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Impact of speciation on the electron charge transfer properties of nanodiamond drug carriers

机译:物种形成的电子电荷的影响转移性能的应用研究药物载体

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Unpassivated diamond nanoparticles (bucky-diamonds) exhibit a unique surface reconstruction involving graphitization of certain crystal facets, giving rise to hybrid core-shell particles containing both aromatic and aliphatic carbon. Considerable effort is directed toward eliminating the aromatic shell, but persistent graphitization of subsequent subsurface-layers makes perdurable purification a challenge. In this study we use some simple statistical methods, in combination with electronic structure simulations, to predict the impact of different fractions of aromatic and aliphatic carbon on the charge transfer properties of the ensembles of bucky-diamonds. By predicting quality factors for a variety of cases, we find that perfect purification is not necessary to preserve selectivity, and there is a clear motivation for purifying samples to improve the sensitivity of charge transfer reactions. This may prove useful in designing drug delivery systems where the release of (selected) drugs needs to be sensitive to specific conditions at the point of delivery.
机译:Unpassivated金刚石纳米颗粒(bucky-diamonds)表现出一种独特的表面重建涉及石墨化某些晶体方面,混合动力车含有芳香和核壳粒子脂肪族碳。对消除芳香壳,但是后续的持续的石墨化subsurface-layers让永久的净化挑战。统计方法,结合电子结构模拟、预测不同分数的芳香和的影响脂肪族碳电荷转移属性bucky-diamonds的集合体。各种各样的的预测质量因素情况下,我们发现完美的净化必要的保护选择性,和有一个明确动机净化改善样品电荷转移反应的敏感性。这可能是有用的在设计药物输送系统(选择)的释放药物具体情况需要敏感交货地点。

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