Long-Lived Triplet Germylene Generated at Room Temperature

Researchers at cicCartuja have stabilized a fleeting molecule, opening avenues for studying its properties and reactivity.

Abstract representation of triplet state molecules with a long half-life in a laboratory setting.
IA

Abstract representation of triplet state molecules with a long half-life in a laboratory setting.

Scientists at cicCartuja have successfully generated and stabilized a triplet germylene with a remarkable 14-hour half-life at room temperature, a significant advancement for studying these molecules.

Triplet state tetrylenes hold significant potential for transforming chemically inert substrates, but their fleeting nature has limited their detection to low-temperature environments. This challenge is amplified in heavier tetrylenes, such as germylenes, due to their higher singlet–triplet (S1–T1) energy gaps.
This work reports the photoinduced generation of a long-lived triplet germylene with a 14-hour half-life at room temperature, achieved through an excited singlet–triplet trap stabilization strategy.
The metastable nature of this excited state has enabled its spectroscopic investigation and the study of its reactivity. Enhanced reactivity compared to the ground state has been observed, including the cleavage of N=N, C–Br, Si–H bonds, and even the doubly reductive cleavage of C–C bonds in benzene.
Based on information from the official source: cicCartuja — Centro de Investigaciones Científicas Isla de la Cartuja (12/08/2026)