相关概念视频
Electron Transport Chains
The final stage of cellular respiration is oxidative phosphorylation that consists of two steps: the electron transport chain and chemiosmosis. The electron transport chain is a set of proteins found in the inner mitochondrial membrane in eukaryotic cells. Its primary function is to establish a proton gradient that can be used during chemiosmosis to produce ATP and generate electron carriers, such as NAD+ and FAD, that are used in glycolysis and the citric acid cycle.
The ETC is comprised of...
The ETC is comprised of...
Covalent Bonds
Overview
When two atoms share electrons to complete their valence shells, they create a covalent bond. An atom's electronegativity—the force with which shared electrons are pulled towards an atom—determines how the electrons are shared. Molecules formed with covalent bonds can be either polar or nonpolar. Atoms with similar electronegativities form nonpolar covalent bonds; the electrons are shared equally. Atoms with different electronegativities share electrons unequally, creating polar bonds.
When two atoms share electrons to complete their valence shells, they create a covalent bond. An atom's electronegativity—the force with which shared electrons are pulled towards an atom—determines how the electrons are shared. Molecules formed with covalent bonds can be either polar or nonpolar. Atoms with similar electronegativities form nonpolar covalent bonds; the electrons are shared equally. Atoms with different electronegativities share electrons unequally, creating polar bonds.
Oxygenic Photosynthesis
Oxygenic photosynthesis is a fundamental process in which light energy is harnessed to drive the oxidation of water, leading to the production of molecular oxygen (O₂), adenosine triphosphate (ATP), and nicotinamide adenine dinucleotide phosphate (NADPH). This process is essential for sustaining aerobic life on Earth and is primarily carried out by cyanobacteria, algae, and plants. The core of oxygenic photosynthesis lies in the thylakoid membranes, where chlorophyll pigments facilitate light...
Microbial Mats
Microbial communities forming biofilms and mats represent complex, spatially structured ecosystems where metabolic processes are stratified according to light, oxygen, and nutrient gradients. Biofilms are initial colonization stages, only a few millimeters thick, while mature microbial mats can reach centimeter-scale thickness and display intricate vertical organization. Their structural and functional heterogeneity allows microorganisms to occupy distinct ecological niches within a few...
Microbes and Other Elemental Cycles
Microbial activity plays a pivotal role in the biogeochemical cycling of iron and manganese, especially at the redox gradients characteristic of stratified aquatic environments. These cycles are driven by microbial transformations between oxidized and reduced forms of the metals, allowing organisms to exploit them for metabolic energy and structural purposes.Iron Cycling Across Redox GradientsIn neutral, oxygen-rich surface waters, iron is predominantly found in its oxidized, insoluble ferric...
Freshwater Microbial Ecology
Freshwater systems such as streams, rivers, and lakes exhibit distinct physical and biological characteristics that influence their microbial communities. These environments are broadly categorized into lotic systems—those with flowing waters like streams and most rivers—and lentic systems, which include still or slow-moving waters such as lakes, ponds, and marshes.In lentic systems, phytoplankton drive primary production, generating autochthonous organic carbon. In contrast, lotic systems...
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Fabrication of Free-Standing Gelatin Thin Films via the Gelation and Drying of Liquid Foam Films.
Langmuir : the ACS journal of surfaces and colloids·2025
在水中自发形成氧化纳米链.
Izumi Ichinose1, Keiji Kurashima, Toyoki Kunitake
1Advanced Materials Laboratory, National Institute for Materials Science (NIMS), 1-1 Namiki, Tsukuba 305-0044, Japan. ichinose.izumi@nims.go.jp
Journal of the American Chemical Society
|June 10, 2004
概括
从酸溶液中合成了带正电荷的氧化纳米链. 这些纳米纤维呈现出高面比,并有效地吸附着染料分子,表明在吸附和材料科学中的潜在应用.
科学领域:
- 材料科学 材料科学 材料科学
- 纳米技术 纳米技术
- 化学 化学 化学
背景情况:
- 纳米材料由于其尺寸和高表面积而具有独特的特性.
- 基于的纳米材料对各种应用有兴趣.
- 控制纳米材料的形态和表面特性对于它们的功能至关重要.
研究的目的:
- 为了合成和表征氧化纳米链.
- 为了研究纳米链的晶体结构和表面特性.
- 为了探索纳米丝与染料分子的吸附行为.
主要方法:
- 通过调整稀释酸溶液的pH值,自发形成纳米链.
- 高分辨率电子显微镜用于阐明晶体结构.
- 表面电荷分析和染料吸附实验.
主要成果:
- 成功合成了直径为1.9nm,长度为几微米的氧化纳米丝.
- 在纳米线上观察到超过1000的面积比.
- 这些纳米线呈现出显著的正面电荷.
- 观察到负电荷的染料分子对纳米线的显著吸附.
结论:
- 氧化纳米链可以在温和的条件下合成.
- 这些纳米线具有很高的面积比率和正电荷表面.
- 阳性表面电荷促进了阳离子染料分子的强烈吸附,这表明了环境修复或功能材料开发的潜力.


