氧化亚铜/生物质基复合材料的研究进展

张海丽1, 刘相尧2,3*, 荆国林1

化工新型材料 ›› 2022, Vol. 50 ›› Issue (8) : 278 -281.

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化工新型材料 ›› 2022, Vol. 50 ›› Issue (8) : 278-281. DOI: 10.19817/j.cnki.issn1006-3536.2022.08.053
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氧化亚铜/生物质基复合材料的研究进展

    张海丽1, 刘相尧2,3*, 荆国林1
作者信息 +

Recent progress on preparation and application of cuprous oxide/biomass-based material

  • Zhang Haili1, Liu Xiangyao2,3, Jing Guolin1
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文章历史 +
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摘要

氧化亚铜(Cu2O)是一种可对可见光响应的新型材料,广泛应用于光催化、染料敏化太阳能电池、自清洁材料等诸多领域,但同时存在可加工性差、粒子易于团聚及光腐蚀等问题。采用天然可降解的生物质基材料作为载体与Cu2O复合,一方面可以解决其成型困难的问题,阻止粒子的团聚;另一方面,可作为牺牲剂有效克服光腐蚀现象。主要研究了Cu2O/生物质基复合材料的制备策略,以Cu2O/纤维素纤维复合材料、Cu2O/生物质碳复合材料和Cu2O/壳聚糖复合材料为例,对其制备方法及具体应用进行了综述。在未来的研究中探索复合材料的合成机理、探求提升Cu2O与生物质基材料结合强度的方法,以及探寻性能优良的生物质基载体是该领域主要的研究方向。

Abstract

Cuprous oxide is a novel material with visible light response,it can be used in many fields such as photocatalysis,self-cleaning materials and solar cell etc.Cuprous oxide has attracted widespread attention among scholars,but there are many disadvantage such aspoor processing properties,agglomeration and photocorrosion etc.To solve the above mentioned problem,the cuprous oxide/biomass-based materials was prepared,it not only prevented cuprous oxide nanoparticles agglomeration but also can be overcome photocorrosion due to biomass-based materials as sacrificial agent.The preparation strategy of cuprous oxide/biomass-based materials was discussed,and overviewed the preparation method and application of typical cuprous oxide/biomass-based materials such as cuprous oxide/cellulose fiber composites,cuprous oxide/biochar composites and cuprous oxide/chitosan composites.In addition,the research orientations were synthesis mechanism of the materials,increasing the bonding strength between cuprous oxide and biomass-based materials and finding novel biomass-based materials with excellent performance as carriers of cuprous oxide.

关键词

氧化亚铜 / 光催化 / 生物质 / 复合材料

Key words

cuprous oxide / photocatalysis / biomass / composite material

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氧化亚铜/生物质基复合材料的研究进展[J]. 化工新型材料, 2022, 50(8): 278-281 DOI:10.19817/j.cnki.issn1006-3536.2022.08.053

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基金资助

制浆造纸科学与技术教育部/山东省重点实验室开放基金(KF201826)

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