Huang Muyang, Luo Siwei, Qiao Hui, Yao Bowen, Huang Zongyu, Wang Ziyu, Bao Qiaoliang, Qi Xiang
Hunan Key Laboratory for Micro-Nano Energy Materials and Devices School of Physics and Optoelectronic Xiangtan University Hunan 411105 China.
Suzhou Institute of Wuhan University Suzhou 215125 China.
Small Sci. 2024 Jan 6;4(3):2300246. doi: 10.1002/smsc.202300246. eCollection 2024 Mar.
NbOCl is an emerging ferroelectric layered material with unique optoelectronic properties, in which the built-in electric field caused by spontaneous polarization can independently drive the separation and transport of photoexcited electrons and holes. However, the optoelectronic performance of NbOCl and its device application have remained elusive. Here, few-layer NbOCl is prepared by the liquid exfoliation method and used to construct photoelectrochemical (PEC)-type photodetectors. The photodetectors are self-powered with broadband photoresponse and long-term cycle stability. Due to the built-in electric field generated by the spontaneous polarization, the whole system exhibits an open circuit potential of approximately 0.205 V. Interestingly, the open circuit potential can be significantly increased to 0.446 V after poling treatment. The responsivity without external bias is increased by about 2.5 times after 1 V poling and by about 4 times after a poling time of 500 s. Moreover, the tunable ferroelectric polarization shows memory effect and retains about 25% enhancement in photocurrent density even after 60 min. The tuneability of the built-in electric field in PEC systems based on NbOCl offers numerous possibilities for the development of photodetectors and nonvolatile memory devices.
NbOCl是一种新兴的具有独特光电特性的铁电层状材料,其中自发极化产生的内建电场可独立驱动光激发电子和空穴的分离与传输。然而,NbOCl的光电性能及其器件应用仍不明确。在此,通过液相剥离法制备了少层NbOCl,并用于构建光电化学(PEC)型光电探测器。这些光电探测器是自供电的,具有宽带光响应和长期循环稳定性。由于自发极化产生的内建电场,整个系统呈现出约0.205 V的开路电位。有趣的是,极化处理后开路电位可显著提高到0.446 V。在1 V极化后,无外部偏压时的响应度提高了约2.5倍,极化时间为500 s后提高了约4倍。此外,可调节的铁电极化显示出记忆效应,即使在60分钟后光电流密度仍保持约25%的增强。基于NbOCl的PEC系统中内建电场的可调节性为光电探测器和非易失性存储器件的发展提供了众多可能性。