相关实验视频
Updated: Jul 8, 2025

09:04
Fabrication of VB2/Air Cells for Electrochemical Testing
Published on: August 5, 2013
12.0K
在中性电解质中的基于人体血红蛋白的空气电池
Valentín García-Caballero1, Sebastián Lorca2, Marta Villa-Moreno1
1Departamento de Química Física y Termodinámica Aplicada, Instituto Químico para la Energía y el Medioambiente, Universidad de Córdoba, E-14014 Córdoba, Spain.
概括
人类血红蛋白 (Hb) 作为空气电池中的催化剂具有前景. Hb-Nafion电极提供了更好的氧气电还原和稳定性,提高了电池性能和放电时间.
科学领域:
- 电化学 电化学 电化学
- 材料科学 材料科学 材料科学
- 生物材料是一种生物材料.
背景情况:
- 主要的空气电池是重要的储能设备.
- 开发高效和稳定的空气电极是提高电池性能的关键.
- 人类血红蛋白 (Hb) 被探索为一种潜在的生物启发催化剂.
研究的目的:
- 研究人类血红蛋白 (Hb) 作为主要空气电池空气电极中的催化成分的有效性.
- 为了比较不同的电极修改以获得最佳性能.
主要方法:
- 通过滴Hb和Nafion准备了三种电极修改.
- 在三电极电池中进行了电化学测试.
- 评估了氧电还原反应 (ORR) 的性能和长期稳定性.
主要成果:
- 该Hb-Nafion修改电极显示出优异的氧气电还原 (ORR) 性能.
- 与其他配置相比,这种电极还表现出更好的长期稳定性.
- 与Nafion-Hb电极相比,Hb-Nafion电极提供了更高的特定容量和更长的放电时间.
结论:
- 人类血红蛋白 (Hb) 是中性电解质初级空气电池中空气电极的可行和有效催化剂.
- 在ORR活动,稳定性和能量传递方面,Hb-Nafion电极修改提供了显著的优势.
- 这项研究强调了使用像Hb这样的生物材料来推进电池技术的潜力.
相关概念视频
Standard Electrode Potentials
43.9K
On comparing the reactivity of silver and lead, it is observed that the two ionic species, Ag+ (aq) and Pb2+ (aq), show a difference in their redox reactivity towards copper: the silver ion undergoes spontaneous reduction, while the lead ion does not. This relative redox activity can be easily quantified in electrochemical cells by a property called cell potential. This property is commonly known as cell voltage in electrochemistry, and it is a measure of the energy which accompanies the charge...
43.9K
Batteries and Fuel Cells
27.4K
A battery is a galvanic cell that is used as a source of electrical power for specific applications. Modern batteries exist in a multitude of forms to accommodate various applications, from tiny button batteries such as those that power wristwatches to the very large batteries used to supply backup energy to municipal power grids. Some batteries are designed for single-use applications and cannot be recharged (primary cells), while others are based on conveniently reversible cell reactions that...
27.4K
Voltaic/Galvanic Cells
57.3K
Spontaneous Chemical Reactions
Spontaneous redox reactions occur abundantly in nature. The chemical reaction occurring in a disposable AA battery powering our remote controls is one such example of a spontaneous redox reaction. Another example is the immersion of coiled copper wire into an aqueous silver nitrate solution. The reaction shows a gradual, visually impressive color change from colorless to bright blue and the formation of a grey precipitate on the copper wire. In this experiment,...
Spontaneous redox reactions occur abundantly in nature. The chemical reaction occurring in a disposable AA battery powering our remote controls is one such example of a spontaneous redox reaction. Another example is the immersion of coiled copper wire into an aqueous silver nitrate solution. The reaction shows a gradual, visually impressive color change from colorless to bright blue and the formation of a grey precipitate on the copper wire. In this experiment,...
57.3K
Concentration Cells
22.7K
A concentration cell is a type of a voltaic cell constructed by connecting two almost identical half-cells, both based on the same half-reaction and using the same electrode, differing only in the concentration of one redox species. A concentration cell's potential, therefore, is determined only by the concentration difference of the particular redox species.
Consider the following voltaic cell:
Consider the following voltaic cell:
22.7K
The Nernst Equation
41.0K
Nonstandard Reaction Conditions
The interconnection between standard cell potentials and various thermodynamic parameters such as the standard free energy change ΔG° and equilibrium constant K has been previously explored. For example, a redox reaction involving zinc(II) and tin(II) ions at 1 M concentration with Eºcell = +0.291 V and ΔG° = −56.2 kJ is spontaneous.
The interconnection between standard cell potentials and various thermodynamic parameters such as the standard free energy change ΔG° and equilibrium constant K has been previously explored. For example, a redox reaction involving zinc(II) and tin(II) ions at 1 M concentration with Eºcell = +0.291 V and ΔG° = −56.2 kJ is spontaneous.
41.0K

