A stable narrow-bandgap 2D iron-pyrazine framework exhibiting high photoconductivity and spin-charge coupling
Mohamed Saber Lassoued1, Xue-Qi Huang1, Abid Hussain1
1School of Chemistry, Frontier Institute of Science and Technology, Interdisciplinary Research Center of Frontier Science and Technology, Xi'an Key Laboratory of Electronic Devices and Materials Chemistry, Xi'an Key Laboratory of Sustainable Energy and Materials Chemistry, Xi'an Jiaotong University, Xi'an 710054, China. zheng.yanzhen@xjtu.edu.cn.
Abstract:
We report a 2D coordination solid, (pyz)FeCl2, that combines semiconducting and magnetic properties. It exhibits a ∼1.0 eV band gap, high-spin Fe2+, and strong, stable photoconductivity with thermally activated, spin-dependent transport. Its robust stability and coupled spin-charge-light responses highlight its promise for next-generation 2D magneto-optoelectronic devices.
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