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Large-area periodic lead halide perovskite nanostructures for lenticular printing laser displays
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作者 Min Wang haohao li +7 位作者 Chenghu Dai Ji Tang Baipeng Yin Hong Wang Jingwen li Yuchen Wu Chuang Zhang Yong Sheng Zhao 《Science China Chemistry》 SCIE EI CAS CSCD 2021年第4期629-635,共7页
Lenticular printing technique provides a promising way to realize stereoscopic displays,especially,when microscopic optical structures are integrated into light-emitting materials/devices.Here,we fabricated large-area... Lenticular printing technique provides a promising way to realize stereoscopic displays,especially,when microscopic optical structures are integrated into light-emitting materials/devices.Here,we fabricated large-area periodic structures with a spatial resolution at a wavelength scale from hybrid perovskite materials via a space-confined solution growth method.It takes advantages of both high refractive index contrast and high luminescence brightness,which allows the optical modulation on not only the reflection of illumination,but also the light emission from hybrid perovskites.The distributed feedback within these periodic structures significantly improves the degree of polarization and directionality of laser actions while their threshold is also reduced.These findings enable us to present a prototype of lenticular printing laser displays that vary emission colors at different view angles,which may find applications in creating high-resolution and high-contrast holographical images. 展开更多
关键词 lead halide perovskite optical grating structure optically pumped laser lenticular printing laser display
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产紫杉醇内生真菌TMS-26的分离和鉴定 被引量:5
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作者 方荣锋 李浩浩 +2 位作者 张培及 曹让 杨淑慎 《生物工程学报》 CAS CSCD 北大核心 2017年第12期1945-1954,共10页
为丰富产紫杉醇植物内生真菌资源库,从曼地亚红豆杉Taxus media茎中分离得到一株产紫杉醇的内生真菌TMS-26。通过对TMS-26的发酵提取物进行高效液相色谱分析,发现其具有与紫杉醇标准品(4.545 min)相近的色谱特征峰。进一步通过液质联用... 为丰富产紫杉醇植物内生真菌资源库,从曼地亚红豆杉Taxus media茎中分离得到一株产紫杉醇的内生真菌TMS-26。通过对TMS-26的发酵提取物进行高效液相色谱分析,发现其具有与紫杉醇标准品(4.545 min)相近的色谱特征峰。进一步通过液质联用仪检测发现,内生真菌TMS-26的发酵提取物中具有与紫杉醇标准品((M+Na)+=876)相近的质谱特征峰,表明内生真菌TMS-26能够产生紫杉醇。同时通过传统形态学分类鉴定方法和18S r DNA序列分析、Internal-transcribed spacer(ITS)序列分析等现代分子生物学分类鉴定方法,最终将内生真菌TMS-26鉴定为曲霉属烟曲霉Aspergillus fumigatus,并命名为"烟曲霉TMS-26"。 展开更多
关键词 紫杉醇 曼地亚红豆杉 内生真菌 烟曲霉 18S RDNA ITS序列
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