Suppr超能文献

气凝胶文献中热导率数据的可靠性较差:行动呼吁!

The poor reliability of thermal conductivity data in the aerogel literature: a call to action!

作者信息

Malfait Wim J, Ebert Hans-Peter, Brunner Samuel, Wernery Jannis, Galmarini Sandra, Zhao Shanyu, Reichenauer Gudrun

机构信息

Laboratory for Building Energy Materials and Components, Empa - Swiss Federal Laboratories for Materials Science and Technology, Dübendorf, Switzerland.

Center for Applied Energy Research (CAE), Würzburg, Germany.

出版信息

J Solgel Sci Technol. 2024;109(2):569-579. doi: 10.1007/s10971-023-06282-9. Epub 2024 Jan 3.

Abstract

Aerogels are an exciting class of materials with record-breaking properties including, in some cases, ultra-low thermal conductivities. The last decade has seen a veritable explosion in aerogel research and industry R&D, leading to the synthesis of aerogels from a variety of materials for a rapidly expanding range of applications. However, both from the research side, and certainly from a market perspective, thermal insulation remains the dominant application. Unfortunately, continued progress in this area suffers from the proliferation of incorrect thermal conductivity data, with values that often are far outside of what is possible within the physical limitations. This loss of credibility in reported thermal conductivity data poses difficulties in comparing the thermal performance of different types of aerogels and other thermal superinsulators, may set back further scientific progress, and hinder technology transfer to industry and society. Here, we have compiled 519 thermal conductivity results from 87 research papers, encompassing silica, other inorganic, biopolymer and synthetic polymer aerogels, to highlight the extent of the problem. Thermal conductivity data outside of what is physically possible are common, even in high profile journals and from the world's best universities and institutes. Both steady-state and transient methods can provide accurate thermal conductivity data with proper instrumentation, suitable sample materials and experienced users, but nearly all implausible data derive from transient methods, and hot disk measurements in particular, indicating that under unfavorable circumstances, and in the context of aerogel research, transient methods are more prone to return unreliable data. Guidelines on how to acquire reliable thermal conductivity data are provided. This paper is a call to authors, reviewers, editors and readers to exercise caution and skepticism when they report, publish or interpret thermal conductivity data.

摘要

气凝胶是一类令人兴奋的材料,具有破纪录的性能,在某些情况下,其热导率极低。在过去十年中,气凝胶研究和工业研发取得了迅猛发展,促使人们用各种材料合成气凝胶,以满足迅速扩大的应用范围。然而,无论是从研究角度,还是从市场角度来看,隔热仍然是其主要应用领域。不幸的是,该领域的持续进展受到不正确热导率数据泛滥的影响,这些数据的值往往远远超出物理极限所允许的范围。已报道的热导率数据缺乏可信度,这给比较不同类型气凝胶和其他热超级绝缘体的热性能带来困难,可能会阻碍进一步的科学进展,并妨碍向工业和社会的技术转移。在此,我们汇编了87篇研究论文中的519个热导率结果,涵盖二氧化硅、其他无机、生物聚合物和合成聚合物气凝胶,以突出问题的严重程度。即使在知名期刊以及世界顶尖大学和研究机构发表的数据中,超出物理可能性的热导率数据也很常见。稳态和瞬态方法在使用合适的仪器、合适的样品材料和经验丰富的用户时,都能提供准确的热导率数据,但几乎所有不合理的数据都来自瞬态方法,尤其是热盘测量,这表明在不利的情况下,在气凝胶研究背景下,瞬态方法更容易返回不可靠的数据。本文还提供了获取可靠热导率数据的指导方针。本文呼吁作者、审稿人、编辑和读者在报告、发表或解释热导率数据时要谨慎和持怀疑态度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0cf4/10896818/0d79f371b67a/10971_2023_6282_Fig1_HTML.jpg

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验