期刊文献+
共找到4篇文章
< 1 >
每页显示 20 50 100
沉淀法制备掺锆氧化锌纳米粉末的形貌与光学性能 被引量:4
1
作者 杨薇薇 段学臣 +2 位作者 李历历 夏慧 刘扬林 《粉末冶金材料科学与工程》 EI 北大核心 2016年第3期415-420,共6页
采用直接沉淀法制备未掺杂和掺杂Zr元素的ZnO纳米粉末,通过X射线衍射(XRD)分析、扫描电镜(SEM)、能谱分析(EDS)以及紫外可见光谱(UV-Vis)分析、光学性能测试等,研究Zr掺杂量(0~5%,摩尔分数)与溶液pH值(6.5~13.0)对粉末粒... 采用直接沉淀法制备未掺杂和掺杂Zr元素的ZnO纳米粉末,通过X射线衍射(XRD)分析、扫描电镜(SEM)、能谱分析(EDS)以及紫外可见光谱(UV-Vis)分析、光学性能测试等,研究Zr掺杂量(0~5%,摩尔分数)与溶液pH值(6.5~13.0)对粉末粒度、形貌与结构及光学性能的影响。结果表明:Zr掺杂使ZnO粉末粒径减小。Zr掺杂量为1%的粉末粒径最小,晶粒尺寸为28 nm,Zr完全进入ZnO晶格中;当Zr掺杂量增加到3%和5%时,粉末粒径增大,并出现ZrO2相。反应溶液的pH值为6.5时,Zr-ZnO纳米粉末形貌为类球形。随pH值增大,Zr-ZnO粉末形貌逐渐向短棒状转变,粉末粒径先减小然后增大。随Zr掺杂量从0增加到5%,ZnO的光吸收峰先出现“蓝移”后出现“红移”,表明Zr掺杂可提高ZnO粉末的禁带宽度,随Zr含量增加,粉末的禁带宽度先增大后减小,1%Zr-ZnO的禁带宽度最大。 展开更多
关键词 直接沉淀法 Zr-Zn O粉末 Zr掺杂量 p H值 形貌 光吸收峰 禁带宽度
下载PDF
菠萝树叶光声层析光谱及其光合作用效率的研究
2
作者 列光华 列淦文 何小宁 《安徽农业科学》 CAS 北大核心 2011年第12期6934-6935,6946,共3页
[目的]探讨用非损伤的光声层析光谱技术实时控制培育林苗成长的有效途径。[方法]采摘菠萝树叶绿色叶片和黄色叶片为试材,按光声池样品室大小切下靠中间的菠萝树绿叶片和黄叶片的叶小片,分别放进相应的光声池,应用归一化光声层析光谱试... [目的]探讨用非损伤的光声层析光谱技术实时控制培育林苗成长的有效途径。[方法]采摘菠萝树叶绿色叶片和黄色叶片为试材,按光声池样品室大小切下靠中间的菠萝树绿叶片和黄叶片的叶小片,分别放进相应的光声池,应用归一化光声层析光谱试验装置,选用斩波频率24 Hz和34 Hz,时间常数3 s,分层进行光声层析光谱扫描,测量菠萝树绿叶正面和绿叶反面以及黄叶正面的光声层析光谱及其光学特性。[结果]菠萝树叶在特定调制频率时能提高光合作用效率。黄叶的叶绿体数量比绿叶少,黄叶比绿叶的光合作用明显减弱。菠萝树叶叶绿体数量越多,其光合作用越强,光合作用效率越高。[结论]应用归一化光声层析光谱试验装置测量菠萝树叶光声层析光谱是可行的。 展开更多
关键词 光声层析光谱 菠萝树叶 绿叶 黄叶 叶绿素 归一化 光合作用 光吸收特征
下载PDF
Linear and Nonlinear Optical Absorptions of a Donor Impurity in Spherical Quantum Dots 被引量:1
3
作者 XIE Wen-Fang 《Communications in Theoretical Physics》 SCIE CAS CSCD 2009年第7期155-158,共4页
An investigation of the optical properties of a hydrogenic donor in spherical parabolic quantum dots hasbeen performed by using the matrix diagonalization method.The optical absorption coefficient between the ground(L... An investigation of the optical properties of a hydrogenic donor in spherical parabolic quantum dots hasbeen performed by using the matrix diagonalization method.The optical absorption coefficient between the ground(L=0) and the first excited state (L=1) have been examined based on the computed energies and wave functions.The results are presented as a function of the incident photon energy for the different values of the confinement strength.These results show the effects of the quantum size and the impurity on the optical absorption coefficient of a donorimpurity quantum dot. 展开更多
关键词 quantum dot optical absorption
下载PDF
A low-dimension structure strategy for flexible photodetectors based on perovskite nanosheets/ZnO nanowires with broadband photoresponse 被引量:2
4
作者 Shalong Wang Zhengfeng Zhu +6 位作者 Yousheng Zou Yuhang Dong Shuting Liu Jie Xue Leimeng Xu Yuhui Dong Jizhong Song 《Science China Materials》 SCIE EI CSCD 2020年第1期100-109,共10页
Flexible photodetectors(PDs) have huge potential for application in next-generation optoelectronic devices due to their lightweight design, portability, and excellent large area compatibility. The main challenge in th... Flexible photodetectors(PDs) have huge potential for application in next-generation optoelectronic devices due to their lightweight design, portability, and excellent large area compatibility. The main challenge in the construction of flexible PDs is to maintain the optoelectronic performance during repetitive bending, folding and stretching.Herein, flexible PDs based on ZnO nanowires(NWs) and CsPbBr3 nanosheets(NSs) were constructed by an integrated low-dimensional structure strategy. Benefiting from the flexibility of unique sheet and wire structures, the PDs were able to maintain excellent operational stability under various mechanical stresses. For example, the PDs exhibited no obvious changes in optoelectronic performance after bending for 1000 times. Additionally, the PDs exhibited an integrated broadband response ranging from ultraviolet to visible region due to the combination of the intrinsic light absorption capability of ZnO and CsPbBr3. The PDs demonstrated high responsivities of 3.10 and 0.97 A W^-1 and detectivities of 5.57×10^12 and1.71×10^12 Jones under ultraviolet and visible light irradiation,respectively. The proposed construction strategy for highly flexible and performance-integrated PDs shows great potential in future smart, wearable optoelectronic devices. 展开更多
关键词 PEROVSKITE ZnO nanowires flexible photodetectors broad spectrum
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部