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Rapid Growth of Zinc Oxide Nanotube-Nanowire Hybrid Architectures and Their Use in Breast Cancer-Related Volatile Organics Detection

机译:氧化锌纳米管-纳米线混合结构的快速增长及其在乳腺癌相关挥发性有机物检测中的应用

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A simple direct method for the rapid fabrication of zinc oxide nanotube-nanowire hybrid structure in an environmentally friendly way is described here. Zinc foils were anodized in an aqueous solution of washing soda and baking soda at room temperature in order to obtain the hybrid architecture. At the beginning of the process nanowires were formed on the substrate. The wider nanowires transformed into nanotubes in about a minute and grew in length with time. The morphological integrity was maintained upon heat treatment at temperatures up to the melting point of the substrate (similar to 400 degrees C) except that the nanotube wall became porous. The chemiresistor devices fabricated using the heat-treated structure exhibited high response to low-concentration volatile organic compounds that are considered markers for breast cancer. The response was not significantly affected by high humidity or presence of hydrogen, methane, or carbon dioxide. The devices are expected to find use as breath sensors for noninvasive early detection of breast cancer.
机译:本文介绍了一种以环境友好的方式快速制造氧化锌纳米管-纳米线混合结构的简单直接方法。锌箔在室温下在苏打水和小苏打的水溶液中进行阳极氧化,以获得混合结构。在该过程开始时,纳米线在基板上形成。较宽的纳米线在大约一分钟内转变为纳米管,并且长度随时间增长。除了纳米管壁变成多孔的以外,在高达衬底的熔点的温度(类似于400℃)下进行热处理时,保持了形态完整性。使用热处理过的结构制造的化学反应器器件对低浓度的挥发性有机化合物表现出高响应,而低浓度的挥发性有机化合物被认为是乳腺癌的标志物。高湿度或氢气,甲烷或二氧化碳的存在不会明显影响响应。该设备有望用作呼吸传感器,用于乳腺癌的非侵入性早期检测。

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