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爱丁堡FLS980和HORIBA FL-3荧光光谱仪哪个好?
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实验室想购买荧光光谱仪,需要满足以下要求: 1. 稳态光谱测试 2. 绝对荧光量子效率测试 3. 瞬态光谱测试,即荧光寿命测试 4. 光谱范围:紫外可见近红外 目前调研的仪器有爱丁堡FLS980和HORIBA FL-3可满足要求,不知道有没有同学用过这两款仪器,那个更好一些?或者这两款仪器都有哪些问题? |
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12楼2014-02-24 14:21:15
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小木虫: 金币+0.5, 给个红包,谢谢回帖
zengjianfeng: 金币+1 2014-03-17 19:46:58
小木虫: 金币+0.5, 给个红包,谢谢回帖
zengjianfeng: 金币+1 2014-03-17 19:46:58
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这个我可以告诉你,各有各的优点。 两家都打过交道,我用的是JY的,当年买仪器的时候JY还没有被Horiba收购。为什么爱丁堡在国内卖的比Jy好是有原因的。当初JY为了专心做Raman谱仪(他们的Raman国内占有率很高),就把荧光这一块让天美公司全权代理,后来,天美把爱丁堡收购了,作为两个主流品牌竞争对手,不可能让一家公司做,因此JY把荧光的事务又收了回去自己做,大概也就是13年的事。因此,荧光这一块JY需要重新培养客户,而天美的渠道已经经营多年,短期内更占优势。不过JY目前正加大这一块的人员和力量投入,相信不久还是会形成两强鼎力的局面。仪器本身技术都很成熟,买谁差别不大。关键是售后,我觉得JY的售后比当初和他们打交道时已经好了很多,尤其是把一个技术很过硬的老外工程师常驻中国后,目前还没遇到他们解决不了的问题。OPO是个不错的新东西,但是据说技术还不是特别成熟,我周围的两家买了OPO就经常出问题,看来好东西还需逐步完善。 |
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我糊涂了,难道搞研究和测试仪器有什么区别吗,测试的目的不就是研究吗?难道JY的不是工具? 可否聊聊JY的具体优势在哪里,比如说JY能做的爱丁堡不能做,或者仪器设计方面更优,或者信噪比更高,或者数据可信度更高? 单纯从市场上来看,不能完全反应出来的,毕竟JY的仪器多少年了,发的文章多也很正常啊。 后来又调研了下,JY市场占有率确实高,但是他的产品种类比爱丁堡要多,单纯到大荧光上面,优势就没那么强了 总的调研下来,最重要的部件之一,检测器都是同一家公司生产的,其他的部件,具体参数两家有出入,但是爱丁堡的绝对没明显劣势 售后方面,有人反映JY很贵的,具体爱丁堡的怎么样,不知道有没有人能够说说 |
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27楼2014-04-10 11:37:02
lsh435000165 
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小木虫: 金币+0.5, 给个红包,谢谢回帖
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28楼2014-04-18 00:00:35
lsh435000165 
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小木虫: 金币+0.5, 给个红包,谢谢回帖
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33楼2014-08-08 14:11:34
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小木虫: 金币+0.5, 给个红包,谢谢回帖
小木虫: 金币+0.5, 给个红包,谢谢回帖
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Fluorolog @ Nature 23篇论文 可以作为证据说明FL-3的性价比更好--投入产出比 1. Hajin Kim, Sanjaya C. Abeysirigunawarden, Ke Chen, Megan Mayerle, Kaushik Ragunathan, Protein-guided RNA dynamics during early ribosome assembly, Nature 506, 334-338 doi:10.1038/nature13039 12 February 2014 2. Yoni Haitin, Anne E. Carlson & William N. Zagotta, The structural mechanism of KCNH-channel regulation by the eag domain, Nature 501, 444-448 doi:10.1038/nature12487 25 August 2013 3. Julian Burschka, Norman Pellet, Soo-Jin Moon, Robin Humphry-Baker, Peng Gao, Sequential deposition as a route to high-performance perovskite-sensitized solar cells, Nature 499, 316-319 doi:10.1038/nature12340 10 July 2013 4. Yong Ju Kim, Klaus Peter Hofmann, Oliver P. Ernst, Patrick Scheerer, Hui-Woog Choe, Crystal structure of pre-activated arrestin p44, Nature 497, 142-146 doi:10.1038/nature12133 21 April 2013 5. Hui-Woog Choe, Yong Ju Kim, Jung Hee Park, Takefumi Morizumi, Emil F. Pai, Crystal structure of metarhodopsin, Nature 471, 651-655 doi:10.1038/nature09789 9 March 2011 6. Cuimin Liu, Anna L. Young, Amanda Starling-Windhof, Andreas Bracher, Sandra Saschenbrecker, Coupled chaperone action in folding and assembly of hexadecameric Rubisco, Nature 463, 197-202 doi:10.1038/nature08651 14 January 2010 7. Ivy E. Dick, Michael R. Tadross, Haoya Liang, Lai Hock Tay, Wanjun Yang , A modular switch for spatial Ca2+ selectivity in the calmodulin regulation of CaV channels, Nature 451, 830-834 doi:10.1038/nature06529 30 January 2008 8. Petr Kaláb, Arnd Pralle, Ehud Y. Isacoff, Rebecca Heald & Karsten Weis, Analysis of a RanGTP-regulated gradient in mitotic somatic cells, Nature 440, 697-701 doi:10.1038/nature04589 30 March 2006 9. Andrew A. Pascal, Zhenfeng Liu, Koen Broess, Bart van Oort, Herbert van Amerongen, Molecular basis of photoprotection and control of photosynthetic light-harvesting, Nature 436, 134-137 doi:10.1038/nature03795 7 July 2005 10. Steven C. Erwin, Lijun Zu, Michael I. Haftel, Alexander L. Efros, Thomas A. Kennedy, Doping semiconductor nanocrystals, Nature 436, 91-94 doi:10.1038/nature03832 7 July 2005 11. Seok-Yong Lee & Roderick MacKinnon, A membrane-access mechanism of ion channel inhibition by voltage sensor toxins from spider venom, Nature 430, 232-235 doi:10.1038/nature02632 8 July 2004 12. A. V. Ruban, M. Wentworth, A. E. Yakushevska, J. Andersson, P. J. Lee, Plants lacking the main light-harvesting complex retain photosystem II macro-organization, Nature 421, 648-652 doi:10.1038/nature01344, 6 February 2003 13. Benjamin Schuler, Everett A. Lipman & William A. Eaton, Probing the free-energy surface for protein folding with single-molecule fluorescence spectroscopy, Nature 419, 743-747 doi:10.1038/nature01060, 17 October 2002 14. J. Kim & T. M. Swager, Control of conformational and interpolymer effects in conjugated polymers, Nature 411, 1030-1034 doi:10.1038/35082528, 28 June 2001 15. Hardware harvest Nature 401, 509-512 doi:10.1038/46843 30 September 1999 16. Klaus van Leyen, Robert M. Duvoisin, Harald Engelhardt & Martin Wiedmann, A function for lipoxygenase in programmed organelle degradation, Nature 395, 392-395 doi:10.1038/26500, 24 September 1998 17. Andrea Montali, Cees Bastiaansen, Paul Smith & Christoph Weder, Polarizing energy transfer in photoluminescent materials for display applications, Nature 392, 261-264 doi:10.1038/32616, 19 March 1998 18. Earl Danielson, Josh H. Golden, Eric W. McFarland, Casper M. Reaves, W. Henry Weinberg, A combinatorial approach to the discovery and optimization of luminescent materials, Nature 389, 944-948 doi:10.1038/40099 30 October 1997 19. Ferdinand Rossi, Emmanuel Labourier, Thierry Forné, Gilles Divita, Jean Derancourt, Specific phosphorylation of SR proteins by mammalian DNA topoisomerase I, Nature 381, 80-82 doi:10.1038/381080a0 2 May 1996 20. Thomas Langer, Chi Lu, Harrison Echols, John Flanagan, Manajit K. Hayer, Successive action of DnaK, DnaJ and GroEL along the pathway of chaperone-mediated protein folding, Nature 356, 683-689 doi:10.1038/356683a0 21. Jörg Martin, Thomas Langer, Raina Boteva, Andrea Schramel, Arthur L. Horwich, Chaperonin-mediated protein folding at the surface of groEL through a 'molten globule'-like intermediate, Nature 352, 36-42 doi:10.1038/352036a0 4 July 1991 22. David I. Ratner, Equivalence of intracellular pH of differentiating Dictyostelium cell types, Nature 321, 180-182 doi:10.1038/321180a0 8 May 1986 23. M. Nakache, A. B. Schreiber, H. Gaub & H. M. McConnell, Heterogeneity of membrane phospholipid mobility in endothelial cells depends on cell substrate, Nature 317, 75-77 doi:10.1038/317075a0 5 September 1985 |
34楼2014-08-09 00:16:05
★
小木虫: 金币+0.5, 给个红包,谢谢回帖
小木虫: 金币+0.5, 给个红包,谢谢回帖
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Fluorolog @ JACS 2014 Journal of the American Chemistry Society (2014年数据) Fluorolog-3 共989篇 下面是今年2014年论文列表: 1. Quentin Benito †, Xavier F. Le Goff ‡, Sébastien Maron †, Alexandre Fargues §, Alain Garcia §, Charlotte Martineau , Francis Taulelle , Samia Kahlal #, Thierry Gacoin †, Jean-Pierre Boilot †, and Sandrine Perruchas *† Polymorphic Copper Iodide Clusters: Insights into the Mechanochromic Luminescence Properties, J. Am. Chem. Soc., Article ASAP, DOI: 10.1021/ja500247b , Publication Date (Web): July 30, 2014 2. Xuan-Feng Jiang †, Franky Ka-Wah Hau ‡, Qing-Fu Sun , Shu-Yan Yu *†§, and Vivian Wing-Wah Yam *‡ From {AuI•••AuI}-Coupled Cages to the Cage-Built 2-D {AuI•••AuI} Arrays: AuI•••AuI Bonding Interaction Driven Self-Assembly and Their AgI Sensing and Photo-Switchable Behavior, J. Am. Chem. Soc., Article ASAP, DOI: 10.1021/ja502295c, Publication Date (Web): July 25, 2014 3. Luciana Esposito †, Akos Banyasz ‡, Thierry Douki *§, Marion Perron ‡, Dimitra Markovitsi *‡, and Roberto Improta *†, Effect of C5-Methylation of Cytosine on the Photoreactivity of DNA: A Joint Experimental and Computational Study of TCG Trinucleotides, J. Am. Chem. Soc., Article ASAP, DOI: 10.1021/ja5040478, Publication Date (Web): July 22, 2014 4. Liao-Yuan Yao , Franky Ka-Wah Hau , and Vivian Wing-Wah Yam *, Addition Reaction-Induced Cluster-to-Cluster Transformation: Controlled Self-Assembly of Luminescent Polynuclear Gold(I) μ3-Sulfido Clusters, J. Am. Chem. Soc., 2014, 136 (30), pp 10801–10806, DOI: 10.1021/ja505599v, Publication Date (Web): July 17, 2014 5. Sai-Ho Lee †, Chris Tsz-Leung Chan ‡, Keith Man-Chung Wong †, Wai Han Lam †, Wai-Ming Kwok *‡, and Vivian Wing-Wah Yam *†, Design and Synthesis of Bipyridine Platinum(II) Bisalkynyl Fullerene Donor–Chromophore–Acceptor Triads with Ultrafast Charge Separation, J. Am. Chem. Soc., 2014, 136 (28), pp 10041–10052, DOI: 10.1021/ja5040073, Publication Date (Web): July 2, 2014 6. Zhi Guo †‡, Doyun Lee §, Richard D. Schaller #, Xiaobing Zuo , Byeongdu Lee , TengFei Luo ‡, Haifeng Gao §, and Libai Huang *†, Relationship between Interchain Interaction, Exciton Delocalization, and Charge Separation in Low-Bandgap Copolymer Blends, J. Am. Chem. Soc., 2014, 136 (28), pp 10024–10032, DOI: 10.1021/ja503465s, Publication Date (Web): June 23, 2014 7. Anton M. Prokhorov *†, Thomas Hofbeck ‡, Rafal Czerwieniec *‡, Alfiya F. Suleymanova †, Dmitry N. Kozhevnikov †, and Hartmut Yersin *‡, Brightly Luminescent Pt(II) Pincer Complexes with a Sterically Demanding Carboranyl-Phenylpyridine Ligand: A New Material Class for Diverse Optoelectronic Applications, J. Am. Chem. Soc., 2014, 136 (27), pp 9637–9642, DOI: 10.1021/ja503220w, Publication Date (Web): June 17, 2014 8. Roholah Sharifi †‡, Milinda Samaraweera ‡, José A. Gascón ‡, and Fotios Papadimitrakopoulos *†‡, Thermodynamics of the Quasi-Epitaxial Flavin Assembly around Various-Chirality Carbon Nanotubes, J. Am. Chem. Soc., 2014, 136 (20), pp 7452–7463, DOI: 10.1021/ja502714z, Publication Date (Web): May 12, 2014 9. Aditya Natarajan , Jason P. Schwans , and Daniel Herschlag *, Using Unnatural Amino Acids to Probe the Energetics of Oxyanion Hole Hydrogen Bonds in the Ketosteroid Isomerase Active Site, J. Am. Chem. Soc., 2014, 136 (21), pp 7643–7654, DOI: 10.1021/ja413174b, Publication Date (Web): May 1, 2014 10. Fengcai Lei , Yongfu Sun *, Katong Liu , Shan Gao , Liang Liang , Bicai Pan , and Yi Xie *, Oxygen Vacancies Confined in Ultrathin Indium Oxide Porous Sheets for Promoted Visible-Light Water Splitting, J. Am. Chem. Soc., 2014, 136 (19), pp 6826–6829, DOI: 10.1021/ja501866r, Publication Date (Web): April 28, 2014 11. Haorong Chen †, Te-Wei Weng †, Molly M. Riccitelli †, Yi Cui ‡, Joseph Irudayaraj †‡, and Jong Hyun Choi *†, Understanding the Mechanical Properties of DNA Origami Tiles and Controlling the Kinetics of Their Folding and Unfolding Reconfiguration, J. Am. Chem. Soc., 2014, 136 (19), pp 6995–7005, DOI: 10.1021/ja500612d, Publication Date (Web): April 21, 2014 12. Dmitry N. Dirin †‡, Sébastien Dreyfuss †, Maryna I. Bodnarchuk †‡, Georgian Nedelcu †‡, Paris Papagiorgis §, Grigorios Itskos §, and Maksym V. Kovalenko *†‡, Lead Halide Perovskites and Other Metal Halide Complexes As Inorganic Capping Ligands for Colloidal Nanocrystals, J. Am. Chem. Soc., 2014, 136 (18), pp 6550–6553, DOI: 10.1021/ja5006288, Publication Date (Web): April 18, 2014 13. Xuesong Shi †, Namita Bisaria †, Tara L. Benz-Moy ‡, Steve Bonilla §, Dmitri S. Pavlichin , and Daniel Herschlag *†‡, Roles of Long-Range Tertiary Interactions in Limiting Dynamics of the Tetrahymena Group I Ribozyme, J. Am. Chem. Soc., 2014, 136 (18), pp 6643–6648, DOI: 10.1021/ja413033d, Publication Date (Web): April 16, 2014 14. Joel N. Schrauben †, Joseph L. Ryerson †‡, Josef Michl ‡§, and Justin C. Johnson *†, Mechanism of Singlet Fission in Thin Films of 1,3-Diphenylisobenzofuran, J. Am. Chem. Soc., 2014, 136 (20), pp 7363–7373, DOI: 10.1021/ja501337b, Publication Date (Web): April 15, 2014 15. Rabih Makki , Xin Ji , Hedi Mattoussi , and Oliver Steinbock *, Self-Organized Tubular Structures as Platforms for Quantum Dots, J. Am. Chem. Soc., 2014, 136 (17), pp 6463–6469, DOI: 10.1021/ja501941d, Publication Date (Web): April 4, 2014 16. Yong-Siou Chen and Prashant V. Kamat *, Glutathione-Capped Gold Nanoclusters as Photosensitizers. Visible Light-Induced Hydrogen Generation in Neutral Water, J. Am. Chem. Soc., 2014, 136 (16), pp 6075–6082, DOI: 10.1021/ja5017365, Publication Date (Web): March 26, 2014 17. Ana María Blanco-Rodríguez †, Hana Kvapilová ‡, Jan Sýkora ‡, Michael Towrie §, Carlo Nervi , Giorgio Volpi , Stanislav Záliš *‡, and Antonín Vlček , Jr.*†‡, Photophysics of Singlet and Triplet Intraligand Excited States in [ReCl(CO)3(1-(2-pyridyl)-imidazo[1,5-α]pyridine)] Complexes, J. Am. Chem. Soc., 2014, 136 (16), pp 5963–5973, DOI: 10.1021/ja413098m, Publication Date (Web): March 26, 2014 18. Aneesh P. Sivadas †, N. S. Saleesh Kumar †, Deepak D. Prabhu †, Shinto Varghese †, S. Krishna Prasad ‡*, D. S. Shankar Rao ‡, and Suresh Das *†, Supergelation via Purely Aromatic π–π Driven Self-Assembly of Pseudodiscotic Oxadiazole Mesogens, J. Am. Chem. Soc., 2014, 136 (14), pp 5416–5423, DOI: 10.1021/ja500607d, Publication Date (Web): March 14, 2014 19. Kartick Tarafder †‡, Yogesh Surendranath †§, Jacob H. Olshansky †§, A. Paul Alivisatos †§, and Lin-Wang Wang *†, Hole Transfer Dynamics from a CdSe/CdS Quantum Rod to a Tethered Ferrocene Derivative, J. Am. Chem. Soc., 2014, 136 (13), pp 5121–5131. DOI: 10.1021/ja500936n, Publication Date (Web): March 10, 2014 20. Esther M. Sánchez-Carnerero †, Florencio Moreno †, Beatriz L. Maroto †, Antonia R. Agarrabeitia †, María J. Ortiz †, Bryan G. Vo ‡, Gilles Muller ‡, and Santiago de la Moya *†, Circularly Polarized Luminescence by Visible-Light Absorption in a Chiral O-BODIPY Dye: Unprecedented Design of CPL Organic Molecules from Achiral Chromophores, J. Am. Chem. Soc., 2014, 136 (9), pp 3346–3349, DOI: 10.1021/ja412294s, Publication Date (Web): February 13, 2014 |
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boycothoriba
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小木虫: 金币+0.5, 给个红包,谢谢回帖
changle9139: 屏蔽内容, 问题已经解决,回帖者要求屏蔽 2015-07-08 20:08:22
小木虫: 金币+0.5, 给个红包,谢谢回帖
changle9139: 屏蔽内容, 问题已经解决,回帖者要求屏蔽 2015-07-08 20:08:22
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39楼2015-06-15 14:03:37
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