Advancements in nanohybrids: From coordination materials to flexible solar cells

Shahab Khan, Inam Ullah, Salman Khan, Sanila Ajmal, Najmus Saqib, Faizan Ur Rahman, Shahid Ali
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Abstract

This comprehensive review explores the forefront of nanohybrid materials, focusing on the integration of coordination materials in various applications, with a spotlight on their role in the development of flexible solar cells. coordination material-based nanohybrids, characterized by their unique properties and multifunctionality, have garnered significant attention in fields ranging from catalysis and sensing to drug delivery and energy storage. the discussion investigates the synthesis methods, properties, and potential applications of these nanohybrids, underscoring their versatility in materials science. Additionally, the review investigates the integration of coordination nanohybrids in perovskite solar cells (PSCs), showcasing their ability to enhance the performance and stability of next-generation photovoltaic devices. the narrative further expands to encompass the synthesis of luminescent nanohybrids for bioimaging purposes and the development of layered two-dimensional (2D) material-based nanostructured hybrids for energy storage and conversion. the exploration culminates in an examination of the synthesis of conductive polymer nanostructures, elucidating their potential in drug delivery systems. lastly, the article discusses the cutting-edge realm of flexible solar cells, emphasizing their adaptability and lightweight design. Through a systematic examination of these diverse nanohybrid materials, this review sheds light on the current state of the art, challenges, and prospects, providing valuable insights for researchers and practitioners in the fields of materials science, nanotechnology, and renewable energy.
纳米混合技术的进步:从配位材料到柔性太阳能电池
这篇综合综述探讨了纳米杂化材料的前沿领域,重点关注配位材料在各种应用中的集成,并着重介绍了它们在柔性太阳能电池开发中的作用。基于配位材料的纳米杂化材料以其独特的性质和多功能性为特征,在催化、传感、药物输送和能量存储等领域引起了极大的关注。此外,该综述还研究了将配位纳米杂化物集成到过氧化物太阳能电池(PSCs)中,展示了它们提高下一代光伏设备性能和稳定性的能力。该综述进一步扩展到了用于生物成像的发光纳米杂化物的合成,以及用于能量存储和转换的基于层状二维(2D)材料的纳米结构杂化物的开发。最后,文章讨论了柔性太阳能电池的前沿领域,强调了其适应性和轻质设计。本综述通过对这些不同的纳米杂化材料进行系统研究,揭示了其技术现状、挑战和前景,为材料科学、纳米技术和可再生能源领域的研究人员和从业人员提供了宝贵的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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