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Hierarchically nanostructured materials for sustainable environmental applications

机译:用于可持续环境应用的分层纳米结构材料

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摘要

This review presents a comprehensive overview of the hierarchical nanostructured materials with either geometry or composition complexity in environmental applications. The hierarchical nanostructures offer advantages of high surface area, synergistic interactions, and multiple functionalities toward water remediation, biosensing, environmental gas sensing and monitoring as well as catalytic gas treatment. Recent advances in synthetic strategies for various hierarchical morphologies such as hollow spheres and urchin-shaped architectures have been reviewed. In addition to the chemical synthesis, the physical mechanisms associated with the materials design and device fabrication have been discussed for each specific application. The development and application of hierarchical complex perovskite oxide nanostructures have also been introduced in photocatalytic water remediation, gas sensing, and catalytic converter. Hierarchical nanostructures will open up many possibilities for materials design and device fabrication in environmental chemistry and technology.
机译:这篇综述提供了在环境应用中具有几何形状或成分复杂性的分级纳米结构材料的全面概述。分层的纳米结构具有高表面积,协同相互作用以及针对水修复,生物传感,环境气体传感和监测以及催化气体处理的多种功能的优势。综述了用于各种分层形态(例如空心球和海胆形建筑)的合成策略的最新进展。除了化学合成以外,还针对每种特定应用讨论了与材料设计和设备制造相关的物理机制。分层复合钙钛矿氧化物纳米结构的开发和应用也已引入光催化水修复,气体传感和催化转化器中。分层的纳米结构将为环境化学和技术中的材料设计和器件制造打开许多可能性。

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