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Recommended sites:You will never buy WoW Gold from Blizzard. There is a lot reason for why Blizzard dont offer WoW Gold, both legal and economical. WoW Gold Kaufen is not worthless for many players. They can get equipments easily in the game if WoW Gold Kaufen. WoW Gold allows them to fly epically and fill their bank with magic holes. Oro WoW as resource is infinite, and selling WoW Gold is foolish for Blizzard. However, you can find other ways to buy WoW Gold.
 
   拉 曼
   光谱仪
   光谱仪系统
   探头/附件
   光源/激光器
 
 
       
 
Recommended sites:You will never buy WoW Gold from Blizzard. There is a lot reason for why Blizzard dont offer WoW Gold, both legal and economical. WoW Gold Kaufen is not worthless for many players. They can get equipments easily in the game if WoW Gold Kaufen. WoW Gold allows them to fly epically and fill their bank with magic holes. Oro WoW as resource is infinite, and selling WoW Gold is foolish for Blizzard. However, you can find other ways to buy WoW Gold.
 

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  参考文献
 

拉曼光谱仪:

1. Non-resonance SERS effects of silver colloids with different shapes

作者:Vidhu S. Tiwari, Tovmachenko Oleg , Gopala Krishna Darbha 等

 期刊:Chemical Physics Letters 446 (2007) 77–82

 摘要:通过化学反应,作者制备了球形、棒形和棱柱体形的纳米银颗粒,分别以这三种形状的纳米粒为增强底物,以罗丹明为样品,使用必达泰克工色MiniRam便携式拉曼光谱仪,激发波长785nm,来研究纳米粒的非共振表面增强效果。研究结果表明,不同形状的银纳米粒增强效果不同,并且化学增强与物理增强一样有很重要的增强作用。



2. Evaluation of three different mobile Raman microscopes employed to study deteriorated
    civil building stones

作者:I. Mart´ınez-Arkarazo, D. C. Smith, O. Zuloaga等

  期刊:J. Raman Spectrosc. (2008)

  摘要:作者分别使用DeltaNu Inspector Raman、BWTEK BWS415 i-Raman、 Renishaw RA100三种便携式拉曼光谱仪分析了建筑岩石中的自然组成和及其受到日光照射、工业污染、海洋气候等影响风化后的成份。i-Raman(785nm激发,激光功率可调)能够鉴定出岩石主要由石英和碳酸钙组成,并且i-Raman具有较高的分辨率能够鉴别方解石和文石的不同。在风化后的岩石中,检测到CaSO4· 2H2O、无定形碳和CaC2O4·H2O等成分。



3.拉曼光谱(785 nm)在翡翠检测中的应用

  作者:范建良,郭守国,刘学良

  期刊:光谱学与光谱分析,2007, vol 27(10): pp2057—2060

  摘要:。作者通过大量翡翠样品的测定,实拉曼光谱仪(785 nm)是一种有效检测翡翠是否是天然产的仪器,通过测试结果分析得出:天然绿色翡翠荧光极强,其取决于翡翠晶格中Cd 的含量,其他颜色翡翠显示硬玉的特征拉曼移位1 045,698,373 cm~ 。染色翡翠绿色部位拉曼信号弱,所需积分时间长,拉曼位移高频区产生多个拉曼峰,有时可见有机拉曼峰;荧光现象明显及拉曼峰的湮没,说明翡翠经有机物充填和酸处理致表层晶体结构破坏。



4.石榴石族宝石的拉曼光谱研究及鉴别

  作者:范建良,  刘学良,  郭守国,  杨明月

  期刊:应用激光,2007,Vol. 27(4): 310-313.

  摘要:作者用MiniRam拉曼光谱仪(785nm激发)对各类石榴石单晶体和钙铝榴石多晶质集合体的拉曼光谱测定和分析,得出石榴石中归属于[ SiO4 ]四面体Si2OStr 、Si2OBend引起的拉曼位移(A1g模) ,会随着金属阳离子种类的变化发生规律性偏移,据此可实现石榴石族宝石的品种鉴别;钙铝榴石多晶质集合体的特征拉曼位移在874cm- 1 、543cm- 1 、368cm- 1附近,与翡翠的拉曼光谱存在明显的差异,容易鉴别。


 

5.蓝宝石与相似宝石的拉曼光谱研究

  作者:李雪亮,王以群,毛荐,范建良

  期刊: 激光与红外,2008, Vol 38(2): 152-153.

  摘要:作者用MiniRam拉曼光谱仪(785nm激发)对蓝宝石、堇青石、蓝色托帕石、海蓝宝石和蓝晶石的拉曼光谱进行测试与研究,得到蓝宝石具有由Al - O振动引起的特征拉曼位移413cm- 1 , 640cm- 1和668cm- 1 ;堇青石具有由Si - O振动引起的特征拉曼位移550cm- 1 , 662cm- 1 , 964cm- 1和1176cm- 1 ;海蓝宝石具有由Si - O 振动引起的特征拉曼位移678cm- 1 , 1064cm- 1 , 1232cm- 1 ;蓝色托帕石具有由Si - O振动引起的特征拉曼位移844cm- 1和924cm- 1 ;蓝晶石具有由Si - O引起的特征拉曼位移933cm- 1和1133cm- 1。根据拉曼位移的位置和强度,可无损、快速、有效地区分蓝宝石、堇青石、海蓝宝石、蓝色托帕石和蓝晶石。

 

荧光检测:

1. A comparison of fluorescence in two sympatric scorpion species

  作者:Carl T. Kloock

  期刊:Journal of Photochemistry and Photobiology B: Biology 91 (2008) 132–136

  摘要:作者用BWTek BRC111A光谱仪搭建了一套荧光检测系统,尝试通过荧光来判别同一地区两种不同蝎子或者蝎子的性别。结果发现,不同性别的蝎子的荧光没有区别,而不同种类的蝎子的荧光通过统计分析可以找到大的区别。



2. Scanning thermal imaging of an electrically excited aluminum microstripe

  作者:Benjamin Samson, Lionel Aigouy,Rossella Latempa等

  期刊:JOURNAL OF APPLIED PHYSICS 102, 024305 2007[1]

  摘要:作者用BWTEK 光栅光谱仪来检测被电子流激发的微小铝带的荧光,并结合其他仪器分析铝带中热传递现象。



3. Two-Photon Transitions in Quadrupolar and Branched Chromophores: Experiment and
    Theory

  作者:Claudine Katan, Sergei Tretiak, Martinus H. V. Werts等

  期刊:J. Phys. Chem. B 2007, 111, 9468-9483

  摘要:作者使用BWTEK公司的BTC112E来检测在四级和支生色团发生双光子跃迁时产生的荧光,从而分析支生色团和对称电荷在双光子跃迁时所起的结合作用。

 

吸收/透射/反射

1.A novel method to determine electron density by optical emission spectroscopy in
    low-pressure nitrogen plasmas

  作者:Xi-Ming Zhu, Yu-Dong Pu, Zhi-Gang Guo等

  期刊:PHYSICS OF PLASMAS 13, 123501 2006[1]

  摘要:结合BTC111E等仪器,作者应用散射光谱技术和一种新的方法,检测了低压氮等离子中的平均电子浓度。结果显示电子浓度与RF能量强度成反比。



2.Iridescent Photonic Nano-Silica for Chemical and Biological Sensing

  作者:J. Y. Chyanl, and J. Andrew Yeh1

  期刊:1-4244-0641-2/07/$20.00 ©2007 IEEE

  摘要:作者尝试用Iridescent Photonic Nano-Silica作为生化传感材料,使用BRC111A光谱仪检测透射光,实验显示这种材料具有很好的稳定性灵敏度。



3.Molecular orientation of crystalline and glassy polyfluorene layers induced by
   photo-aligned polyimide films

  作者:Kenji Sakamoto, Kiyoaki Usami, Yoichi Uehara,等

  期刊:Colloids and Surfaces A: Physicochem. Eng. Aspects 284–285 (2006) 635–639

  摘要:作者研究了PFO的分子取向,使用BTC112E来检测样品的紫外/可见吸收光谱。



4.Morphology-Dependent Electrochemistry and Electrocatalytical Activity of Cytochrome c

  作者:Haiqing Liu, Yang Tian,* and Zifeng Deng

  期刊:Langmuir 2007, 23, 9487-9494

  摘要:作者研究了细胞色素c的电化学和电催化活性与其形态的相关性,使用BWS003 UV-vis来检测样品的紫外/可见反射光谱。



5.Nanoparticle-embedded actuator based on localized surface plasmon resonance

  作者:Chi-Nan Chen, J Y Chyan等

  期刊:J. Opt. A: Pure Appl. Opt. 10 (2008) 044007 (5pp)

  摘要:作者演示了基于银纳米粒等离子体共振的双晶片悬臂梁高光效特征,使用BRC111A来观测瞬间的光谱。



6.Polarization-controlled wavelength modulation by a resonant transmission or
    reflection filter

    作者:Mario Ivanov and Paul Rochon

    期刊:0091-3286/2007/$25.00 © 2007 SPIE

 摘要:作者演一种通过透射或反射滤光片来调制光的偏振性的方法,使用BWTEK光谱仪来检测信号。



7.A surface plasmon resonance probe without optical fibers as a portable sensing device

   作者:Takuo Akimoto∗, Syunsuke Wada, Isao Karube

   期刊:analytica chimica acta 6 1 0 ( 2 0 0 8 ) 119–124

 摘要:作者介绍了一种新型的表面等离子体共振便携式传感设备:传感器,二极管激光器,BRC112光谱仪,偏振片。最低检测限可达50 ngmL−1。



8.Development and characterization of a broad-bandwidth polarization-insensitive
   subwavelength optical device

    作者:J Y Chyan, C A Chang and J A Yeh

    期刊:Nanotechnology 17 (2006) 40–44

 摘要:作者开发并鉴定了一套宽带宽退偏比不灵敏的亚波光学设备,使用BRC111A检测透射光信号。



9.Photophysical properties of commercial red dyes in polymer films

   作者:Ian B. Burgess, Paul Rochon, Nicolas Cunningham

   期刊:Optical Materials 30 (2008) 1478–1483

摘要:作者检测了多聚物膜中红色颜料的光学物理性质,使用BRC111A检发射光信号。



10.Portable instrument that integrates irradiation with fluorescence and reflectance
   spectroscopies during clinical photodynamic therapy of cutaneous disease

作者:W. J. Cottrell,A. R. Oseroff等

期刊:REVIEW OF SCIENTIFIC INSTRUMENTS 77, 064302 _2006

摘要:作者报道了一种光动力治疗仪器,同时可以实现无损原位光谱检测。作者使用BWTEK光谱仪检测反射光谱。



11.Sensitive label-free biosensors by using gap plasmons in gold nanoslits

作者:Kuang-Li Leea,b,Way-SeenWanga, Pei-KuenWei

期刊:Biosensors and Bioelectronics xxx (2008) xxx–xxx

摘要:作者研究结果表明沟形表面等离子体gap plasmon 比表面等离子体的灵敏度高很多,是一种理想的无须标记的生物传感器。作者使用BWTEK光谱仪检测透射光谱。



12.Si-nanostructures formation in amorphous silicon nitride SiNx:H deposited by
   remote PECVD

   作者:A. Zerga[1], M. Carrada, M. Amann, A. Slaoui

   期刊:Physica E 38 (2007) 21–26

摘要:作者分析了用PECVD制备的无定形氮化硅中硅的纳米结构组成。作者使用BWTEK BRC112E光谱仪检测光致发光信号。



13.Structural and optical properties of high density Si-ncs synthesized in SiNx:H by
   remote PECVD and annealing

作者:M. Carrada a,∗, A. Zergaa, M. Amanna, J.J. Groba, J.P. Stoquert

期刊:Materials Science and Engineering B 147 (2008) 218–221

摘要:作者分析了高浓度Si-ncsD的结构和光学特性,它合成在用PECVD制备的无定形氮化硅中硅的纳米结构组成。作者使用BWTEK BRC112E光谱仪检测光致发光信号。

 

 

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Recommended sites:You will never buy WoW Gold from Blizzard. There is a lot reason for why Blizzard dont offer WoW Gold, both legal and economical. WoW Gold Kaufen is not worthless for many players. They can get equipments easily in the game if WoW Gold Kaufen. WoW Gold allows them to fly epically and fill their bank with magic holes. Oro WoW as resource is infinite, and selling WoW Gold is foolish for Blizzard. However, you can find other ways to buy WoW Gold.
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