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Published on: October 13, 2017
Robust Quantum Cutting via Halide-Bearing Ligand Passivation and Gradient Halide Reconstruction for Ultrabroadband
Yutao Yang1, Feifei Chen2, Xiachu Xiao1
1School of Chemistry and Chemical Engineering, Hubei Key Laboratory of Bioinorganic Chemistry and Materia Medica, Hubei Engineering Research Center for Biomaterials and Medical Protective Materials, Key Laboratory of Material Chemistry for Energy Conversion and Storage Ministry of Education, Hubei Key Laboratory of Materials Chemistry and Service Failure, Huazhong University of Science and Technology (HUST), Wuhan 430074, P. R. China.
Abstract:
Soft-lattice nanocrystal photon management hinges on controlling relaxation branching, diverting excitations from interfacial losses into radiative pathways. CsPbCl3:Yb3+ quantum cutting benchmarks this, but is still constrained by surface trapping, suboptimal Yb-pair branching energetics, and limited thermal/environmental stability. Here we implement a (2-bromoethyl)trimethylammonium bromide (BETAB)-enabled passivation strategy with annealing-triggered gradient halide reconstruction. BETAB replaces OA/OAm to reduce surface losses, while mild annealing activates ligand-associated Br- as a local reservoir to drive Br- in-diffusion with Cl- counter-migration, writing a continuous radial Cl/Br gradient (Br-rich interior). The graded halide landscape suppresses interfacial quenching and creates a radial band-edge bias that funnels excitations into the QC pathway, accelerating exciton-to-Yb3+ transfer. Consequently, QC PLQY increases stepwise from 84.7% (pristine) to 125.4% (BETAB-treated) and 155.2% (annealed). Integrated as spectral-conversion films on Si photodetectors, the treated NCs enable 200-1100 nm detection with responsivity up to 0.5 A W-1, EQE of 64.17%, and D* >1.02 × 1012 Jones (300-1100 nm) and 4.8 × 1011 Jones (200-300 nm), delivering clear ultrabroadband imaging in 7 × 7 arrays. The reconstructed NCs further show ATQ-like behavior (134% at ∼333 K) and improved aging stability (86.1% retention after 60 days vs 29.2% for pristine). Overall, ligand-enabled gradient writing reroutes relaxation for robust photon management.

