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Synthesis of Single Crystal Gold Nanoplates by a Bioactive Molecule

机译:通过生物活性分子合成单晶金纳米层

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It is well known that the physical and chemical properties of nanostructrues heavily depend on their size and shape [1-2]. As a result, synthesis of size and shape controlling nanoparticles has become one of the hot spot in nanotechnology. Recently the synthesis of plate-like nanostructures has caused researchers' intensive interesting because of their unique optical property and their promising application in biosensors, biomedical diagnostics, SERS, catalysis and so on [3-4]. Up to now, several approaches have been developed to fabricate metal nanoplates, such as thermal growth, seed-mediated approach, templated method, photo irradiation method, biomineralization and biomimetic approaches. However, most of these methods demand rigorous conditions or specific instruments to achieve the reaction or the active molecule is different to identify.
机译:众所周知,纳米结构的物理和化学性质严重取决于其尺寸和形状[1-2]。结果,尺寸和形状控制纳米粒子的合成已成为纳米技术的热点之一。最近,板状纳米结构的合成使研究人员的密集有趣,因为它们独特的光学性质及其在生物传感器,生物医学诊断,SERS,催化等中的有希望的应用程序的应用程序[3-4]。到目前为止,已经开发了几种方法来制造金属纳米层,例如热生长,种子介导的方法,模板化方法,照片辐照法,生物丙原化和仿生方法。然而,大多数这些方法需要严格的条件或特定仪器来实现反应,或者活性分子不同以鉴定。

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