By John G. Reynolds, Glenn E. Lawson
content material: Polymers and fabrics for antiterrorism and native land protection: an outline / John G. Reynolds and Glenn E. Lawson --
Synthesis and spectroscopic characterization of molecularly imprinted polymer phosphonate sensors / G.E. Southard ... [et al.] --
improvement of an enzyme-based photoluminescent porous silicon detector for chemical conflict brokers / Bradley R. Hart ... [et al.] --
Optical enzyme-based sensors for reagentless detection of chemical analytes /Brandy Johnson-White and H. James Harmon --
layout of sorbent hydrogen bond acidic polycarbosilanes for chemical sensor purposes / Eric J. Houser ... [et al.] --
Non-aqueous polymer gels with vast temperature functionality / Joseph L. Lenhart ... [et al.] --
Detection of poisonous chemical substances for place of origin safety utilizing polyaniline nanofibers / Shabnam Virji, Richard B. Kaner, and Bruce H. Weiller --
purposes of nanoparticles in scintillation detectors / Suree S. Brown, Adam J. Rondinone, and Sheng Dai --
A comparability of insulator-based dielectrophoretic units for the tracking and separation of waterborne pathogens as a functionality of microfabrication process / Gregory J. McGraw ... [et al.] --
layout and synthesis of dendritic tethers for the immobilization of antibodies for the detection of sophistication A bioterror pathogens / Charles W. Spangler ... [et al.] --
Amphiphilic polymers with powerful antibacterial task / M. Firat Ilker, Gregory N. Tew, and E. Bryan Coughlin --
Catalysts for cardio decontamination of chemical battle brokers below ambient stipulations / Craig L. Hill ... [et al.] --
Ultrastable nanocapsules from headgroup polymerizable divinylbenzamide phosphoethanolamine / Glenn E. Lawson and Alok Singh --
Nanoencapsulation of organophosphorus acid anhydrolase with mesoporous fabrics for chemical agent decontamination in natural solvents / Kate okay. Ong ... [et al.].
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Committee on Toxicology. National Academy Press: Washington, D C 1982, Vol. 1: anticholinesterases and anticholinergics. Hill, C. M . ; DeFrank, J. ; Raushel, R. M . Bioorganic Chemistry 2001, 29, 27-35. Cullis, A . ; Canham, L . ; Calcott, P. D. J. J. Appl. Phys. 1997, 82(3), 909-965. Buriak, J. M . Chem. Rev. 2002, 102, 1271-1308. ; Zhao, X . ; Hamers, R. ; Smith, L . M . J. Amer. Chem. Soc. 2000, 122, 1205-1209. -P. ; Greiner, D . ; Sailor, M . J. J. Amer. Chem. Soc. 1999, 121, 7925-7930. Wojtyk, J.
Since the incorporation of the europium complex is better for the R A F T polymer than the mixed ligand polymer, smaller amounts of polymer can be used to get good sensitivity and dynamic range. A second titration curve was generated using the R A F T polymer and longer equilibration times in order to ascertain whether equilibration is slow (site accessibility is kinetically hindered) or i f the cleaning was inadequate and too few sites were available. A control solution of the model compound, Eu(NTFA) was used to adjust for instrument changes, resulting in better linearity (Figure 12).
Heuts, J. P. ; Stenzel, M . H . ; Whittaker, M . J. Polymer Science Part A: Polymer Chem. 2003, 41, 365375. Mayadunne, R. T. ; Rizzardo, E. Macromolecules 2003, 56, 1505-1513. Southard, G . ; Murray, G . M . J. Org. Chem. 2005, 70(22), 9036-9039. Southard, G . ; Van Houten, K . A ; Murray, G . M . Anal. Chimica Acta, 2007, 581, 202-207. Brittain, H . G . Inorg. Chem. 1980 19, 640-643. Southard, G . E . ; Van Houten, Κ. ; Murray, G . M . Macromolecules, 2007, in press. ; ACS Symposium Series; American Chemical Society: Washington, DC, 2007.