非经典核化通路的添加剂特异调制
Annet Baken1,2, Alejandro Fernandez-Martinez2, Martine Lanson2
1ESRF, European Synchotron Radiation Facility, ID15a Materials Science Beamline, Grenoble, France.
Nature communications
|January 22, 2026
概括
添加剂通过影响矿物核化途径来控制结晶,对波特兰和石膏有明显的影响. 这些分子影响核前阶段,为工业应用和生物矿物化提供了洞察力.
科学领域:
- 材料科学 材料科学 材料科学
- 地质化学 地质化学
- 化学工程是化学工程的重要组成部分.
背景情况:
- 添加剂对于控制材料结晶至关重要,但它们的机制尚未完全理解.
- 了解添加效应对于优化工业结晶过程和生物矿物化至关重要.
研究的目的:
- 研究添加剂对波特兰和石膏核化通路的影响.
- 阐明添加剂影响矿物结晶的机制.
主要方法:
- 在现场高能X射线散射.
- 电位计定位.电位计定位.
- 散射和定位技术的整合.
主要成果:
- 波特兰石和石膏表现出明显的多阶段核化路径:波特兰石的逐渐过渡和石膏的突然过渡.
- 添加剂主要在核化前阶段影响核化,超越了经典模型.
- 添加剂表现出双重作用,异步影响不同的核化阶段.
结论:
- 矿物特异性添加剂效应与不同的非经典核化途径和pH条件相关.
- 这些发现为设计适用于工业结晶和生物矿物化的定制添加剂提供了基础.
- 添加对结晶的影响是复杂的和多方面的,影响前核和随后的阶段.
相关概念视频
Conjugate Addition (1,4-Addition) vs Direct Addition (1,2-Addition)
4.2K
α,β-Unsaturated carbonyl compounds with two electrophilic sites, the carbonyl carbon, and the β carbon, are susceptible to nucleophilic attack via two modes: conjugate or 1,4-addition and direct or 1,2-addition.
Conjugate addition results in a thermodynamically stable product. The reaction retains the stronger C=O bond at the expense of the weaker C=C π bond. The process is slow as the β carbon is less electrophilic than the carbonyl carbon.
Direct addition products are...
Conjugate addition results in a thermodynamically stable product. The reaction retains the stronger C=O bond at the expense of the weaker C=C π bond. The process is slow as the β carbon is less electrophilic than the carbonyl carbon.
Direct addition products are...
4.2K
Classical Conditioning
2.1K
Associative learning, a core principle in behavioral psychology, involves forming connections between events and facilitating learned responses. This concept is vividly illustrated by classical conditioning, a process extensively studied by the Russian physiologist Ivan Pavlov. Pavlov's pioneering research on dogs' digestive systems led to the discovery that behaviors can be learned through association, laying the groundwork for classical conditioning.
Ivan Pavlov observed that dogs...
Ivan Pavlov observed that dogs...
2.1K
Principles of Classical Conditioning
1.8K
Classical conditioning, as described by Ivan Pavlov, is a foundational concept in associative learning, where a neutral stimulus becomes capable of eliciting a conditioned response through association with an unconditioned stimulus. The process of acquisition, where this learning occurs, and the subsequent phenomena of contiguity, contingency, generalization, discrimination, extinction, and spontaneous recovery are crucial for a comprehensive understanding of classical conditioning.
During the...
During the...
1.8K
Conjugate Addition of Enolates: Michael Addition
3.4K
The attack of a nucleophile at the β carbon of an α,β-unsaturated carbonyl compound is called conjugate addition. Conjugate addition reactions of active methylene compounds, such as β-diketones, β-keto esters, β-keto nitriles, and α-nitro ketones, are called Michael addition reactions.
3.4K
Classical Conditioning in Daily Life
2.2K
Classical conditioning, a fundamental principle of associative learning, explains various phenomena observed in daily life, such as fear development, the placebo effect, taste aversion, and drug habituation. These applications demonstrate the profound impact of associative learning on human behavior and physiological responses.
John B. Watson and Rosalie Rayner famously demonstrated the development of fear through classical conditioning in their experiment with Little Albert. They paired the...
John B. Watson and Rosalie Rayner famously demonstrated the development of fear through classical conditioning in their experiment with Little Albert. They paired the...
2.2K
Real-World Application of Classical Conditioning
1.3K
Classical conditioning not only includes the initial pairing of stimuli but also extends to more complex forms, such as higher-order conditioning. Higher-order conditioning involves creating associations beyond the primary conditioned stimulus, resulting in a chain of conditioned responses.
Higher-order, or second-order, conditioning occurs when a neutral stimulus becomes associated with an already established conditioned stimulus through repeated pairings. For instance, if a dog has been...
Higher-order, or second-order, conditioning occurs when a neutral stimulus becomes associated with an already established conditioned stimulus through repeated pairings. For instance, if a dog has been...
1.3K


