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三维打印技术在色谱分离中的应用OA北大核心CSTPCD

Applications of Three Dimensional Printing in Chromatography Separation

中文摘要英文摘要

色谱法是生产活动和学术研究中最重要的分离分析技术之一.随着应用需求的日益增长,开发具有针对性的分离装置成本高昂,同时由于模型制作困难,色谱理论研究通常难以得到验证.三维(3D)打印技术通过堆砌材料的方式自下而上地制造器件,可以针对特定需求自定义打印复杂结构,具有低成本、低废料、高精度、高自由度和平行制造等优势,在色谱分离领域展现出巨大的应用潜力.近年来,随着3D打印技术的飞速发展,打印分辨率和打印速度不断提高,可打印的材料种类也大幅增加,3D打印技术在色谱分离领域得到了初步的研究和应用.本文介绍了3D打印技术在色谱分离研究领域中的最新应用进展,包括3D打印色谱柱管、3D打印色谱固定相和3D打印固相萃取器件,讨论了3D打印技术在色谱领域应用的现有挑战和应用前景.

Chromatography is one of the most important separation and analytical techniques in production activity and academic research.With the growing demand for applications,the development of targeted separation devices is costly.However,the difficulty of constructing modeling makes it difficult to validate the theoretical studies of chromatography.Three dimensional(3D)printing,as a technology that can fabricate objects by depositing materials from the bottom to up,can custom print complex structures for specific needs,and shows many advantages such as low cost,low waste,high precision,high flexibility and parallel manufacturing,demonstrating great potential in the field of chromatography separations.In recent years,with the rapid development of 3D printing technology,the printing resolution and speed have progressively improved,and the range of printable materials has largely expanded.This has led to preliminary research and application of 3D printing technology in the field of chromatography separation,resulting in brand new discoveries and technological innovations.This article made a comprehensive overview of the latest advancements in research and application of 3D printing technology in separation science,including 3D printed columns,3D printed stationary phase,and 3D printed solid-phase extraction devices.Finally,The prospects and challenges of 3D printing technology in separation science were discussed.

李强;陆浩男;温翰荣;王宗鹏;张博

江西赣锋锂业集团股份有限公司,新余 338000厦门大学化学化工学院,厦门 361005晋江精纯科技有限公司,泉州 362200

色谱分离三维打印分离技术评述

Chromatography separationThree dimensional printingSeparation technologyReview

《分析化学》 2024 (005)

厦门大学化学基地科研训练及能力提高项目

624-633 / 10

国家自然科学基金项目(Nos.21475110,J1310024)和厦门市海洋与渔业发展专项基金项目(No.19CZB001HJ03)资助. Supported by the National Natural Science Foundation of China(Nos.21475110,J1310024)and the Xiamen Marine and Fishery Development Foundation Project(No.19CZB001HJ03).

10.19756/j.issn.0253-3820.231427

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