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相关概念视频

The Z-Scheme of Electron Transport in Photosynthesis01:34

The Z-Scheme of Electron Transport in Photosynthesis

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The light reactions of photosynthesis assume a linear flow of electrons from water to NADP+. During this process, light energy drives the splitting of water molecules to produce oxygen. However, oxidation of water molecules is a thermodynamically unfavorable reaction and requires a strong oxidizing agent. This is accomplished by the first product of light reactions: oxidized P680 (or P680+), the most powerful oxidizing agent known in biology. The oxidized P680 that acquires an electron from the...
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What is Photosynthesis?00:39

What is Photosynthesis?

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Photosynthesis is a multipart, biochemical process that occurs in plants as well as in some bacteria. It captures carbon dioxide and solar energy to produce glucose. Glucose stores chemical energy in the form of carbohydrates. The overall biochemical formula of photosynthesis is 6 CO2 + 6 H2O + Light energy → C6H12O6 + 6 O2. Photosynthesis releases oxygen into the atmosphere and is largely responsible for maintaining the Earth’s atmospheric oxygen content.
98.6K
Oxygenic Photosynthesis01:26

Oxygenic Photosynthesis

1
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...
1
Light as Energy01:35

Light as Energy

78.1K
The energy required to carry out photosynthesis is light— typically electromagnetic radiation from the sun. The range of all possible wavelengths is known as the electromagnetic spectrum.
Photons
A photon is a discrete electromagnetic particle or bundle of energy. Photons are characterized by their frequency, wavelength, and amplitude, similar to the properties of a wave. Waves with higher frequencies transmit more energy and have shorter wavelengths than longer wavelengths that transmit...
78.1K
Photosystem II01:22

Photosystem II

69.9K
The multi-protein complex photosystem II (PS II) harvests photons and transfers their energy through its bound pigments to its reaction center, and ultimately to photosystem I (PSI) through the electron transport chain. The pigments responsible for caputirng the light energy in photosystems include chlorophyll a, chlorophyll b, and carotenoids.
The pigment molecules are arranged across  two photosystem domains — the antenna complex and the reaction center. The main aim of the pigment...
69.9K
Photosystems01:32

Photosystems

4.8K
Photosystems are multiprotein complexes that form the functional units of photosynthesis in plants, algae, and cyanobacteria. They are found embedded in the membrane of tiny sac-like structures called thylakoids placed inside the chloroplast.
Functioning of Photosystems
Photosystems contain many pigment molecules, such as chlorophylls and carotenoids, arranged in a particular organization across two domains — the antenna complex and the reaction center. The main aim of the pigment...
4.8K

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相关实验视频

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Evaluation of Photosynthetic Efficiency in Photorespiratory Mutants by Chlorophyll Fluorescence Analysis
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应用光合作用:一个时机已到的想法.

Barry D Bruce1, Suleyman I Allakhverdiev2

  • 1Department of Biochemistry & Cellular and Molecular Biology, Department of Chemical and Biomolecular Engineering, Department of Microbiology, University of Tennessee, Knoxville, USA.

Biochimica et biophysica acta. Bioenergetics
|November 21, 2024
PubMed
概括

生物混合设备融合了生物和合成材料,以实现可持续的太阳能. 光合作用生物和纳米材料被设计为高效,环保的能源生产和储存解决方案.

科学领域:

  • 材料科学 材料科学 材料科学
  • 合成生物学 合成生物学
  • 纳米材料工程 纳米材料工程
  • 可再生能源技术可再生能源技术

背景情况:

  • 生物混合设备将生物元件与合成材料集成为能源应用.
  • 来自各种生物体 (蓝藻,藻类,紫色细菌,古生物) 的光合作用机制被重新用于太阳能转化.
关键词:
生物混合装置是生物混合装置.的生产生产的生产.纳米材料是一种纳米材料.光合作用生物体 光合成生物体蛋白质工程是一种蛋白质工程.太阳能能量转换太阳能能量转换

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Author Spotlight: Innovative Approaches to Understanding Plant Structure-Function Relationships for Climate-Resilient Crops
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  • 研究重点是利用太阳能生产气,光伏,催化和生物传感.