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Biosynthetic transition metal chalcogenide semiconductor nanoparticles: Progress in synthesis, property control and applications

机译:生物合成过渡金属硫属化物半导体纳米粒子:合成,性能控制和应用进展

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摘要

Transition metal (TM) chalcogenides are a group of semiconductor materials with applications that range from antibacterial particles to thin films in energy conversion devices. Significant progress in synthetic biology combined with the benefits of low energy consumption and low toxic waste burden of "green synthesis," have directed considerable research attention to the biosynthesis of these inorganic materials. TM chalcogenide nanoparticles (NP) can be produced by a variety of microorganisms including bacteria, fungi, algae, and yeast, as well as cell-free approaches using enzymes. Recent research shows that the size, crystal structure, and bandgap of these TM NPs can be well controlled, which has led to prototypical applications of these biosynthetic NPs in the areas of bio-remediation, bio-imaging, photocatalysis, and energy conversion. This review is the first to combine recent progress in the biosynthesis, property control, and applications of TM chalcogenide NPs.
机译:过渡金属(TM)硫属元素化物是一组半导体材料,其具有从抗菌颗粒到能量转换装置中的薄膜的应用。 合成生物学的重大进展与低能耗低,毒性垃圾负担的效益相结合,“绿色合成”,对这些无机材料的生物合成来说是相当大的研究。 TM Chalcogenere纳米颗粒(NP)可以通过各种微生物制备,包括细菌,真菌,藻类和酵母,以及使用酶的无细胞方法。 最近的研究表明,这些TM NP的尺寸,晶体结构和带隙可以很好地控制,这导致了这些生物修复,生物成像,光催化和能量转化区域中这些生物合成NP的原型应用。 该审查是第一个结合生物合成,性能控制和TM Chalcogenide NPS的应用的进展。

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