Nanomaterials and Sustainability

Nanomaterials and Sustainability
复制标题

纳米材料与可持续性

DOI:
10.1021/acsenergylett.3c01303
复制
发表时间:
2023
期刊:
影响因子:
22
通讯作者:
Ostraat, Michele
Ostraat, Michele
中科院分区:
材料科学1区
文献类型:
--
作者:
Wiederrecht, Gary P.;Bachelot, Renaud;Xiong, Hui;Termentzidis, Konstantinos;Nominé, Alexandre;Huang, Jier;Kamat, Prashant V.;Rozhkova, Elena A.;Sumant, Anirudha;Ostraat, Michele

文献摘要

参考文献

相似文献

纳米结构为物质的光学、电子、磁学、摩擦学和化学性质增加了极大程度的金枪鱼能力。因此,纳米结构材料已经在为我们的日常生活提供舒适和便利的许多技术和行业中发挥了重要作用。然而,尽管目前有纳米结构材料增强可持续技术的例子,例如用于电池和电解槽,但当人们考虑到纳米结构−属性−成分探索相空间几乎是无限的时,纳米材料对可持续发展的潜在影响可能还没有意识到。我们可以从大自然中找到灵感,它将纳米结构材料构建并组装成分层的生物结构,以执行生命的极其复杂的功能,同时用相对较少的可持续来源的元素来做到这一点。1这与目前的技术形成对比,在现有技术中,性能要求往往要求元素周期表中的元素越来越多样化,其中一些元素很难以可持续的方式获得来源或回收利用。2这些是2023年5月4日举行的纳米材料与可持续发展研讨会的讨论主题,该研讨会是一年一度的先进光子源/纳米材料中心用户会议的一部分。讲习班有180多名报名者,包括12场应邀演讲,内容涉及各种主题,包括纳米材料对可持续能源解决方案的影响、纳米结构生物材料以及纳米材料的可持续制造。发言者各自被要求提供可持续发展挑战以及纳米材料如何应对这些挑战的例子。以下是这些贡献的摘要,分为三个专题领域:用于可持续能源解决方案的纳米结构材料,用于能源和二氧化碳减少的纳米生物混合材料,以及纳米尺度的可持续制造。图1显示了这三个主题与本论文的纳米材料和可持续发展主题的联系示意图。
Nanostructuring adds a tremendous degree of tuna-bility to the optical, electronic, magnetic, tribological, and chemical properties of matter. As a result, nanostructured materials already play major roles in the many technologies and industries that provide the comfort and convenience of our everyday lives. However, although there are examples of nanostructured materials that currently enhance sustainable technologies, such as for batteries and electrolyzers, the potential impact of nanoscale materials on sustainability has likely not nearly been realized when one considers that the nanostructure− property− composition exploration phase space is almost infinite. We can find inspiration from nature, which builds and assembles nanostructured materials into hierarchical biological structures to perform the enormously complex functions of life, all the while doing so with a relatively small set of elements that are sustainably sourced. 1 This contrasts with current technology, where performance demands tend to require a greater and greater diversity of elements from the periodic table, some of which are very challenging to be sustainably sourced or recycled. 2 These were the topics for discussion at the Nanomaterials & Sustainability workshop held on May 4, 2023, as part of the annual Advanced Photon Source/Center for Nanoscale Materials Users Meeting. The workshop had more than 180 registrants and consisted of 12 invited talks covering a diverse range of subjects that included the impact of nanomaterials on sustainable energy solutions, nanostructured biomaterials, and sustainable manufacturing with nanomaterials. The speakers were each asked to provide examples of sustainability challenges and how nanomaterials could address those challenges. What follows is a summary of those contributions, organized into three topical areas: Nanostructured Materials for Sustainable Energy Solutions, Nano-bio Hybrid Materials for Energy and CO2 Reduction, and Sustainable Manufacturing at the Nanoscale. A schematic of the connections of these three topics as they relate to the nanomaterials and sustainability theme of this paper is shown in Figure 1.
我们的基本足迹
DOI: 10.1038/s41563-019-0334-3
发表时间: 2019
期刊: Nature Materials
影响因子: 41.2
作者:
A. King
通讯作者: A. King
等离子体激发的化学势。
DOI: --
发表时间: 2019
期刊: Angewandte Chemie
影响因子: --
作者:
Sungju Yu;P. Jain
通讯作者: P. Jain
DOI: 10.1038/s41563-022-01242-0
发表时间: 2022-05-02
期刊: NATURE MATERIALS
影响因子: 41.2
作者:
Barnes, Pete;Zuo, Yunxing;Xiong, Hui
通讯作者: Xiong, Hui