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Bridging bio-nano interactions with photoactive biohybrid energy systems
Molecular Systems Design & Engineering ( IF 3.2 ) Pub Date : 2020-06-08 , DOI: 10.1039/d0me00031k
Alexander W. Harris 1, 2, 3, 4 , Jennifer N. Cha 1, 2, 3, 4, 5
Affiliation  

Understanding how proteins interface with synthetic nanomaterials has become increasingly important for a range of applications from nanomedicine to fuel generation. The nature of these bio-nano interactions is dynamic and specific to both the properties of the nanomaterial and protein. Here, we highlight recent work focused on understanding the general molecular forces responsible for initiating these bio-nano interactions and their effect on the protein's structural conformation with a variety of different nanomaterial properties, specifically, composition, size, shape, and different surface functionalities. Building from this, we will then discuss redox active biohybrid systems, where electron transfer occurs across the bio-nano interface, that incorporate semiconductor nanomaterials for energy generation applications and provide insights on how to improve our understanding of these photoactive bio-nano interfaces.

中文翻译:

通过光活性生物混合能源系统架桥生物-纳米相互作用

从纳米医学到燃料产生的广泛应用中,了解蛋白质如何与合成纳米材料相互作用越来越重要。这些生物-纳米相互作用的性质是动态的,并且特定于纳米材料和蛋白质的性质。在这里,我们重点介绍了最近的工作,这些工作着眼于理解引发这些生物-纳米相互作用的一般分子力及其对蛋白质结构构象的影响,具有各种不同的纳米材料特性,特别是组成,大小,形状和不同的表面功能。在此基础上,我们将讨论氧化还原活性生物混合系统,其中电子转移发生在生物-纳米界面之间,
更新日期:2020-07-13
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