Laboratory of Organic and Macromolecular Chemistry (IOMC), Friedrich-Schiller-University Jena, Humboldtstr. 10, 07743, Jena, Germany.
J Mass Spectrom. 2012 Jan;47(1):34-40. doi: 10.1002/jms.2023.
An electrospray ionization quadrupole time-of-flight mass spectrometer has been utilized to investigate the relative ligand-binding strengths in a series of heteroleptic-charged iridium(III) complexes of the general formula (C^N)(2) Ir(III) (S-tpy) by using variable collision energies. Collision-induced dissociation experiments were performed in order to study the stability of the Ir(III) complexes that are, for instance, suitable phosphors in light-emitting electrochemical cells. The ratio of signal intensities belonging to the fragment and the undissociated complex depends on the collision energy applied for the tandem mass spectra (MS/MS) analysis. By defining the threshold collision energy and the point of complete complex dissociation, it is possible to estimate the relative complex stabilities depending on the nature of the coordinated ligands [i.e. type of cyclometalating ligand (C^N), substituents on the S-shaped terpyridine (S-tpy)]. The collision energy values differed as a function of the coordination sphere of the Ir(III) centers.
已采用电喷雾电离四极杆飞行时间质谱仪,通过可变碰撞能,研究了一系列通式为(C^N)(2) Ir(III) (S-tpy)的异核配体电荷铱(III)配合物的相对配体结合强度。进行了碰撞诱导解离实验,以研究 Ir(III)配合物的稳定性,例如,它们是发光电化学电池中的合适磷光体。属于片段和未离解配合物的信号强度比取决于串联质谱(MS/MS)分析中应用的碰撞能。通过定义阈值碰撞能和完全离解配合物的点,可以根据配位配体的性质(即环金属化配体(C^N)的类型,S-形三吡啶(S-tpy)上的取代基)来估计相对配合物稳定性。碰撞能值随 Ir(III)中心的配位球变化。