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全波段高光谱拉曼显微镜

高光谱与拉曼技术的结合。

产品详情

 

RIMA是一款高光谱显微镜,可同时提供样品的光谱信息和空间信息。该系统能快速提供百万像素的拉曼光谱图。 RIMA采用高通量成像滤波器,比逐点或线扫描的系统更加高效。

应用方向

 

低维材料分析,如石墨烯和碳纳米管

无创监测、分析生物组织

术过程中的癌症实时成像(运用SERS纳米颗粒

识别材料(塑料,金属)并描述其结构(结晶度,相,化学键,应变,应力)

 

技术规格

RIMA 532 / RIMA 660

RIMA 785

激发波长

532 nm, 660 nm

785 nm

光谱范围

190 - 4000 cm⁻¹

190 - 2700 cm⁻¹

光谱分辨率

< 7 cm⁻¹

< 7 cm⁻¹

光谱通道

连续可调

连续可调

空间分辨率

亚微米-与显微镜数值孔径相关

亚微米-与显微镜数值孔径相关

相机

背感光CCD

背感光深度掺杂CCD

显微镜

直立或倒置

直立或倒置

 

应用案例

Characterization of Carbon Nanotube-Based Probes by Raman Hyperspectral Imaging: Multiplexing and Biodetection

Incorporation-limiting mechanisms during nitrogenation of monolayer graphene films in nitrogen flowing afterglows

Selective Nitrogen Doping of Graphene Due to Preferential Healing of Plasma-Generated Defects Near Grain Boundaries

Preferential Self-Healing at Grain Boundaries in Plasma-Treated Graphene

Probing Plasma-Treated Graphene Using Hyperspectral Raman

Confinement of Dyes inside Boron Nitride Nanotubes: Photostable and Shifted Fluorescence down to the Near Infrared

Electrostatic Deposition of Large-Surface Graphene

Hyperspectral Raman imaging using Bragg tunable filters of graphene and other low-dimensional materials

Aggregation Control of α‑Sexithiophene via Isothermal Encapsulation Inside Single-Walled Carbon Nanotubes

Suspended Graphene Variable Capacitor

Graphene CVD: Interplay Between Growth and Etching on Morphology and Stacking by Hydrogen and Oxidizing Impurities

Giant Raman Scattering From J-Aggregated Dyes Inside Carbon Nanotubes for Multispectral Imaging

Raman Spectroscopy Hyperspectral Imager Based on Bragg Tunable Filters