面向现代光学和光电子学的发展需求,多年来聚焦于新型光功能材料的设计、创制和应用拓展研究,在先进红外光学材料、分子掺杂金属、 3D 打印光子学等领域积累了丰富的经验,取得了一批具有国际影响力的科研成果,并实现了在红外光电对抗领域的应用。若干代表性成果如下:

1. 新型光功能材料: 在溶胶 - 凝胶玻璃合成领域,发展了水相溶胶 - 凝胶化学,突破了一系列新体系玻璃的溶胶 - 凝胶合成。在分子掺杂金属材料领域,发展了一系列光电功能分子掺杂金属材料的制备方法和应用,引领了这类新型功能杂化材料的发展。

2. 3D 打印光子学: 通过墨水直写和光固化的 3D 打印技术,实现了红外透明陶瓷,光功能透明陶瓷和透明纳米多孔玻璃等一系列先进光学材料的复杂形状制备,为实现高性能光子器件复杂形状的制备奠定了基础。

3. 红外光电对抗应用: 在上述新材料的创制基础上,申请人发展了系列透红外凝胶玻璃的可控制备技术并实现了多场景应用。实现了红外玻璃大尺寸光窗构件的“高强度 - 低应力 - 高保形”键合拼接;发明的高浓度金属离子掺杂的溶胶 - 凝胶薄膜应用于“深表面 - 嵌入式”多层隐身网栅的强激光制备技术。上述成果服务于多个尖端型号和国家重大工程任务。

截至目前,共发表 SCI 学术论文 40 余篇,其中以(共同)第一作者或者(共同)通讯作者在 Angew. Chem. Int. Ed. ACS Nano Adv. Sci. Adv. Opt. Mater. Acta. Mater. Addit. Manuf. 等国际权威刊物上发表学术论文 25 篇。相关研究被写入了《 Springer Handbook of Glass 》、《 Introduction to Sol-Gel Processing 》、《 Handbook of Sol-Gel Science and Technology 》、《 Advances in Glass Research 》等玻璃和溶胶 - 凝胶领域的经典教科书和工具书,并被 Nat. Mater. Chem. Rev. J. Am. Chem. Soc. 等国际著名学术期刊论文亮点报道。在成果转化方面,申请发明专利 15 项(已授权专利 8 项)。透红外凝胶玻璃的可控制备技术已实现了在中红外光电对抗领域的多场景应用,服务于多个尖端型号和国家重大工程任务。做学术会议口头报告 18 次(国际会议报告 8 次,分会邀请报告 4 次)。



[1] 姜本学, 李贝宁, 何进. 一种多材料激光陶瓷及其一体化3D打印成型的制备方法.&nbspCN:&nbspCN116396070A,&nbsp2023-07-07.[2] 姜本学, 李贝宁, 何进. 一种红外透明陶瓷墨水及其制备与应用.&nbspCN:&nbspCN116425531A,&nbsp2023-07-14.[3] 何进, 黄鑫, 姜益光, 张龙, 施达. 透明块体MOF材料、制备方法及其光功能化.&nbspCN:&nbspCN114015067B,&nbsp2023-04-11.[4] 何进, 黄鑫, 姜益光, 张龙, 施达. 透明块体MOF材料、制备方法及其光功能化.&nbspCN:&nbspCN114015067A,&nbsp2022-02-08.[5] 姜本学, 黄鑫, 张龙, 何进, 姜益光, 马婉秋, 沈宗云, 王魏. 镁钙离子共掺钇铝石榴石超快闪烁陶瓷及其制备方法.&nbspCN:&nbspCN112939592A,&nbsp2021-06-11.[6] 姜益光, 陈春霖, 张龙, 袁新强, 李家成, 何进, 张龙飞. 发光玻璃及发光玻璃的制备方法.&nbspCN:&nbspCN112876073A,&nbsp2021-06-01.[7] 何进, 王焱, 李日红, 张龙. 硫系量子点和磷酸盐介孔玻璃复合物及其制备方法.&nbspCN:&nbspCN105693096A,&nbsp2016-06-22.[8] 李日红, 王焱, 张龙, 何进. 量子点掺杂的磷酸铝介孔玻璃纳米复合物及其制备方法.&nbspCN:&nbspCN103936300A,&nbsp2014-07-23.[9] 张龙, 何进, 李日红, 王焱. 铕掺杂磷酸铝介孔玻璃的制备方法.&nbspCN:&nbspCN103193386A,&nbsp2013-07-10.[10] 张龙, 何进, 李日红, 王焱. 高比表面积介孔铝镓磷酸盐玻璃及其制备方法.&nbspCN:&nbspCN103043901A,&nbsp2013-04-17. 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