技术特点
【技术特点】-- gora-Lite
gora-Lite,模块化的共焦显微光谱
gora-Lite 共焦显微光谱系统方案
标注复享共焦显微光谱产品的文献(部分)? “Synergistic effect between silver nanoparticles andantifungal agents on Candida albicans revealed bydynamic surface-enhanced Raman spectroscopy.“ Nanotoxicology (2018).影响因子:5.811,单位:第二军医大学,通讯作者:陆锋? “Visible-blind quasi-solid-state UV detector based on SnO2-TiO2 nanoheterostructure arrays.“ Journal of Alloys and Compounds (2018).影响因子:3.133,单位:山东大学,通讯作者:陈延学? “Fluorescence resonance energy transfer (FRET) based nanoparticles composed of AIE luminogens and NIR dyes with enhanced three-photon near-infrared emission for in vivo brain angiography.“ Nanoscale (2018)影响因子:6.97,单位:瑞典斯德哥尔摩皇家理工学院电气工程学院,通讯作者:Sailing He? “Ultrathin Molybdenum Dioxide Nanosheets as Uniform and Reusable Surface-Enhanced Raman Spectroscopy Substrates with High Sensitivity.“ Small (2018)影响因子:10.856,单位:南京航空航天大学 ,通讯作者:郭万林? “Tunable Aggregation-Induced Emission Nanoparticles by Varying Isolation Groups in Perylene Diimide Derivatives and Application in Three-Photon Fluorescence Bio-Imaging.“ ACS Nano (2018)影响因子:13.903,单位:武汉大学 ,通讯作者:李振? “Record-Low-Threshold Lasers Based on Atomically Smooth Triangular Nanoplatelet Perovskite.“ Advanced Functional materials (2018)影响因子:15.621,单位:陕西师范大学 ,通讯作者:刘生忠? “Slippery Surface Based on Photoelectric Responsive Nanoporous Composites with Optimal Wettability Region for Droplets' Multifunctional Manipulation.“ Advanced Science (2018)影响因子:15.804,单位:北京航空航天大学,通讯作者:衡利苹? “One-drop Self-assembly and Size Control of Organic Nonlinear Optical Crystal DSNS Nanowires.“ Crystal Growth & Design (2019)影响因子:4.153,单位:上海理工大学,通讯作者:蔡斌 |
【技术特点对用户带来的好处】-- gora-Lite
【典型应用举例】-- gora-Lite
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