Academic literature on the topic 'Organometallic compounds – Analysis'

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Journal articles on the topic "Organometallic compounds – Analysis"

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Wei, Xiaoping, Ting Wu, Yali Yuan, Xionghui Ma, and Jianping Li. "Highly sensitive analysis of organometallic compounds based on molecularly imprinted electrochemical sensors." Analytical Methods 9, no. 11 (2017): 1771–78. http://dx.doi.org/10.1039/c6ay03320b.

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Egorochkin, Alexey N., Olga V. Kuznetsova, Nadiya M. Khamaletdinova, and Lada G. Domratcheva-Lvova. "Toxicity of organometallic compounds: Correlation analysis via substituent constants." Journal of Organometallic Chemistry 735 (July 2013): 88–92. http://dx.doi.org/10.1016/j.jorganchem.2013.03.029.

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Dyson, Paul J., and J. Scott McIndoe. "Analysis of organometallic compounds using ion trap mass spectrometry." Inorganica Chimica Acta 354 (October 2003): 68–74. http://dx.doi.org/10.1016/s0020-1693(03)00369-4.

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Holloway, Clive E., and Milan Melník. "Vanadium organometallic compounds: analysis and classification of crystallographic data." Journal of Organometallic Chemistry 304, no. 1-2 (1986): 41–82. http://dx.doi.org/10.1016/s0022-328x(00)99675-x.

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Adams, F. "Improving the reliability of speciation analysis of organometallic compounds." TrAC Trends in Analytical Chemistry 19, no. 2-3 (2000): 80–85. http://dx.doi.org/10.1016/s0165-9936(99)00194-6.

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Holloway, Clive E., and Milan Melnik. "Niobium organometallic compounds: Analysis and classification of crystallographic data." Journal of Organometallic Chemistry 303, no. 1 (1986): 1–38. http://dx.doi.org/10.1016/0022-328x(86)80110-3.

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Holloway, Clive E., and Milan Melnik. "Tantalum organometallic compounds: Analysis and classification of crystallographic data." Journal of Organometallic Chemistry 303, no. 1 (1986): 39–72. http://dx.doi.org/10.1016/0022-328x(86)80111-5.

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Cozak, Daniel, and Milan Melnik. "Titanium organometallic compounds: analysis and classification of crystallographic data." Coordination Chemistry Reviews 74 (November 1986): 53–99. http://dx.doi.org/10.1016/0010-8545(86)85002-0.

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Mosquillo, M. Florencia, Pablo Smircich, Martín Ciganda, et al. "Comparative high-throughput analysis of the Trypanosoma cruzi response to organometallic compounds." Metallomics 12, no. 5 (2020): 813–28. http://dx.doi.org/10.1039/d0mt00030b.

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An in-depth, comparative look at the effects of two structurally related organometallic Pd and Pt compounds on the global gene expression pattern of T. cruzi epimastigotes. This parasite is the causative agent of Chagas disease.
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Jirásko, Robert, and Michal Holčapek. "Structural analysis of organometallic compounds with soft ionization mass spectrometry." Mass Spectrometry Reviews 30, no. 6 (2010): 1013–36. http://dx.doi.org/10.1002/mas.20309.

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Dissertations / Theses on the topic "Organometallic compounds – Analysis"

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Miller, David Paul. "The formation and analysis of organometallic compounds in the environment." Thesis, De Montfort University, 2001. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.482826.

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Clark, S. "A new method for the analysis of metal and metalloidal compounds." Thesis, De Montfort University, 1988. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.383105.

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McQuaid, Michael James. "Spectroscopic characterization of metal-based complexes and metal-based complex oxidation processes." Diss., Georgia Institute of Technology, 1989. http://hdl.handle.net/1853/30334.

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Morello, Glenn R. "Stereoselectivity in organometallic catalysis : analysis by means of computational and mathematical chemistry /." Electronic version (Microsoft Word), 2003. http://dl.uncw.edu/etd/2003/morellog/glennmorello.doc.

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Brien, Kimberly A. "Bismuth aryloxide reactivity kinetics of thermal decomposition and resulting organic oxidation products /." [Fort Worth, Tex.] : Texas Christian University, 2010. http://etd.tcu.edu/etdfiles/available/etd-07232010-131742/unrestricted/Brien.pdf.

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Magwa, Nomampondo Penelope. "A spectroscopic study of the electronic effects on copper (II) and copper (I) complexes of ligands derived from various substituted benzyaldehyde- and cinnamaldehyde- based schiff bases." Thesis, Rhodes University, 2010. http://hdl.handle.net/10962/d1006712.

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Several Schiff base ligands, N, N‟-(aryl)benzyaldiimine ligands (R-BEN); N, N‟-(aryl)benzyaldiamine dihydrochloride ligands (R-BENH•2HCl); N, N‟-(aryl)benzyaldiamine ligands (R-BENH); N, N‟-bis(cinnamaldiimine) ligands (R-CA2EN) were synthesized for the investigation of the electronic effect of the substituents at para-position of the Schiff base ligands and their copper complexes. The synthesis of Schiff bases was carried out by reacting a series of para-substituted benzyaldehyde, and para-substituted cinnamaldehyde with ethylenediamine. The imine group of Schiff bases, N, N‟-(aryl)benzyaldii
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Luth, Karl William. "Total energy and molecular orbital analysis of organometallic compounds using the Fenske-Hall molecular orbital method /." The Ohio State University, 1991. http://rave.ohiolink.edu/etdc/view?acc_num=osu1487687485808537.

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Wang, Yi. "Metal-organic and organic photosensitizers for photocatalytic hydrogen generation and carbon dioxide reduction." HKBU Institutional Repository, 2017. https://repository.hkbu.edu.hk/etd_oa/414.

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This thesis is focused on developing metal-organic and organic molecules for photocatalytic water splitting and carbon dioxide reduction. In chapter 1, an overview of hydrogen production, dye-sensitized solar cells and carbon dioxide reduction are provided. The development history and reaction mechanisms of catalytic systems are introduced along with the typical examples in each field. The applications of both metal-organic and organic compounds are covered. In chapter 2, nine molecular organic photosensitizers were designed and synthesized. The nine molecules were employed as the photosensiti
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Wu, Hao. "Metal-organic compounds of iridium(III) and platinum(II): synthesis, characterization and optoelectronic applications." HKBU Institutional Repository, 2014. https://repository.hkbu.edu.hk/etd_oa/61.

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The molecular design, synthesis and characterization of a series of ligands and the corresponding novel iridium(III) or platinum(II) complexes are discussed in this thesis. Their photophysical and electrochemical properties, the applications in organic light-emitting diodes (OLEDs), dye-sensitized solar cells (DSSCs), aggregation induced emission (AIE) and time-resolved infrared (TRIR) study are also investigated. Chapter 1 generates a brief overview of the background, principle, and development of OLEDs, DSSCs, AIE materials and the involvement of the TRIR technique. Chapter 2 describes th
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Lamprecht, Emmanuel. "Thermal, spectroscopic and x-ray diffraction studies of copper(II) 1,2,4,5-Benzenetetracarboxylates and copper(II) oxalate a study of metal-organic frameworks." Thesis, Rhodes University, 2008. http://hdl.handle.net/10962/d1005054.

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Novel and known metal organic frameworks with copper(II), sodium and 1,2,4,5-benzenetetracarboxylate were prepared by ambient precipitation, solvothermal and gel-synthesis methods, and characterized by single-crystal X-ray diffraction, X-ray powder diffraction, infrared spectroscopy, differential scanning calorimetry, and thermogravimetry with FTIR evolved-gas analysis. Some of these complexes were investigated for guest inclusion properties with water (the original guest species), methanol, ethanol and pyridine. The gel-synthesis products were the most interesting. The novel threedimensional
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Books on the topic "Organometallic compounds – Analysis"

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Comprehensive organometallic analysis. Plenum Press, 1987.

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H, Clark R. J., and Hester R. E, eds. Spectroscopy of inorganic-based materials. Wiley, 1987.

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Crompton, T. R. Occurrence and analysis of organometallic compounds in the environment. Wiley, 1998.

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Duckett, Simon, R. J. Douthwaite, and J. Yarwood. Spectroscopic properties of inorganic and organometallic compounds. Royal Society of Chemistry, 2009.

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Miller, David Paul. The formation and analysis of organometallic compounds in the environment. De Montfort University, 2001.

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Böhm, M. C. One-dimensional organometallic materials: An analysis of electronic structure effects. Springer-Verlag, 1987.

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1938-, Melník M., ed. Heterometallic coordination copper (II) compounds: Classification and analysis of crystallographic and structural data. Nova Science Publishers, 1999.

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Chen, Chunying. Nuclear analytical techniques for metallomics and metalloproteomics. RSC Pub., 2010.

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Mennie, Darren. Novel methods for the analysis of organometallic compounds for the natural environment. De Montfort University, 1993.

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Davidson, G., K. B. Dillon, D. W. H. Rankin, and H. E. Robertson. Spectroscopic properties of inorganic and organometallic compounds: A review of the literature published up to late 2003. Royal Society of Chemistry, 2005.

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Book chapters on the topic "Organometallic compounds – Analysis"

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Crompton, T. R. "Organometallic Compounds in the Environment." In Comprehensive Organometallic Analysis. Springer US, 1987. http://dx.doi.org/10.1007/978-1-4615-9498-7_9.

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Seeber, Renato, Maria I. Pilo, and Gavino Sanna. "Numerical Methods in Synthesis and Analysis of Electrochemical Responses." In Molecular Electrochemistry of Inorganic, Bioinorganic and Organometallic Compounds. Springer Netherlands, 1993. http://dx.doi.org/10.1007/978-94-011-1628-2_42.

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Craig, Peter J., Stuart H. Laurie, and Darren Mennie. "Use of an Interfaced GC-AA Instrument with Full Chromatographic Integrity and Results for the Analysis of Organometallic Species with confirmation by Interfaced GC-MS." In Main Group Elements and their Compounds. Springer Berlin Heidelberg, 1996. http://dx.doi.org/10.1007/978-3-642-52478-3_14.

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Harrington, Christopher F., Daniel S. Vidler, and Richard O. Jenkins. "2. Analysis of Organometal(loid) Compounds in Environmental and Biological Samples." In Organometallics in Environment and Toxicology. Royal Society of Chemistry, 2010. http://dx.doi.org/10.1039/9781849730822-00033.

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Potgieter-Vermaak, S., R. Van Grieken, and J. H. Potgieter. "Integrated analytical techniques for analysing individual environmental particles." In Spectroscopic Properties of Inorganic and Organometallic Compounds. Royal Society of Chemistry, 2012. http://dx.doi.org/10.1039/9781849734899-00123.

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Wallschläger, Dirk, and Jörg Feldmann. "10. Formation, Occurrence, Significance, and Analysis of Organoselenium and Organotellurium Compounds in the Environment." In Organometallics in Environment and Toxicology. Royal Society of Chemistry, 2010. http://dx.doi.org/10.1039/9781849730822-00319.

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Crompton, T. R. "Organometallic compounds." In Analysis of Seawater. Elsevier, 1989. http://dx.doi.org/10.1016/b978-0-407-01610-1.50011-4.

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"Organometallic Compounds." In Applied Functional Analysis. Approximation Methods and Computers. CRC Press, 1996. http://dx.doi.org/10.1201/9781420050127.ch13.

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"Determination of Organometallic Compounds in Seawater." In Analysis of Oceanic Waters and Sediments. CRC Press, 2016. http://dx.doi.org/10.1201/b19088-7.

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Chau, Υ. Κ., and P. Τ. S. Wong. "Organometallic Compounds in the Aquatic Environment." In Analysis of Trace Organics in the Aquatic Environment. CRC Press, 2017. http://dx.doi.org/10.1201/9781315149882-8.

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Conference papers on the topic "Organometallic compounds – Analysis"

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Punanova, Svetlana. "POTENTIALLY TOXIC CHEMICAL ELEMENTS OF SHALE PLAYS – ECOLOGICAL THREAT TO THE ENVIRONMENT." In GEOLINKS International Conference. SAIMA Consult Ltd, 2020. http://dx.doi.org/10.32008/geolinks2020/b1/v2/18.

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This research considered the content of trace elements (TE), including potentially toxic elements (PTE) in shale plays and deposits in various regions of the world. Their comparative analysis was carried out and the highest concentrations of PTE in the shales of some regions were revealed. The author notes that the destruction of organometallic compounds occurs during the development of shale hydrocarbon (HC) using horizontal drilling with hydraulic fracturing – injecting large volumes of chemicals while increasing the temperature. During such destruction processes, PTE can escape into the env
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Punanova, Svetlana. "ORE CONCENTRATIONS OF METALS IN NAPHTHIDES OF HYPERGENESIS ZONE: ASSESSMENT AND ENVIRONMENTAL ASPECT." In GEOLINKS International Conference. SAIMA Consult Ltd, 2020. http://dx.doi.org/10.32008/geolinks2020/b1/v2/17.

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The study examines the formation of secondary-altered crude oils associated with the processes of modern or ancient hypergenesis. As a result of geological processes during intense upward movement of the earth's crust, oil undergoes physical weathering, inorganic oxidation, washing out with water, biodegradation and sulfurization, and turn into heavy oils and hard bitumen. In zones of hypergenesis, the loss of light fractions occurs and the absolute concentration of trace elements (TE) associated with resinous-asphaltene components, such as V, Ni, Co, Mo, Cr, Cu, etc. sharply increases. In add
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