方案摘要
方案下载应用领域 | 材料 |
检测样本 | 纳米材料 |
检测项目 | |
参考标准 | 0 |
Corrected emission spectra of carbon nanoparticles can provide excitation–emission matrices (EEMs) for a range of excitation wavelengths. Acquisitions take only minutes (λexc = 500–800 nm at 1-nm intervals, λem = 830–1350 nm at ~1 nm per pixel). EEMs are compiled by HORIBA Jobin Yvon’s Nanosizer® software. A double-convolution algorithm (U.S. pat. pending) in the software simultaneously computes excitation and emission wavelength coordinate lineshapes for each species within minutes; contributions from all spectral bands in a region of interest are found.
Corrected emission spectra of carbon nanoparticles can provide excitation–emission matrices (EEMs) for a range of excitation wavelengths. Acquisitions take only minutes (λexc = 500–800 nm at 1-nm intervals, λem = 830–1350 nm at ~1 nm per pixel). EEMs are compiled by HORIBA Jobin Yvon’s Nanosizer® software. A double-convolution algorithm (U.S. pat. pending) in the software simultaneously computes excitation and emission wavelength coordinate lineshapes for each species within minutes; contributions from all spectral bands in a region of interest are found.
拉曼+石墨烯+振动探测
拉曼+二维材料+应变工程
拉曼+CO2加氢反应+催化机理
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