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10.1021
nature
<citation-number>73.</citation-number> <author>Lawson, L. & Huser, T.</author> <title>Synthesis and Characterization of a Disulfide Reporter Molecule for Enhancing pH Measurements Based on Surface-Enhanced Raman Scattering.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>3574–3580</page> <year>(2012).</year>
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<citation-number>74.</citation-number> <author>Ordeig, O. et al.</author> <title>Dual Photonic-Electrochemical Lab on a Chip for Online Simultaneous Absorbance and Amperometric Measurements.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>3546–3553</page> <year>(2012).</year>
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<citation-number>76.</citation-number> <author>Saito, S., Massie, T. L., Maeda, T., Nakazumi, H. & Colyer, C. L.</author> <title>On-Column Labeling of Gram-Positive Bacteria with a Boronic Acid Functionalized Squarylium Cyanine Dye for Analysis by Polymer-Enhanced Capillary Transient Isotachophoresis.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>2452–2458</page> <year>(2012).</year>
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<citation-number>78.</citation-number> <author>Fu, H. & Zhu, D.</author> <title>In Situ Hydrothermal Grown Silicalite-1 Coating for Solid-Phase Microextraction.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>2366–2372</page> <year>(2012).</year>
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<citation-number>79.</citation-number> <author>Gözen, I. & Jesorka, A.</author> <title>Instrumental Methods to Characterize Molecular Phospholipid Films on Solid Supports.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>822–838</page> <year>(2012).</year>
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<citation-number>81.</citation-number> <author>Paudel, M. K. et al.</author> <title>Preparation of a Single-Chain Variable Fragment and a Recombinant Antigen-Binding Fragment against the Anti-Malarial Drugs, Artemisinin and Artesunate, and Their Application in an ELISA.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>2002–2008</page> <year>(2012).</year>
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<citation-number>83.</citation-number> <author>Ouerdane, L., Meija, J., Bakirdere, S., Yang, L. & Mester, Z.</author> <title>Nonlinear Signal Response in Electrospray Mass Spectrometry: Implications for Quantitation of Arsenobetaine Using Stable Isotope Labeling by Liquid Chromatography and Electrospray Orbitrap Mass Spectrometry.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>3958–3964</page> <year>(2012).</year>
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<citation-number>84.</citation-number> <author>Virel, A., Saa, L. & Pavlov, V.</author> <title>Quantification of Prothrombin in Human Plasma Amplified by Autocatalytic Reaction.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>2380–2387</page> <year>(2012).</year>
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<citation-number>85.</citation-number> <author>Shi, K., Hou, X., Roos, P. & Wu, W.</author> <title>Stability of Technetium and Decontamination from Ruthenium and Molybdenum in Determination of 99Tc in Environmental Solid Samples by ICPMS.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>2009–2016</page> <year>(2012).</year>
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<citation-number>86.</citation-number> <author>Liu, R., Lv, Y., Hou, X., Yang, L. & Mester, Z.</author> <title>Protein Quantitation Using Ru-NHS Ester Tagging and Isotope Dilution High-Pressure Liquid Chromatography–Inductively Coupled Plasma Mass Spectrometry Determination.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>2769–2775</page> <year>(2012).</year>
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10.1021
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<citation-number>1.</citation-number> <author>Arter, J. A. et al.</author> <title>Virus–Polymer Hybrid Nanowires Tailored to Detect Prostate-Specific Membrane Antigen.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>2776–2783</page> <year>(2012).</year>
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<citation-number>2.</citation-number> <author>Grob, B., Schmid, J., Ivleva, N. P. & Niessner, R.</author> <title>Conductivity for Soot Sensing: Possibilities and Limitations.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>3586–3592</page> <year>(2012).</year>
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<citation-number>3.</citation-number> <author>Abrego, Z. et al.</author> <title>Unambiguous Characterization of Gunshot Residue Particles Using Scanning Laser Ablation and Inductively Coupled Plasma-Mass Spectrometry.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>2402–2409</page> <year>(2012).</year>
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<citation-number>4.</citation-number> <author>McCreery, R. L. & McDermott, M. T.</author> <title>Comment on Electrochemical Kinetics at Ordered Graphite Electrodes.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>2602–2605</page> <year>(2012).</year>
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<citation-number>5.</citation-number> <author>Divito, E. B., Davic, A. P., Johnson, M. E. & Cascio, M.</author> <title>Electrospray Ionization and Collision Induced Dissociation Mass Spectrometry of Primary Fatty Acid Amides.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>2388–2394</page> <year>(2012).</year>
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<citation-number>6.</citation-number> <author>Nakamoto, K., Kurita, R. & Niwa, O.</author> <title>Electrochemical Surface Plasmon Resonance Measurement Based on Gold Nanohole Array Fabricated by Nanoimprinting Technique.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>3187–3191</page> <year>(2012).</year>
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<citation-number>7.</citation-number> <author>Park, S. S., Kim, J. & Lee, Y.</author> <title>Improved Electrochemical Microsensor for the Real-Time Simultaneous Analysis of Endogenous Nitric Oxide and Carbon Monoxide Generation.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>1792–1796</page> <year>(2012).</year>
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<citation-number>8.</citation-number> <author>Meermann, B. et al.</author> <title>HPLC/ICP-MS in Combination with “Reverse” Online Isotope Dilution in Drug Metabolism Studies.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>2395–2401</page> <year>(2012).</year>
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<citation-number>9.</citation-number> <author>Hofmann, U. et al.</author> <title>Simultaneous Quantification of Eleven Thiopurine Nucleotides by Liquid Chromatography-Tandem Mass Spectrometry.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>1294–1301</page> <year>(2012).</year>
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<citation-number>10.</citation-number> <author>Chen, L. et al.</author> <title>Simultaneous Determination of Human Enterovirus 71 and Coxsackievirus B3 by Dual-Color Quantum Dots and Homogeneous Immunoassay.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>3200–3207</page> <year>(2012).</year>
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<citation-number>11.</citation-number> <author>Zong, C., Wu, J., Wang, C., Ju, H. & Yan, F.</author> <title>Chemiluminescence Imaging Immunoassay of Multiple Tumor Markers for Cancer Screening.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>2410–2415</page> <year>(2012).</year>
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<citation-number>12.</citation-number> <author>Riccio, D. A., Nutz, S. T. & Schoenfisch, M. H.</author> <title>Visible Photolysis and Amperometric Detection of S-Nitrosothiols.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>851–856</page> <year>(2011).</year>
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<citation-number>13.</citation-number> <author>Liu, H., Dong, C., Huang, X. & Ren, J.</author> <title>Spatially Resolved Scattering Correlation Spectroscopy Using a Total Internal Reflection Configuration.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>3561–3567</page> <year>(2012).</year>
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<citation-number>14.</citation-number> <author>Zhao, W.-W. et al.</author> <title>Highly Sensitive Photoelectrochemical Immunoassay with Enhanced Amplification Using Horseradish Peroxidase Induced Biocatalytic Precipitation on a CdS Quantum Dots Multilayer Electrode.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>917–923</page> <year>(2011).</year>
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<citation-number>15.</citation-number> <author>Amatore, C., Klymenko, O. V. & Svir, I.</author> <title>Importance of Correct Prediction of Initial Concentrations in Voltammetric Scans: Contrasting Roles of Thermodynamics, Kinetics, and Natural Convection.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>2792–2798</page> <year>(2012).</year>
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<citation-number>16.</citation-number> <author>Essaka, D. C. et al.</author> <title>Metabolic Cytometry: Capillary Electrophoresis with Two-Color Fluorescence Detection for the Simultaneous Study of Two Glycosphingolipid Metabolic Pathways in Single Primary Neurons.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>2799–2804</page> <year>(2012).</year>
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<citation-number>17.</citation-number> <author>Seo, Y., Andaya, A. & Leary, J. A.</author> <title>Preparation, Separation, and Conformational Analysis of Differentially Sulfated Heparin Octasaccharide Isomers Using Ion Mobility Mass Spectrometry.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>2416–2423</page> <year>(2012).</year>
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10.1021
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<citation-number>18.</citation-number> <author>Xian, F., Hendrickson, C. L. & Marshall, A. G.</author> <title>High Resolution Mass Spectrometry.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>708–719</page> <year>(2012).</year>
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<citation-number>19.</citation-number> <author>Snowden, M. E. et al.</author> <title>Scanning Electrochemical Cell Microscopy: Theory and Experiment for Quantitative High Resolution Spatially-Resolved Voltammetry and Simultaneous Ion-Conductance Measurements.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>2483–2491</page> <year>(2012).</year>
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10.1021
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<citation-number>20.</citation-number> <author>Zhang, L., Kujawinski, D. M., Federherr, E., Schmidt, T. C. & Jochmann, M. A.</author> <title>Caffeine in Your Drink: Natural or Synthetic?.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>2805–2810</page> <year>(2012).</year>
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10.1021
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<citation-number>21.</citation-number> <title>Filling Royce’s Shoes.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>1</page> <year>(2011).</year>
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<citation-number>22.</citation-number> <author>Benton, H. P. et al.</author> <title>Intra- and Interlaboratory Reproducibility of Ultra Performance Liquid Chromatography–Time-of-Flight Mass Spectrometry for Urinary Metabolic Profiling.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>2424–2432</page> <year>(2012).</year>
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<citation-number>23.</citation-number> <author>Zheng, C. et al.</author> <title>Quantitative Study of the Dynamic Tumor–Endothelial Cell Interactions through an Integrated Microfluidic Coculture System.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>2088–2093</page> <year>(2012).</year>
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<citation-number>24.</citation-number> <author>Quast, A. D., Curtis, A. D., Horn, B. A., Goates, S. R. & Patterson, J. E.</author> <title>Role of Nonresonant Sum-Frequency Generation in the Investigation of Model Liquid Chromatography Systems.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>1862–1870</page> <year>(2012).</year>
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<citation-number>25.</citation-number> <author>Bonifas, A. P. & McCreery, R. L.</author> <title>Solid State Spectroelectrochemistry of Redox Reactions in Polypyrrole/Oxide Molecular Heterojunctions.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>2459–2465</page> <year>(2012).</year>
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<citation-number>26.</citation-number> <author>Geiger, M., Hogerton, A. L. & Bowser, M. T.</author> <title>Capillary Electrophoresis.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>577–596</page> <year>(2011).</year>
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<citation-number>27.</citation-number> <author>Li, R., Kameda, T., Toriba, A., Hayakawa, K. & Lin, J.-M.</author> <title>Determination of Benzo[a]pyrene-7,10-quinone in Airborne Particulates by Using a Chemiluminescence Reaction of Hydrogen Peroxide and Hydrosulfite.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>3215–3221</page> <year>(2012).</year>
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<citation-number>28.</citation-number> <author>Zhang, H., Li, X.-F. & Le, X. C.</author> <title>Binding-Induced DNA Assembly and Its Application to Yoctomole Detection of Proteins.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>877–884</page> <year>(2011).</year>
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<citation-number>29.</citation-number> <author>Leclercq, L. & Cottet, H.</author> <title>Fast Characterization of Polyelectrolyte Complexes by Inline Coupling of Capillary Electrophoresis to Taylor Dispersion Analysis.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>1740–1743</page> <year>(2012).</year>
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<citation-number>30.</citation-number> <author>Awwad, Y., Geng, T., Baldwin, A. S. & Lu, C.</author> <title>Observing Single Cell {NF}-$\upkappa$B Dynamics under Stimulant Concentration Gradient.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>1224–1228</page> <year>(2012).</year>
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<citation-number>31.</citation-number> <author>Bereman, M. S. et al.</author> <title>Evaluation of Front-End Higher Energy Collision-Induced Dissociation on a Benchtop Dual-Pressure Linear Ion Trap Mass Spectrometer for Shotgun Proteomics.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>1533–1539</page> <year>(2012).</year>
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<citation-number>36.</citation-number> <author>Atmanene, C. et al.</author> <title>Exploring Key Parameters to Detect Subtle Ligand-Induced Protein Conformational Changes Using Traveling Wave Ion Mobility Mass Spectrometry.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>4703–4710</page> <year>(2012).</year>
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<citation-number>37.</citation-number> <author>Barchasz, C. et al.</author> <title>Lithium/Sulfur Cell Discharge Mechanism: An Original Approach for Intermediate Species Identification.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>3973–3980</page> <year>(2012).</year>
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<citation-number>38.</citation-number> <author>Robinson, M. R., Madsen, J. A. & Brodbelt, J. S.</author> <title>193 nm Ultraviolet Photodissociation of Imidazolinylated Lys-N Peptides for De Novo Sequencing.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>2433–2439</page> <year>(2012).</year>
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<citation-number>40.</citation-number> <author>Takeda, Y., Yano, Y. & Matsuzaki, K.</author> <title>High-Throughput Analysis of Ligand-Induced Internalization of $\upbeta$2-Adrenoceptors Using the Coiled-Coil Tag{\textendash}Probe Method.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>1754–1759</page> <year>(2012).</year>
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<citation-number>42.</citation-number> <author>López-López, M., Delgado, J. J. & Garca-Ruiz, C.</author> <title>Ammunition Identification by Means of the Organic Analysis of Gunshot Residues Using Raman Spectroscopy.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>3581–3585</page> <year>(2012).</year>
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<citation-number>43.</citation-number> <author>Hoshino, K., Chen, P., Huang, Y.-Y. & Zhang, X.</author> <title>Computational Analysis of Microfluidic Immunomagnetic Rare Cell Separation from a Particulate Blood Flow.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>4292–4299</page> <year>(2012).</year>
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<citation-number>44.</citation-number> <author>Yamamoto, S., Kaminský, J. & Bouř, P.</author> <title>Structure and Vibrational Motion of Insulin from Raman Optical Activity Spectra.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>2440–2451</page> <year>(2012).</year>
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<citation-number>46.</citation-number> <author>Jia, W., Andaya, A. & Leary, J. A.</author> <title>Novel Mass Spectrometric Method for Phosphorylation Quantification Using Cerium Oxide Nanoparticles and Tandem Mass Tags.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>2466–2473</page> <year>(2012).</year>
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