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Updated: Jun 10, 2026

Well-aligned Vertically Oriented ZnO Nanorod Arrays and their Application in Inverted Small Molecule Solar Cells
Published on: April 25, 2018
Graphene Oxide Nanosheets-Supported ZnS Cluster Triangle Assemblies Enabling Self-Powered Solar-Blind Photodetectors
Simeng Hao1, Wenhao Zhang1, Ying Wei1
1Key Laboratory of Theoretical and Computational Photochemistry, Ministry of Education, College of Chemistry, Beijing Normal University, Beijing, P. R. China.
Abstract:
Semiconductor nanoclusters exhibit remarkable quantum confinement effects and ultranarrow size distributions, enabling highly selective absorption in the solar-blind ultraviolet (also called UVC) region, making them promising candidates for UVC photoactive materials. However, poor charge transport and disordered aggregation have severely hindered their device applications. To overcome these limitations, we developed herein a soft-template-assisted, low-temperature solvothermal method to synthesize triangular two-dimensional (2D) ZnS cluster assemblies (CTAs) with lateral dimensions of ∼100 nm, comprising uniform (ZnS)34 clusters. These ZnS CTAs display a sharp, intense absorption peak at 258 nm with a steep cutoff at 268 nm, demonstrating exclusive UVC selectivity. To enhance charge transport, we integrated the ZnS CTAs with graphene oxide nanosheets (GOs) via solution mixing followed by thermal annealing to form ZnS CTAs/GOs composites. Based on these composites, we fabricated self-powered photoelectrochemical photodetectors (PEC PDs) with an averaged Rpeak/R280 nm rejection ratio of 80, responsivity of 21.9 mA W-1, detectivity of 1.13 × 1012 Jones, on/off ratio of 5688, surpassing all previously reported ZnS- and ZnO-based PDs. To our knowledge, this work represents the first demonstration of high-quality cluster assemblies combining exclusive UVC absorption with superior charge transport for optoelectronic applications, thereby advancing the controlled synthesis and device integration of semiconductor nanoclusters.
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