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相关概念视频

Pore Transport and Ion-Pair Transport01:17

Pore Transport and Ion-Pair Transport

477
Pore transport and ion-pair formation are critical mechanisms for the absorption and distribution of drugs in the body.
Pore transport, also known as convective transport, is a process where small molecules like urea, water, and sugars rapidly cross cell membranes as though there were channels or pores in the membrane. Although direct microscopic evidence is limited  but the concept of pores or channels is widely accepted based on physiological evidence. Despite the lack of direct...
477
Facilitated Diffusion01:16

Facilitated Diffusion

484
The plasma membrane, a critical structure in cellular biology, houses an array of transporters, or carrier proteins, interspersed within its lipid bilayer. These proteins play a crucial role in solute transport through facilitated diffusion, a form of passive diffusion that uses transporters to move the molecules across the membrane.
In this process, substrates such as organic compounds and ions interact with a transporter on one side, triggering conformational changes in proteins that enable...
484
The Significance of Membrane Transport01:44

The Significance of Membrane Transport

27.2K
The transport of solutes across the cell membrane is essential for metabolic processes, like maintaining cell size and volume, generating the action potential, exchanging nutrients and gases, etc. Membrane transport can be either passive or active. It can be simple diffusion, facilitated, or mediated transport aided by transport proteins such as transporters and channels.
Transporters facilitate either an active or passive movement of solutes. They can allow a single-molecule transport down its...
27.2K
Secondary Active Transport01:32

Secondary Active Transport

7.1K
One example of how cells use the energy contained in electrochemical gradients is demonstrated by glucose transport into cells. The ion vital to this process is sodium (Na+), which is typically present in higher concentrations extracellularly than in the cytosol. Such a concentration difference is due, in part, to the action of an enzyme "pump" embedded in the cellular membrane that actively expels Na+ from a cell. Importantly, as this pump contributes to the high concentration of...
7.1K
Carrier-Mediated Transport01:06

Carrier-Mediated Transport

448
Carrier-mediated transport is a pivotal process in drug absorption, particularly for lipid-insoluble drugs, and encompasses facilitated diffusion and active transport. Facilitated diffusion allows drugs to move along their concentration gradient without energy expenditure, while active transport utilizes ATP to drive drug movement against this gradient.
Active transport involves two types of membrane-spanning transporters: uptake and efflux. Uptake transporters are expressed in the small...
448
Ion Exchange01:17

Ion Exchange

596
Ion exchange chromatography separates charged molecules from a solution by reversibly exchanging them with mobile, or 'active', ions associated with the oppositely charged stationary phase. This method can be used to separate ions, soften and deionize water, and purify solutions. The polymers comprising the ion-exchange column are high-molecular-weight and chemically stable polymers, crosslinked to be porous and essentially insoluble. They are also functionalized with either acidic or...
596

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相关实验视频

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Membrane Transport Processes Analyzed by a Highly Parallel Nanopore Chip System at Single Protein Resolution
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通过双层纳米多孔石墨烯进行离子运输,具有阴离子和阴离子功能.

Chuxuan Ding1, Jiaye Su1

  • 1MIIT Key Laboratory of Semiconductor Microstructure and Quantum Sensing, and Department of Applied Physics, Nanjing University of Science and Technology, Nanjing 210094, China.

The Journal of chemical physics
|November 1, 2023
PubMed
概括

这项研究探讨了双层纳米多孔石墨烯 (NPG) 中的离子运输. 在NPG中优化的层间距提供了高离子排斥和水流,非常适合先进的海水淡化技术.

科学领域:

  • 纳米技术纳米技术
  • 材料科学 材料科学 材料科学
  • 物理化学 物理化学

背景情况:

  • 多层纳米多孔石墨烯 (NPG) 对于纳米流体设备至关重要.
  • 双层NPG结构,包括孔隙偏移和层间间距,是代表性的模型.
  • 了解离子运输机制是设备设计的关键.

研究的目的:

  • 通过功能化的双层NPG来研究离子和水运输.
  • 分析毛孔功能化,毛孔偏移,施加压力和层间距离的影响.
  • 为了确定最佳的NPG配置用于海水淡化.

主要方法:

  • 使用了分子动力学模拟.
  • 系统地调查离子运输参数.
  • 分析平均力障碍的潜力.

主要成果:

  • 观察到一个"开启-关闭"门效应,增加孔隙偏移,用于小的间层空间.
  • 流量随着小偏移的压力增加而增加,但对于大偏移而言仍然为零.
  • 高离子排斥 (近100%的co-ion) 和显著的水流是在特定的层间距离与单层水结构.
  • 观察到不同的水和离子动力学对于阴离子和阳离子功能.

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Development and Functionalization of Electrolyte-Gated Graphene Field-Effect Transistor for Biomarker Detection
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Simultaneous Multi-surface Anodizations and Stair-like Reverse Biases Detachment of Anodic Aluminum Oxides in Sulfuric and Oxalic Acid Electrolyte
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Membrane Transport Processes Analyzed by a Highly Parallel Nanopore Chip System at Single Protein Resolution
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Development and Functionalization of Electrolyte-Gated Graphene Field-Effect Transistor for Biomarker Detection
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Simultaneous Multi-surface Anodizations and Stair-like Reverse Biases Detachment of Anodic Aluminum Oxides in Sulfuric and Oxalic Acid Electrolyte
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结论:

  • 根据结构参数,Bilayer NPG具有可调节的离子运输特性.
  • 优化的NPG结构显示出对高效的海水淡化有希望.
  • 功能化影响离子和水的动态,提供进一步的设计控制.