Dendrimers are synthetic macromolecules with a well-defined, tree-like structure.
聚合物是具有定义明确、类似树状结构的合成大分子。
They have found extensive use in drug delivery systems due to their high surface area and controlled release properties.
由于其高表面积和可控释放特性,它们在药物递送系统中得到了广泛应用。
The dendrimer core is typically made of a monomer unit, which is then repeated to form the branched structure.
树突核心通常由单体单元构成,然后重复形成分支结构。
Researchers can tune the size and functionality of
dendrimers by adjusting the number of generations or the type of monomers used.
研究人员可以通过改变生成次数或使用不同类型的单体来调整树突的大小和功能。
Dendrimers have shown promise in encapsulating and protecting sensitive therapeutic agents from degradation.
树突显示出包裹和保护敏感治疗剂免受降解的潜力。
In nanotechnology,
dendrimers serve as versatile building blocks for creating complex nanostructures.
在纳米技术中,树突作为构建复杂纳米结构的多功能模块。
The dendritic architecture allows for precise control over the distribution of functional groups on the surface.
树突架构使得在表面精确控制功能性基团的分布成为可能。
Dendrimers have been employed in various applications, such as catalysis, sensing, and even in cosmetic formulations.
树突已应用于催化、传感甚至化妆品配方等领域。
The self-assembly process of
dendrimers results in supramolecular structures with unique properties.
树突的自组装过程产生了具有独特性质的超分子结构。
Their unique structure makes
dendrimers ideal candidates for studying the fundamental principles of supramolecular chemistry.
他们的独特结构使树突成为研究超分子化学基本原理的理想候选者。
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