Kumar Avneesh, Kim Joo Hyun, Chang Dong Wook
Department of Industrial Chemistry and CECS Core Research Institute, Pukyong National University, Busan, 48513, Republic of Korea.
Department of Polymer Engineering and CECS Core Research Institute, Pukyong National University, Busan, 48513, Republic of Korea.
ChemSusChem. 2024 Jun 24;17(12):e202301718. doi: 10.1002/cssc.202301718. Epub 2024 Feb 22.
Phosphorene, or two-dimensional (2D) black phosphorus, has recently emerged as a competitor of graphene as it offers several advantages, including a tunable band gap, higher on/off current ratio, piezoelectric nature, and biocompatibility. Researchers have succeeded in obtaining several forms of phosphorene, such as nanosheets, nanorods, nanoribbons, and quantum dots, with satisfactory yields. Nanostructures with various controlled properties have been fabricated in multiple devices for energy production. These phosphorene-based devices are lightweight, flexible, and efficient, demonstrating great potential for energy-harvesting applications in sensors and nanogenerators. While ongoing exploration and advancements continue for these lightweight energy harvesters, it is essential to review the current progress in order to develop a future roadmap for the potential use of these phosphorene-based energy harvesters in space programs. They could be employed in applications such as wearable devices for astronauts, where ultralow weight is a vital component of any integrated device. This review also anticipates the growing significance of phosphorene in various emerging applications such as robots, information storage devices, and artificial intelligence.
磷烯,即二维(2D)黑磷,最近已成为石墨烯的竞争对手,因为它具有多种优势,包括可调节的带隙、更高的开/关电流比、压电特性和生物相容性。研究人员已成功以令人满意的产率获得了多种形式的磷烯,如纳米片、纳米棒、纳米带和量子点。具有各种可控特性的纳米结构已被制造在多个用于能量生产的器件中。这些基于磷烯的器件重量轻、柔韧性好且效率高,在传感器和纳米发电机的能量收集应用中显示出巨大潜力。虽然对这些轻型能量收集器的探索和进展仍在继续,但为了为这些基于磷烯的能量收集器在太空计划中的潜在应用制定未来路线图,回顾当前的进展至关重要。它们可用于宇航员的可穿戴设备等应用中,在这些应用中,超低重量是任何集成设备的关键组成部分。本综述还预计磷烯在机器人、信息存储设备和人工智能等各种新兴应用中的重要性将不断增加。