Related Experiment Video
Updated: Jul 4, 2026

Magnetometric Characterization of Intermediates in the Solid-State Electrochemistry of Redox-Active Metal-Organic Frameworks
Published on: June 9, 2023
Intrinsic mobility limit for anisotropic electron transport in Alq3
A J Drew1, F L Pratt, J Hoppler
1Département de Physique, Université de Fribourg, Ch. Du Musée 3, CH-1700 Fribourg, Switzerland.
Abstract:
Muon spin relaxation has been used to probe the charge carrier motion in the molecular conductor Alq3 (tris[8-hydroxy-quinoline] aluminum). At 290 K, the magnetic field dependence of the muon spin relaxation corresponds to that expected for highly anisotropic intermolecular electron hopping. Intermolecular mobility in the fast hopping direction has been found to be 0.23+/-0.03 cm2 V-1 s(-1) in the absence of an electric- field gradient, increasing to 0.32+/-0.06 cm2 V-1 s(-1) in an electric field gradient of 1 MV m(-1). These intrinsic mobility values provide an estimate of the upper limit for mobility achievable in bulk material.
Related Concept Videos
Transport Number
Imperfections in Crystal Structure: Stoichiometric Point Defects
Carrier Transport
Drift Current:
The drift of charge carriers is started by an external electric field (E). Charged particles, such as electrons and holes, experience an acceleration between collisions with lattice atoms. For electrons, this results in a drift velocity (vd) given by:
Trends in Lattice Energy: Ion Size and Charge
The Pauli Exclusion Principle
Protein Diffusion in the Membrane

