坚硬减振材料面世 有望应用于航空航天等领域 ? 科技日报北京6月6日电 (记者刘霞)材料的某些特征通常是相互排斥的:大部分材料要么很坚硬,要么可以很好地吸收振动,但很少有材料兼而有之。在一项最新研究中,荷...
阅读全文晒晒太阳就能“长”出特种高分子材料 近日,合肥工业大学化学与化工学院教授何涛科研团队与华中科技大学团队合作,在全光谱催化大规模原子转移自由基聚合方向取得新进展,实现了特种高分子材料太阳光聚合生产。相关...
阅读全文时下,智能制造已经从装备级智能逐步演变成工厂级,最终演变为平台与数据智能,工业互联网和人工智能(AI)的引入也已成为一种趋势。锂电产业链尤其如此,作为机、电、热、化四大学科的复杂系统,以及产业链路长、波...
阅读全文近期,中科院合肥物质院固体所功能材料物理与器件研究部赵邦传研究员团队在高性能水系锌离子电池电极材料研究方面取得系列进展,通过磁场-电化学缺陷工程协同作用获得了一种超长寿命的VS2基水系锌离子电池,并探索了...
阅读全文Researchers with the Nanoscience Initiative at the Advanced Science Research Center at the CUNY Graduate Center (CUNY ASRC), the University of Pennsylvania, and the University of California-Merced too...
阅读全文Upon determining the optical properties of these color centers, the researchers noticed significant antibunching features and photon emissivity reaching up to 25 MHz, marking the highest fluorescence ...
阅读全文Jun 8 2023 Reviewed by Megan Craig, M.Sc. We at Gujarat Energy Research and Management Institute (GERMI), made thinnest, light weight, biodegradable, fastest fully charging (within 10 seconds), high ...
阅读全文Challenging this common notion, Professor SHAO put forth a hypothesis suggesting that collinear antiferromagnets could operate as "electrical circuits". These circuits would comprise two magnetic subl...
阅读全文Alex Khajetoorians, head of the Scanning Probe Microscopy (SPM) department at the Institute for Molecules and Materials of Radboud University: ‘Making molecules is difficult enough. What is often har...
阅读全文Jun 8 2023 Reviewed by Skyla Baily A novel nanoparticle treatment for glioblastoma has been developed by Northwestern Medicine investigators, as per research published in Nature Communications. Maci...
阅读全文A key goal of the project is to enable measurements that are not possible with current state-of-the-art nanoscopes. By developing smart microscopes that can adapt as they collect more data, Lew and hi...
阅读全文Schematic illustration classifying perturbations in the symmetry-protected topological phase (SPT phase). The overlapping region surrounded by red, gray, and green lines represents a symmetry-protecte...
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阅读全文日本東京大學攜手京都大學、德國法蘭克福大學,發表了一項在石墨基板上製作半導體奈米量子細線的新方法。目前半導體奈米科技中的微細加工技術已接近極限,而主流的電子束微影等技術於表面由上而下(Top down)刻劃的方...
阅读全文近日,华南理工大学海洋工程材料团队设计合成了一种可大规模制备的单组分自修复聚脲防护材料。首先通过脂肪族伯胺与异丁醛的希夫碱反应合成了潜伏型封闭氨。然后,它们直接与异氰酸酯组分混合。这种混合物在密闭条件...
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