, 4(5), e70282. https://doi.org/10.1002/ceur.70282
Ebeler, Falk, Vishnevskiy, Yury, Lamm, Jan‐Hendrik, Neumann, Beate, Stammler, Hans-Georg, and Ghadwal, Rajendra S. 2026. “Reversible Dihydrogen Splitting and Diradical Reactivity of 1,4‐Digermabenzene‐1,4‐diide”. ChemistryEurope 4 (5): e70282.
Ebeler, F., Vishnevskiy, Y., Lamm, J. ‐H., Neumann, B., Stammler, H. - G., and Ghadwal, R. S. (2026). Reversible Dihydrogen Splitting and Diradical Reactivity of 1,4‐Digermabenzene‐1,4‐diide. ChemistryEurope 4:e70282.
Ebeler, F., et al., 2026. Reversible Dihydrogen Splitting and Diradical Reactivity of 1,4‐Digermabenzene‐1,4‐diide. ChemistryEurope, 4(5): e70282.
F. Ebeler, et al., “Reversible Dihydrogen Splitting and Diradical Reactivity of 1,4‐Digermabenzene‐1,4‐diide”, ChemistryEurope, vol. 4, 2026, : e70282.
Ebeler, F., Vishnevskiy, Y., Lamm, J.‐H., Neumann, B., Stammler, H.-G., Ghadwal, R.S.: Reversible Dihydrogen Splitting and Diradical Reactivity of 1,4‐Digermabenzene‐1,4‐diide. ChemistryEurope. 4, : e70282 (2026).
Ebeler, Falk, Vishnevskiy, Yury, Lamm, Jan‐Hendrik, Neumann, Beate, Stammler, Hans-Georg, and Ghadwal, Rajendra S. “Reversible Dihydrogen Splitting and Diradical Reactivity of 1,4‐Digermabenzene‐1,4‐diide”. ChemistryEurope 4.5 (2026): e70282.
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