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高通量高效制备技术在无机玻璃材料中的应用进展

赵明 郎玉冬 赵子煜 刘鑫 赵谦 陈阳

硅酸盐通报2024,Vol.43Issue(4):1219-1229,1245,12.
硅酸盐通报2024,Vol.43Issue(4):1219-1229,1245,12.

高通量高效制备技术在无机玻璃材料中的应用进展

Application Progress of High-Throughput and Efficient Preparation Technology in Inorganic Glass Materials

赵明 1郎玉冬 1赵子煜 1刘鑫 1赵谦 2陈阳1

作者信息

  • 1. 南京玻璃纤维研究设计院有限公司,南京 210012
  • 2. 中材科技股份有限公司特种纤维复合材料国家重点实验室,北京 102101
  • 折叠

摘要

Abstract

As one of the three major elements of the materials genome,high-throughput technologies for materials aim to change the traditional sequential iterative methods in material research into parallel or efficient serial experiments through high-throughput preparation and characterization,thereby accelerating the efficient screening and optimization of materials.Functional inorganic glass materials are a typical class of amorphous materials that have attracted attention in high-tech fields due to their special and excellent properties.The composition of inorganic glass materials often consists of multiple components.The optimization of traditional inorganic glass material is usually based on"one furnace,one crucible"preparation mode,which has the drawbacks of lengthy trial cycles and low efficiency.Therefore,it has great theoretical and practical significance to introduce high-throughput preparation methods and concepts into the development and optimization of new glass materials.This article summarizes the high-throughput and efficient preparation technologies that may be suitable for inorganic glass materials in existing technologies and analyzes the feasibility and directions for improvement of each technology in the application of inorganic glass materials,so as to provide certain references for the future high-throughput preparation of inorganic glass materials.

关键词

高通量制备/无机玻璃/块体玻璃/3D打印/阵列坩埚/薄膜态玻璃

Key words

high-throughput preparation/inorganic glass/bulk glass/3D printing/array crucible/film glass

分类

化学化工

引用本文复制引用

赵明,郎玉冬,赵子煜,刘鑫,赵谦,陈阳..高通量高效制备技术在无机玻璃材料中的应用进展[J].硅酸盐通报,2024,43(4):1219-1229,1245,12.

基金项目

中国建材集团攻关专项资助、特种纤维复合材料国家重点实验室应用基础研究专项资助(2021YCJS02-01-01) (2021YCJS02-01-01)

江苏省自然科学基金(青年基金)资助项目(BK20220166) (青年基金)

硅酸盐通报

OA北大核心CSTPCD

1001-1625

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