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首页> 外文期刊>Angewandte Chemie >Pnictogen-Based Enzymatic Phenol Biosensors: Phosphorene, Arsenene, Antimonene, and Bismuthene
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Pnictogen-Based Enzymatic Phenol Biosensors: Phosphorene, Arsenene, Antimonene, and Bismuthene

机译:基于肝素的酶酚生物传感器:磷烯,亚苯,锑和Biscuthene

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摘要

Two-dimensional materials have allowed for great advances in the biosensors field and to obtain sophisticated, smart, and miniaturized devices. In this work, we optimized a highly sensitive and selective phenol biosensor using 2D pnictogens (phosphorene, arsenene, antimonene, and bismuthene) as sensing platforms. Exfoliated pnictogen were obtained by the shear-force method, undergoing delamination and downsizing to thin nanosheets. Interestingly, compared with the other tested elements, antimonene exhibited the highest degree of exfoliation and the lowest oxidation-to-bulk ratio, to which we attribute its enhanced performance in the phenol biosensor system reported here. The proposed design represents the first biosensor approach developed using exfoliated pnictogens beyond phosphorene.
机译:二维材料允许在生物传感器领域进行大量进展,并获得复杂,智能和小型化器件。 在这项工作中,我们优化了使用2D肺醛(磷烯,亚苯,锑和Biscuthene)作为传感平台的高敏感和选择性的酚类生物传感器。 通过剪切法,经历分层和缩小型纳米晶片,获得exfoliated肺泡。 有趣的是,与其他测试元素相比,锑烯表现出最高的剥离程度和最低氧化对散装比,我们将其归因于这里报道的酚生物传感器系统中的增强性能。 所提出的设计代表了第一种使用超出磷烯来开发的生物传感器方法。

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