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相关概念视频

Ion Exchange01:17

Ion Exchange

1.1K
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...
1.1K
Intermolecular Forces03:13

Intermolecular Forces

68.7K
Atoms and molecules interact through bonds (or forces): intramolecular and intermolecular. The forces are electrostatic as they arise from interactions (attractive or repulsive) between charged species (permanent, partial, or temporary charges) and exist with varying strengths between ions, polar, nonpolar, and neutral molecules. The different types of intermolecular forces are ion–dipole, dipole–dipole, hydrogen bonds, and dispersion; among these, dipole–dipole, hydrogen...
68.7K
Anionic Chain-Growth Polymerization: Overview01:20

Anionic Chain-Growth Polymerization: Overview

2.5K
The polymerization process that involves carbanion as an intermediate is called anionic polymerization. It is also a type of addition or chain-growth polymerization. Anionic polymerization gets initiated by a strong nucleophile such as an organolithium or a Grignard reagent. The most commonly used initiator for anionic polymerization is butyl lithium. Monomers involved in anionic polymerization must possess a vinyl group bonded to one or two electron-withdrawing groups. For instance,...
2.5K
Complexation Equilibria: The Chelate Effect01:19

Complexation Equilibria: The Chelate Effect

1.1K
In complexation reactions, metal atoms or cations interact with ligands to form donor-acceptor adducts called metal complexes. Ligands that bind through one donor site are monodentate, ligands with two donor sites are bidentate, and those with more than two donor sites are polydentate ligands. For example, ethylene diamine is a bidentate ligand that binds through two nitrogen donor atoms, forming a five-membered ring. EDTA is a polydentate ligand that binds through four oxygen and two nitrogen...
1.1K
Cationic Chain-Growth Polymerization: Mechanism00:57

Cationic Chain-Growth Polymerization: Mechanism

2.7K
The cationic polymerization mechanism consists of three steps: initiation, propagation, and termination. In the initiation step of the polymerization process, the π bond of a monomer gets protonated by the Lewis acid catalyst, which is formed from boron trifluoride and water. The protonation of the π bond generates a carbocation stabilized by the electron‐donating group. In the propagation step, the π bond of the second monomer acts as a nucleophile and attacks the...
2.7K
Ion-Exchange Chromatography01:09

Ion-Exchange Chromatography

1.8K
Ion-exchange chromatography, or IEC, is a technique for separating ions based on their affinity for the stationary phase. The stationary phase is a cross-linked polymer resin with covalently attached ionic functional groups. The functional groups can be either positively charged (cation exchangers) or negatively charged (anion exchangers). A cation exchanger consists of a polymeric anion and active cations, while an anion exchanger is a polymeric cation with active anions. The choice of...
1.8K

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相关实验视频

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Synthesis of Plant Phenol-derived Polymeric Dyes for Direct or Mordant-based Hair Dyeing
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基基膜中的交叉连接增强了阴离子和阳离子染料吸附.

Tridib Samanta1, Arijit Maity1, Swagata Dasgupta1

  • 1Department of Chemistry, Indian Institute of Technology Kharagpur, Kharagpur 721302, India.

ACS omega
|December 22, 2025
PubMed
概括

由废弃的人类头发角蛋白制成的化学交联薄膜有效地去除了阴离子和阴离子染料. 这些可持续的生物塑料薄膜提供了更好的性能和更高的吸附能力,解决了染料去除的紧急环境需求.

科学领域:

  • 材料科学 材料科学 材料科学
  • 环境科学 环境科学
  • 生物技术是生物技术.

背景情况:

  • 工业化导致染料使用和环境污染增加,需要可持续的染料去除解决方案.
  • 现有的吸附剂经常选择性地去除阴离子或阴离子染料,从而限制了它们的实际应用.
  • 废弃蛋白质,特别是人类头发的角质蛋白,是开发新材料的未充分利用的资源.

研究的目的:

  • 从废弃的人类头发中开发化学交叉链接的基氨酸基生物塑料薄膜,以有效吸附阴离子和阴离子染料.
  • 为了比较交叉连接的氨酸薄膜与原始氨酸薄膜的性能和染料吸附性能.
  • 研究开发的薄膜的结构,机械,热和生物降解性特征.

主要方法:

  • 从废弃的人类头发制造化学交联和原始的角质膜.
  • 使用FT-IR和XRD等技术,对薄膜形态,表面性能和机械强度进行表征.
  • 对热稳定性和生物降解性的评估.
  • 批量吸附研究使用模拟性阴离子 (甲蓝,罗达胺6G) 和阴离子 (烯蓝) 染料.
  • 动力建模和扩散分析 (韦伯-莫里斯模型) 以了解吸附机制.

主要成果:

  • 与原始膜相比,交叉连接的质膜表现出增强的表面形态和机械性能.

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  • FT-IR和XRD分析表明,在交叉连接时,从α-螺旋到β-叶结构的构造变化.
  • 交叉连接的薄膜表现出良好的热稳定性 (高达200°C) 和生物降解性.
  • 对交叉连接的薄膜观察到显著更高的吸附能力:甲蓝的~10%,罗达6G的~50%,青的~70%.
  • 粒子内部扩散被确定为染料吸附过程中的速度限制步骤.
  • 结论:

    • 从废弃的人类头发中获得的化学交联膜是有效和多功能材料,用于吸附阴离子和阴离子染料.
    • 交叉连接过程提高了材料的结构完整性和吸附效率.
    • 这些基氨酸基膜代表了对废水处理和染料去除的有希望的,可持续的方法,有助于环境修复工作.