» Articles » PMID: 24805234

Tracking Excited-state Charge and Spin Dynamics in Iron Coordination Complexes

Abstract

Crucial to many light-driven processes in transition metal complexes is the absorption and dissipation of energy by 3d electrons. But a detailed understanding of such non-equilibrium excited-state dynamics and their interplay with structural changes is challenging: a multitude of excited states and possible transitions result in phenomena too complex to unravel when faced with the indirect sensitivity of optical spectroscopy to spin dynamics and the flux limitations of ultrafast X-ray sources. Such a situation exists for archetypal polypyridyl iron complexes, such as [Fe(2,2'-bipyridine)3](2+), where the excited-state charge and spin dynamics involved in the transition from a low- to a high-spin state (spin crossover) have long been a source of interest and controversy. Here we demonstrate that femtosecond resolution X-ray fluorescence spectroscopy, with its sensitivity to spin state, can elucidate the spin crossover dynamics of [Fe(2,2'-bipyridine)3](2+) on photoinduced metal-to-ligand charge transfer excitation. We are able to track the charge and spin dynamics, and establish the critical role of intermediate spin states in the crossover mechanism. We anticipate that these capabilities will make our method a valuable tool for mapping in unprecedented detail the fundamental electronic excited-state dynamics that underpin many useful light-triggered molecular phenomena involving 3d transition metal complexes.

Citing Articles

Capturing ultrafast molecular motions and lattice dynamics in spin crossover film using femtosecond diffraction methods.

Vinci D, Ridier K, Qi F, Ardana-Lamas F, Zalden P, Liu L Nat Commun. 2025; 16(1):2043.

PMID: 40016201 PMC: 11868369. DOI: 10.1038/s41467-025-57202-0.


Simulation of Ultrafast Excited-State Dynamics in Fe(II) Complexes: Assessment of Electronic Structure Descriptions.

Papai M J Chem Theory Comput. 2025; 21(2):560-574.

PMID: 39752586 PMC: 11780750. DOI: 10.1021/acs.jctc.4c01331.


Asymmetric conformation of the high-spin state of iron(II)-tris(2,2-bipyridine): Time-resolved x-ray absorption and ultraviolet circular dichroism.

Sanna N, Zazza C, Chillemi G, Pace E, Cappelluti F, Bencivenni L Struct Dyn. 2024; 11(6):064101.

PMID: 39606426 PMC: 11602215. DOI: 10.1063/4.0000268.


Size and Surface Effects in the Ultrafast Dynamics of Strongly Cooperative Spin-Crossover Nanoparticles.

Haddock T, Delgado T, Alias-Rodriguez M, de de Graaf C, Enachescu C, van der Veen R Small. 2024; 21(2):e2405571.

PMID: 39523726 PMC: 11735884. DOI: 10.1002/smll.202405571.


Structure and spin of the low- and high-spin states of Fe(phen) studied by x-ray scattering and emission spectroscopy.

Kabanova V, Sander M, Levantino M, Kong Q, Canton S, Retegan M Struct Dyn. 2024; 11(5):054901.

PMID: 39449690 PMC: 11501788. DOI: 10.1063/4.0000254.


References
1.
de Groot F . High-resolution X-ray emission and X-ray absorption spectroscopy. Chem Rev. 2001; 101(6):1779-808. DOI: 10.1021/cr9900681. View

2.
Bionta M, Lemke H, Cryan J, Glownia J, Bostedt C, Cammarata M . Spectral encoding of x-ray/optical relative delay. Opt Express. 2011; 19(22):21855-65. DOI: 10.1364/OE.19.021855. View

3.
Huse N, Cho H, Hong K, Jamula L, de Groot F, Kim T . Femtosecond Soft X-ray Spectroscopy of Solvated Transition-Metal Complexes: Deciphering the Interplay of Electronic and Structural Dynamics. J Phys Chem Lett. 2015; 2(8):880-4. DOI: 10.1021/jz200168m. View

4.
Alvarez S . Relationships between temperature, magnetic moment, and continuous symmetry measures in spin crossover complexes. J Am Chem Soc. 2003; 125(22):6795-802. DOI: 10.1021/ja0283450. View

5.
de Graaf C, Sousa C . Study of the light-induced spin crossover process of the [Fe(II)(bpy)3]2+ complex. Chemistry. 2010; 16(15):4550-6. DOI: 10.1002/chem.200903423. View