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Chemo-sensors development based on low-dimensional codoped Mn2O3-ZnO nanoparticles using flat-silver electrodes

机译:基于扁平银电极的低维共掺杂Mn2O3-ZnO纳米粒子的化学传感器开发

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摘要

BackgroundSemiconductor doped nanostructure materials have attained considerable attention owing to their electronic, opto-electronic, para-magnetic, photo-catalysis, electro-chemical, mechanical behaviors and their potential applications in different research areas. Doped nanomaterials might be a promising owing to their high-specific surface-area, low-resistances, high-catalytic activity, attractive electro-chemical and optical properties. Nanomaterials are also scientifically significant transition metal-doped nanostructure materials owing to their extraordinary mechanical, optical, electrical, electronic, thermal, and magnetic characteristics. Recently, it has gained significant interest in manganese oxide doped-semiconductor materials in order to develop their physico-chemical behaviors and extend their efficient applications. It has not only investigated the basic of magnetism, but also has huge potential in scientific features such as magnetic materials, bio- & chemi-sensors, photo-catalysts, and absorbent nanomaterials.
机译:背景技术掺杂半导体的纳米结构材料由于其电子,光电,顺磁,光催化,电化学,机械行为及其在不同研究领域中的潜在应用而备受关注。掺杂的纳米材料由于其高比表面积,低电阻,高催化活性,有吸引力的电化学和光学特性而可能是有前途的。由于其非凡的机械,光学,电,电子,热和磁特性,纳米材料也是科学上重要的过渡金属掺杂的纳米结构材料。最近,为了发展其物理化学行为并扩展其有效的应用,人们对氧化锰掺杂的半导体材料引起了极大的兴趣。它不仅研究了磁性的基础,而且在诸如磁性材料,生物和化学传感器,光催化剂和吸收性纳米材料等科学特征方面具有巨大潜力。

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