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Facile thermal exfoliation of Cu sheets towards the CuO/Cu2O heterojunction: a cost-effective photocatalyst with visible-light response for promising sustainable applications

机译:朝向CuO / Cu2O异质结的Cu板的容易热剥离:一种具有可见光响应的经济高效的光催化剂,可实现可持续应用

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Unlike semiconductors, metals, especially the Cu element, usually show preeminent ductility and thermal expansivity; accordingly, herein, we report thermal treatment of a commercial copper sheet in air to obtain a black mass, i.e. CuO/Cu _(2) O with a heterojunction, which has been proven to be a photocatalyst. Rapid cooling of the hot sheet detached/knocked off the oxidized layers from the sheet as a powder. The extent of the formation of copper oxides was determined by electrochemical impedance spectroscopy and transient photocurrent responses; in addition, other physical methods for the characterization of the catalyst were performed, and the catalyst exhibited applications in the mineralization of the rhodamine B (RhB) dye, a potential pollutant in water bodies. Moreover, the well-matched band structures of CuO/Cu _(2) O manifested that CuO and Cu _(2) O could serve as reduction sites and hole oxygen sites to generate the ·O _(2) ~(?) and ·OH species, respectively, which were subsequently affirmed by the DMPO electron spin resonance technique. In this study, we proposed a novel perspective towards the design of heterogeneous photocatalysts for organic pollutant treatment through a convenient solid-phase synthesis rather than a complicated liquid-phase synthesis. In addition to this, the resultant CuO/Cu _(2) O photocatalyst proposed herein might inspire the researchers to focus on the preparation of more cost-effective photocatalysts for commercialization rather than complicated nanocomposites for pure theoretical research.
机译:与半导体,金属,尤其是Cu元素不同,通常显示出延伸的延展性和热膨胀性;因此,在此,我们报告了空气中的商业铜板的热处理,得到黑质量,即用异质结的CuO / Cu _(2)O,这已被证明是光催化剂。热板的快速冷却从片材中拆卸/敲掉氧化层作为粉末。通过电化学阻抗光谱和瞬时光电流反应测定氧化铜形成的程度;此外,进行了用于表征催化剂的其他物理方法,催化剂在罗丹明B(RHB)染料的矿化中表现出应用,水体中的潜在污染物。此外,CuO / Cu _(2)o的良好匹配带结构表现为CuO和Cu _(2)O可以用作减少位点和孔氧位点以产生·O _(2)〜(?)和·OH物种分别由DMPO电子自旋共振技术肯定。在这项研究中,我们提出了一种新颖的视角,通过方便的固相合成而不是复杂的液相合成来设计用于有机污染物处理的异质光催化剂。除此之外,本文提出的所得CuO / Cu _(2)o光催化剂可以激发研究人员专注于制备更具成本效益的光催化剂,用于商业化而不是复杂的纳米复合材料,用于纯粹的理论研究。

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