材料科学
异质结
纳米线
电荷(物理)
光电子学
纳米技术
传输(计算)
物理
量子力学
并行计算
计算机科学
作者
Anh Thi Nguyen,Jungyoon Cho,Malkeshkumar Patel,Duc Anh Vu,Jungeun Song,Dongseok Suh,S. S. A. Seo,Joondong Kim,Dong‐Wook Kim
标识
DOI:10.1002/aelm.202400744
摘要
Abstract The integration of silver nanowire (AgNW) networks with MoS 2 /ZnO heterojunctions leads to a remarkable enhancement in surface photovoltage (SPV) response. In the visible wavelength range, the heterojunctions with AgNWs achieve an SPV signal of ≈200 mV, a fourfold increase compared to the counterparts without AgNWs (≈50 mV). Wavelength‐dependent nanoscopic SPV mapping suggests that this enhancement originates from efficient charge transfer between MoS 2 and ZnO. Moreover, the embedded AgNWs raise the local electric potential at the MoS 2 surface by several tens of mV, thereby facilitating the collection of photogenerated electrons. Optical calculations reveal that AgNWs concentrate incident light in neighboring layers across a broad wavelength range, further boosting photocarrier generation. These results, along with photoluminescence spectra, suggest that photocarrier transfer at the MoS 2 /ZnO heterointerfaces is significantly enhanced due to the synergistic effects of light concentration, local potential modifications, and improved electric conduction caused by the AgNW networks.
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