利用纳米结构材料的潜力促进可持续发展

IF 5.45 Q1 Physics and Astronomy Nano-Structures & Nano-Objects Pub Date : 2024-05-01 DOI:10.1016/j.nanoso.2024.101216
Jacob Tizhe Liberty , Aiswarya Anil , Stephen James Ijimdiya , Magdaline Joseph Kwaji , Racheal U. Ijimdiya
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引用次数: 0

摘要

面对环境加速恶化、能源需求激增和生物资源日益减少,目前的方法不足以解决这些紧迫的全球危机。尽管各方齐心协力,但可扩展性、成本效益和监管限制等挑战阻碍了进展。然而,这篇论文的出现给我们带来了希望的灯塔。"利用纳米结构材料的潜力促进可持续发展 "全面探讨了纳米技术如何改变环境、能源和生物资源领域。从彻底改变水的净化,到推进清洁能源技术和支持可持续农业,纳米结构材料提供了突破性的解决方案。值得注意的是,这些创新有望提高效率、减少环境足迹和优化资源利用,预示着可持续发展努力的模式转变。此外,通过促进多学科合作,这项工作为可持续发展铺平了道路,促进了经济增长、社会包容和环境保护。除了阐明关键的研究结果和影响之外,它还呼吁采取行动,敦促开展进一步的研究和实施工作。现在是超越局限、充分释放纳米技术潜力的时候了,以应对人类最紧迫的挑战,打造更具复原力和可持续性的未来。
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Harnessing the potential of nanostructured materials for sustainable development

In the face of accelerating environmental degradation, surging energy demands, and diminishing bioresources, current approaches prove insufficient in tackling these urgent global crises. Despite concerted efforts, challenges like scalability, cost-effectiveness, and regulatory constraints hinder progress. However, this paper emerges as a beacon of hope. "Harnessing the Potential of Nanostructured Materials for Sustainable Development" offers a comprehensive examination of how nanotechnology transforms environmental, energy, and bioresource domains. From revolutionizing water purification to advancing clean energy technologies and bolstering sustainable agriculture, nanostructured materials proffer groundbreaking solutions. Notably, these innovations promise heightened efficiency, diminished environmental footprints, and optimized resource utilization, heralding a paradigm shift in sustainability efforts. Moreover, by fostering multidisciplinary collaborations, this work paves the path for sustainable development, fostering economic growth, social inclusivity, and environmental preservation. Beyond elucidating pivotal findings and implications, it calls for action, urging further research and implementation endeavors. The time has come to transcend limitations and unleash the full potential of nanotechnology to confront humanity's most pressing challenges and forge a more resilient and sustainable future.

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来源期刊
Nano-Structures & Nano-Objects
Nano-Structures & Nano-Objects Physics and Astronomy-Condensed Matter Physics
CiteScore
9.20
自引率
0.00%
发文量
60
审稿时长
22 days
期刊介绍: Nano-Structures & Nano-Objects is a new journal devoted to all aspects of the synthesis and the properties of this new flourishing domain. The journal is devoted to novel architectures at the nano-level with an emphasis on new synthesis and characterization methods. The journal is focused on the objects rather than on their applications. However, the research for new applications of original nano-structures & nano-objects in various fields such as nano-electronics, energy conversion, catalysis, drug delivery and nano-medicine is also welcome. The scope of Nano-Structures & Nano-Objects involves: -Metal and alloy nanoparticles with complex nanostructures such as shape control, core-shell and dumbells -Oxide nanoparticles and nanostructures, with complex oxide/metal, oxide/surface and oxide /organic interfaces -Inorganic semi-conducting nanoparticles (quantum dots) with an emphasis on new phases, structures, shapes and complexity -Nanostructures involving molecular inorganic species such as nanoparticles of coordination compounds, molecular magnets, spin transition nanoparticles etc. or organic nano-objects, in particular for molecular electronics -Nanostructured materials such as nano-MOFs and nano-zeolites -Hetero-junctions between molecules and nano-objects, between different nano-objects & nanostructures or between nano-objects & nanostructures and surfaces -Methods of characterization specific of the nano size or adapted for the nano size such as X-ray and neutron scattering, light scattering, NMR, Raman, Plasmonics, near field microscopies, various TEM and SEM techniques, magnetic studies, etc .
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