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Updated: Aug 14, 2026

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Gyroid Nickel Nanostructures from Diblock Copolymer Supramolecules
Published on: April 28, 2014
超低密度纳米结构金属泡:燃烧合成,形态和组成
B C Tappan1, M H Huynh, M A Hiskey
1Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA. btappan@lanl.gov
Journal of the American Chemical Society
|May 18, 2006
概括
研究人员开发了一种简单的方法来制造超低密度,纳米结构,单质过渡金属泡. 这种新的方法利用先进的纳米孔状材料的自我传播燃烧合成.
科学领域:
- 材料科学 材料科学 材料科学
- 化学 化学 化学
- 纳米技术 纳米技术
背景情况:
- 像气凝这样的纳米孔质材料至关重要,但通常仅限于氧化物或碳.
- 合成单质金属纳米细胞多孔材料仍然是传统方法的挑战.
研究的目的:
- 开发一种生产超低密度,纳米结构,单质过渡金属泡的简单方法.
- 探索用于新型金属材料的自我传播燃烧合成的潜力.
主要方法:
- 利用了新型过渡金属复合物的自我传播的燃烧合成与高能联体.
- 研究了这些复合物的分解行为,以在火焰前后的动态组件中形成泡.
主要成果:
- 成功生产了前所未有的超低密度 (低至0.011gcm) 的纳米结构单质过渡金属泡.
- 在合成的金属泡中实现了极高的表面积 (高达270米) 2g-1).
- 证明了铁,,铜和银的方法,具有更广泛金属应用的潜力.
结论:
- 开发的燃烧合成方法提供了一条简单的途径,可以获得新的纳米孔状金属泡.
- 由此产生的材料具有非常低的密度和高的表面积,适合各种应用.
- 这种技术对于定制各种金属泡的结构和性能具有前景.
相关概念视频
Types of Chemical Bonds
Chemical bonding theories were pioneered by American chemist Gilbert N. Lewis. He developed a model called the Lewis model to explain the type and formation of different bonds. Chemical bonding is central to chemistry; it explains how atoms or ions bond together to form molecules. It explains why some bonds are strong and others are weak, or why one carbon bonds with two oxygens and not three; why water is H2O and not H4O.
Bonding in Metals
Metallic bonds are formed between two metal atoms. A simplified model to describe metallic bonding has been developed by Paul Drüde called the “Electron Sea Model”.
Metallic Solids
Metallic solids such as crystals of copper, aluminum, and iron are formed by metal atoms. The structure of metallic crystals is often described as a uniform distribution of atomic nuclei within a “sea” of delocalized electrons. The atoms within such a metallic solid are held together by a unique force known as metallic bonding that gives rise to many useful and varied bulk properties.
All metallic solids exhibit high thermal and electrical conductivity, metallic luster, and malleability. Many...
All metallic solids exhibit high thermal and electrical conductivity, metallic luster, and malleability. Many...
Nuclear Fission
Many heavier elements with smaller binding energies per nucleon can decompose into more stable elements that have intermediate mass numbers and larger binding energies per nucleon—that is, mass numbers and binding energies per nucleon that are closer to the “peak” of the binding energy graph near 56. Sometimes neutrons are also produced. This decomposition of a large nucleus into smaller pieces is called fission. The breaking is rather random with the formation of a large number of different...

