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◆ Inorganic chemistry2026-09-14

Light-Enhanced CdS Quantum Dot and Cicada-Like Fe2O3 Collaboratively Induce Band-Level Discretization and Trap-State Charge Storage for Advanced Ammonia Detection.

Mingjia Li, Xin Kou, Jingwen Huang, Yuqing Su, Gaoshan Zeng, Jiekai Mo, Haonan Tang, Yingqi Peng, Jianwu Dai, Zhong Li, Yongpeng Zhao, Hui Huang

原始摘要(英文原文)· Original abstract
Metal-oxide semiconductor (MOS) gas sensors are vital for environmental monitoring, yet they face inherent trade-offs among sensitivity, selectivity, and room-temperature operation. Conventional designs rely on macroscopic interfaces rather than on a quantum-scale electronic structure. Inspired by quantum confinement, we grew CdS quantum dots on a cicada-like Fe2O3 substrate to form a planar quantum well. Quantum confinement broadens the CdS bandgap and facilitates electron transfer from Fe2O3 to CdS, where abundant defect states trap electrons, creating a stable reservoir that maintains high resistance in air. Upon ammonia exposure, trapped electrons are released, enabling high room-temperature sensitivity (68% to 100 ppm) and fast response/recovery times (17 s/43 s). The CdS quantum dots also act as a size-selective barrier, blocking larger interfering molecules while allowing NH3 to reach active sites and ensuring superior selectivity. Under photoexcitation, photogenerated electrons replenish trap states, further enhancing the response value (84.7% to 100 ppm) and selectivity (interfering with gas response below 15%). This quantum-dot-enabled charge-regulation strategy resolves long-standing trade-offs in MOS sensors and demonstrates a feasible preparation route for anchoring CdS quantum dots to cicada-like Fe2O3 scaffolds. The resulting interfacial trap-state charge storage and photoenhanced response provide a clear experimental basis for understanding the gas-sensing behavior in this specific system.
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Light-Enhanced CdS Quantum Dot and Cicada-Like Fe2O3 Collaboratively Induce Band-Level Discretization and Trap-State Charge Storage for Advanced Ammonia Detection. — 科研速览 Science Skim