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10.1021
nature
<citation-number>83.</citation-number> <author>Liu, Z., Hu, C., Li, S., Zhang, W. & Guo, Z.</author> <title>Rapid Intracellular Growth of Gold Nanostructures Assisted by Functionalized Graphene Oxide and Its Application for Surface-Enhanced Raman Spectroscopy.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>10338–10344</page> <year>(2012).</year>
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<citation-number>84.</citation-number> <author>Vahidi, S., Stocks, B. B., Liaghati-Mobarhan, Y. & Konermann, L.</author> <title>Mapping pH-Induced Protein Structural Changes Under Equilibrium Conditions by Pulsed Oxidative Labeling and Mass Spectrometry.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>9124–9130</page> <year>(2012).</year>
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<citation-number>85.</citation-number> <author>Huffman, B. A., Poltash, M. L. & Hughey, C. A.</author> <title>Effect of Polar Protic and Polar Aprotic Solvents on Negative-Ion Electrospray Ionization and Chromatographic Separation of Small Acidic Molecules.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>9942–9950</page> <year>(2012).</year>
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<citation-number>86.</citation-number> <author>Liu, J. et al.</author> <title>Graphene Signal Amplification for Sensitive and Real-Time Fluorescence Anisotropy Detection of Small Molecules.</title> <container-title>Analytical Chemistry</container-title> <volume>85,</volume> <page>1424–1430</page> <year>(2013).</year>
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<citation-number>87.</citation-number> <author>Koch, J. A., Baur, M. B., Woodall, E. L. & Baur, J. E.</author> <title>Alternating Current Scanning Electrochemical Microscopy with Simultaneous Fast-Scan Cyclic Voltammetry.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>9537–9543</page> <year>(2012).</year>
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<citation-number>88.</citation-number> <author>Schmerberg, C. M. & Li, L.</author> <title>Mass Spectrometric Detection of Neuropeptides Using Affinity-Enhanced Microdialysis with Antibody-Coated Magnetic Nanoparticles.</title> <container-title>Analytical Chemistry</container-title> <volume>85,</volume> <page>915–922</page> <year>(2013).</year>
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<citation-number>89.</citation-number> <author>Ohira, S.-I., Goto, K., Toda, K. & Dasgupta, P. K.</author> <title>A Capacitance Sensor for Water: Trace Moisture Measurement in Gases and Organic Solvents.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>8891–8897</page> <year>(2012).</year>
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<citation-number>1.</citation-number> <author>Kumar, S. et al.</author> <title>Selected Ion Flow Tube-MS Analysis of Headspace Vapor from Gastric Content for the Diagnosis of Gastro-Esophageal Cancer.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>9550–9557</page> <year>(2012).</year>
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<citation-number>2.</citation-number> <author>Zhang, L., Zhou, M. & Dong, S.</author> <title>A Self-Powered Acetaldehyde Sensor Based on Biofuel Cell.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>10345–10349</page> <year>(2012).</year>
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<citation-number>3.</citation-number> <author>Flores, E., Viallon, J., Moussay, P., Idrees, F. & Wielgosz, R. I.</author> <title>Highly Accurate Nitrogen Dioxide (NO2) in Nitrogen Standards Based on Permeation.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>10283–10290</page> <year>(2012).</year>
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<citation-number>4.</citation-number> <author>Lee, W. & Fan, X.</author> <title>Intracavity DNA Melting Analysis with Optofluidic Lasers.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>9558–9563</page> <year>(2012).</year>
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<citation-number>5.</citation-number> <author>Chan, P.-H. & Chen, Y.-C.</author> <title>Human Serum Albumin Stabilized Gold Nanoclusters as Selective Luminescent Probes for Staphylococcus aureus and Methicillin-Resistant Staphylococcus aureus.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>8952–8956</page> <year>(2012).</year>
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<citation-number>6.</citation-number> <author>McClintock, C. S. & Hettich, R. L.</author> <title>Experimental Approach to Controllably Vary Protein Oxidation While Minimizing Electrode Adsorption for Boron-Doped Diamond Electrochemical Surface Mapping Applications.</title> <container-title>Analytical Chemistry</container-title> <volume>85,</volume> <page>213–219</page> <year>(2012).</year>
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<citation-number>7.</citation-number> <author>Tang, L., Casas, J. & Venkataramasubramani, M.</author> <title>Magnetic Nanoparticle Mediated Enhancement of Localized Surface Plasmon Resonance for Ultrasensitive Bioanalytical Assay in Human Blood Plasma.</title> <container-title>Analytical Chemistry</container-title> <volume>85,</volume> <page>1431–1439</page> <year>(2013).</year>
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<citation-number>8.</citation-number> <author>Saveliev, S. V. et al.</author> <title>Mass Spectrometry Compatible Surfactant for Optimized In-Gel Protein Digestion.</title> <container-title>Analytical Chemistry</container-title> <volume>85,</volume> <page>907–914</page> <year>(2013).</year>
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<citation-number>9.</citation-number> <author>Xiang, Y. & Lu, Y.</author> <title>Expanding Targets of DNAzyme-Based Sensors through Deactivation and Activation of DNAzymes by Single Uracil Removal: Sensitive Fluorescent Assay of Uracil-DNA Glycosylase.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>9981–9987</page> <year>(2012).</year>
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<citation-number>10.</citation-number> <author>Yeh, L.-H., Zhang, M., Joo, S. W., Qian, S. & Hsu, J.-P.</author> <title>Controlling pH-Regulated Bionanoparticles Translocation through Nanopores with Polyelectrolyte Brushes.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>9615–9622</page> <year>(2012).</year>
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10.1021
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<citation-number>11.</citation-number> <author>Huynh, T., Zhang, H. & Noller, B.</author> <title>Evaluation and Application of the Diffusive Gradients in Thin Films Technique Using a Mixed-Binding Gel Layer for Measuring Inorganic Arsenic and Metals in Mining Impacted Water and Soil.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>9988–9995</page> <year>(2012).</year>
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10.1021
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<citation-number>12.</citation-number> <author>Qin, W. et al.</author> <title>Trace-Level Potentiometric Detection in the Presence of a High Electrolyte Background.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>10509–10513</page> <year>(2012).</year>
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<citation-number>13.</citation-number> <author>Vaikkinen, A. et al.</author> <title>Simultaneous Detection of Nonpolar and Polar Compounds by Heat-Assisted Laser Ablation Electrospray Ionization Mass Spectrometry.</title> <container-title>Analytical Chemistry</container-title> <volume>85,</volume> <page>177–184</page> <year>(2012).</year>
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<citation-number>14.</citation-number> <author>Meier, M., Sit, R., Pan, W. & Quake, S. R.</author> <title>High-Performance Binary Protein Interaction Screening in a Microfluidic Format.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>9572–9578</page> <year>(2012).</year>
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<citation-number>15.</citation-number> <author>Lv, Y., Lin, Z. & Svec, F.</author> <title>Hypercrosslinked Large Surface Area Porous Polymer Monoliths for Hydrophilic Interaction Liquid Chromatography of Small Molecules Featuring Zwitterionic Functionalities Attached to Gold Nanoparticles Held in Layered Structure.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>8457–8460</page> <year>(2012).</year>
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<citation-number>16.</citation-number> <author>Yuan, L., Xu, L. & Liu, S.</author> <title>Integrated Tyramide and Polymerization-Assisted Signal Amplification for a Highly-Sensitive Immunoassay.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>10737–10744</page> <year>(2012).</year>
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<citation-number>17.</citation-number> <author>Bailey, Melanie. J. et al.</author> <title>Chemical Characterization of Latent Fingerprints by Matrix-Assisted Laser Desorption Ionization, Time-of-Flight Secondary Ion Mass Spectrometry, Mega Electron Volt Secondary Mass Spectrometry, Gas Chromatography/Mass Spectrometry, X-ray Photoelectron Spectroscopy, and Attenuated Total Reflection Fourier Transform Infrared Spectroscopic Imaging: An Intercomparison.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>8514–8523</page> <year>(2012).</year>
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<citation-number>18.</citation-number> <author>Kim, J. et al.</author> <title>Rapid Cytotoxicity Screening Platform for Amyloid Inhibitors Using a Membrane-Potential Sensitive Fluorescent Probe.</title> <container-title>Analytical Chemistry</container-title> <volume>85,</volume> <page>185–192</page> <year>(2012).</year>
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<citation-number>19.</citation-number> <author>Bao, P. et al.</author> <title>On-Chip Alternating Current Electrophoresis in Supported Lipid Bilayer Membranes.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>10702–10707</page> <year>(2012).</year>
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<citation-number>20.</citation-number> <author>Cfková, E. et al.</author> <title>Nontargeted Quantitation of Lipid Classes Using Hydrophilic Interaction Liquid Chromatography–Electrospray Ionization Mass Spectrometry with Single Internal Standard and Response Factor Approach.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>10064–10070</page> <year>(2012).</year>
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<citation-number>21.</citation-number> <author>Sukas, S., Malsche, W. D., Desmet, G. & Gardeniers, H. J. G. E.</author> <title>Performance Evaluation of Different Design Alternatives for Microfabricated Nonporous Fused Silica Pillar Columns for Capillary Electrochromatography.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>9996–10004</page> <year>(2012).</year>
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<citation-number>22.</citation-number> <author>Qu, F., Li, N. B. & Luo, H. Q.</author> <title>Polyethyleneimine-Templated Ag Nanoclusters: A New Fluorescent and Colorimetric Platform for Sensitive and Selective Sensing Halide Ions and High Disturbance-Tolerant Recognitions of Iodide and Bromide in Coexistence with Chloride under Condition of High Ionic Strength.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>10373–10379</page> <year>(2012).</year>
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<citation-number>23.</citation-number> <author>Marotta, N. E., Beavers, K. R. & Bottomley, L. A.</author> <title>Limitations of Surface Enhanced Raman Scattering in Sensing DNA Hybridization Demonstrated by Label-Free DNA Oligos as Molecular Rulers of Distance-Dependent Enhancement.</title> <container-title>Analytical Chemistry</container-title> <volume>85,</volume> <page>1440–1446</page> <year>(2013).</year>
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10.1021
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<citation-number>24.</citation-number> <author>Jiang, H. et al.</author> <title>Practical and Efficient Strategy for Evaluating Oral Absolute Bioavailability with an Intravenous Microdose of a Stable Isotopically-Labeled Drug Using a Selected Reaction Monitoring Mass Spectrometry Assay.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>10031–10037</page> <year>(2012).</year>
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10.1021
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<citation-number>25.</citation-number> <author>Rai, R. K. & Sinha, N.</author> <title>Fast and Accurate Quantitative Metabolic Profiling of Body Fluids by Nonlinear Sampling of1H–13C Two-Dimensional Nuclear Magnetic Resonance Spectroscopy.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>10005–10011</page> <year>(2012).</year>
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<citation-number>26.</citation-number> <author>Qian, Q. et al.</author> <title>Aspartic Acid-Promoted Highly Selective and Sensitive Colorimetric Sensing of Cysteine in Rat Brain.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>9579–9584</page> <year>(2012).</year>
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<citation-number>27.</citation-number> <author>Zhan, Y. et al.</author> <title>Release of Intracellular Proteins by Electroporation with Preserved Cell Viability.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>8102–8105</page> <year>(2012).</year>
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<citation-number>28.</citation-number> <author>Shigeta, K. et al.</author> <title>Functional Protein Microarrays by Electrohydrodynamic Jet Printing.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>10012–10018</page> <year>(2012).</year>
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<citation-number>29.</citation-number> <author>Julka, S. et al.</author> <title>Quantification of Gly m 4 Protein, A Major Soybean Allergen, By Two-Dimensional Liquid Chromatography with Ultraviolet and Mass Spectrometry Detection.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>10019–10030</page> <year>(2012).</year>
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<citation-number>30.</citation-number> <author>Xu, X. et al.</author> <title>Counting Bacteria Using Functionalized Gold Nanoparticles as the Light-Scattering Reporter.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>9721–9728</page> <year>(2012).</year>
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<citation-number>31.</citation-number> <author>Pollakowski, B. et al.</author> <title>Nondestructive and Nonpreparative Chemical Nanometrology of Internal Material Interfaces at Tunable High Information Depths.</title> <container-title>Analytical Chemistry</container-title> <volume>85,</volume> <page>193–200</page> <year>(2012).</year>
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<citation-number>32.</citation-number> <author>Venable, J. D., Okach, L., Agarwalla, S. & Brock, A.</author> <title>Subzero Temperature Chromatography for Reduced Back-Exchange and Improved Dynamic Range in Amide Hydrogen/Deuterium Exchange Mass Spectrometry.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>9601–9608</page> <year>(2012).</year>
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<citation-number>33.</citation-number> <author>Liébana, S. et al.</author> <title>Phagomagnetic Separation and Electrochemical Magneto-Genosensing of Pathogenic Bacteria.</title> <container-title>Analytical Chemistry</container-title> <volume>85,</volume> <page>3079–3086</page> <year>(2013).</year>
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<citation-number>34.</citation-number> <author>Misharin, A., Novoselov, K., Laiko, V. & Doroshenko, V. M.</author> <title>Development and Characterization of a Field-Deployable Ion-Trap Mass Spectrometer with an Atmospheric Pressure Interface.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>10105–10112</page> <year>(2012).</year>
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<citation-number>35.</citation-number> <author>Piorek, B. D., Lee, S. J., Moskovits, M. & Meinhart, C. D.</author> <title>Free-Surface Microfluidics/Surface-Enhanced Raman Spectroscopy for Real-Time Trace Vapor Detection of Explosives.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>9700–9705</page> <year>(2012).</year>
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<citation-number>36.</citation-number> <author>Wei, H.-Z. et al.</author> <title>Precise Determination of the Absolute Isotopic Abundance Ratio and the Atomic Weight of Chlorine in Three International Reference Materials by the Positive Thermal Ionization Mass Spectrometer-Cs2Cl$\mathplus$-Graphite Method.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>10350–10358</page> <year>(2012).</year>
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<citation-number>37.</citation-number> <author>Kalimuthu, P., Leimkühler, S. & Bernhardt, P. V.</author> <title>Low-Potential Amperometric Enzyme Biosensor for Xanthine and Hypoxanthine.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>10359–10365</page> <year>(2012).</year>
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<citation-number>38.</citation-number> <author>Gabler, C., Pittenauer, E., Dörr, N. & Allmaier, G.</author> <title>Imaging of a Tribolayer Formed from Ionic Liquids by Laser Desorption/Ionization-Reflectron Time-of-Flight Mass Spectrometry.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>10708–10714</page> <year>(2012).</year>
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<citation-number>39.</citation-number> <author>de Souza, F. R., Alves, G. L. & Coltro, W. K. T.</author> <title>Capillary-Driven Toner-Based Microfluidic Devices for Clinical Diagnostics with Colorimetric Detection.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>9002–9007</page> <year>(2012).</year>
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<citation-number>40.</citation-number> <author>Kong, M. C. R. & Salin, E. D.</author> <title>Spectrophotometric Determination of Aqueous Sulfide on a Pneumatically Enhanced Centrifugal Microfluidic Platform.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>10038–10043</page> <year>(2012).</year>
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<citation-number>41.</citation-number> <author>Wohlgamuth, C. H., McWilliams, M. A. & Slinker, J. D.</author> <title>Temperature Dependence of Electrochemical DNA Charge Transport: Influence of a Mismatch.</title> <container-title>Analytical Chemistry</container-title> <volume>85,</volume> <page>1462–1467</page> <year>(2013).</year>
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<citation-number>42.</citation-number> <author>Kole, M. R., Reddy, R. K., Schulmerich, M. V., Gelber, M. K. & Bhargava, R.</author> <title>Discrete Frequency Infrared Microspectroscopy and Imaging with a Tunable Quantum Cascade Laser.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>10366–10372</page> <year>(2012).</year>
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<citation-number>43.</citation-number> <author>Cochran, K. H., Barry, J. A., Muddiman, D. C. & Hinks, D.</author> <title>Direct Analysis of Textile Fabrics and Dyes Using Infrared Matrix-Assisted Laser Desorption Electrospray Ionization Mass Spectrometry.</title> <container-title>Analytical Chemistry</container-title> <volume>85,</volume> <page>831–836</page> <year>(2012).</year>
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<citation-number>44.</citation-number> <author>Zheng, X. et al.</author> <title>Quantitative Analysis of Neurochemical Panel in Rat Brain and Plasma by Liquid Chromatography–Tandem Mass Spectrometry.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>10044–10051</page> <year>(2012).</year>
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<citation-number>45.</citation-number> <author>Knaack, J. S. et al.</author> <title>High-Throughput Immunomagnetic Scavenging Technique for Quantitative Analysis of Live VX Nerve Agent in Water, Hamburger, and Soil Matrixes.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>10052–10057</page> <year>(2012).</year>
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<citation-number>46.</citation-number> <author>Azizi, A. et al.</author> <title>Viral Quantitative Capillary Electrophoresis for Counting and Quality Control of RNA Viruses.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>9585–9591</page> <year>(2012).</year>
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<citation-number>47.</citation-number> <author>Dénes, J. et al.</author> <title>Metabonomics of Newborn Screening Dried Blood Spot Samples: A Novel Approach in the Screening and Diagnostics of Inborn Errors of Metabolism.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>10113–10120</page> <year>(2012).</year>
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<citation-number>48.</citation-number> <author>Race, A. M., Steven, R. T., Palmer, A. D., Styles, I. B. & Bunch, J.</author> <title>Memory Efficient Principal Component Analysis for the Dimensionality Reduction of Large Mass Spectrometry Imaging Data Sets.</title> <container-title>Analytical Chemistry</container-title> <volume>85,</volume> <page>3071–3078</page> <year>(2013).</year>
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<citation-number>49.</citation-number> <author>Xia, L. & Dutta, D.</author> <title>A Microchip Device for Enhancing Capillary Zone Electrophoresis Using Pressure-Driven Backflow.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>10058–10063</page> <year>(2012).</year>
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<citation-number>50.</citation-number> <author>Frese, C. K. et al.</author> <title>Toward Full Peptide Sequence Coverage by Dual Fragmentation Combining Electron-Transfer and Higher-Energy Collision Dissociation Tandem Mass Spectrometry.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>9668–9673</page> <year>(2012).</year>
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<citation-number>51.</citation-number> <author>Tan, S. N. et al.</author> <title>Paper-Based Enzyme Immobilization for Flow Injection Electrochemical Biosensor Integrated with Reagent-Loaded Cartridge toward Portable Modular Device.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>10071–10076</page> <year>(2012).</year>
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<citation-number>52.</citation-number> <author>Zimmermann, R., Bartsch, S., Freudenberg, U. & Werner, C.</author> <title>Electrokinetic Analysis to Reveal Composition and Structure of Biohybrid Hydrogels.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>9592–9595</page> <year>(2012).</year>
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<citation-number>53.</citation-number> <author>Jafari, M. T., Saraji, M. & Sherafatmand, H.</author> <title>Design for Gas Chromatography–Corona Discharge–Ion Mobility Spectrometry.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>10077–10084</page> <year>(2012).</year>
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<citation-number>54.</citation-number> <author>Radtke, M., Reiche, I., Reinholz, U., Riesemeier, H. & Guerra, M. F.</author> <title>Beyond the Great Wall: Gold of the Silk Roads and the First Empire of the Steppes.</title> <container-title>Analytical Chemistry</container-title> <volume>85,</volume> <page>1650–1656</page> <year>(2013).</year>
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<citation-number>55.</citation-number> <author>Mabbott, S., Correa, E., Cowcher, D. P., Allwood, J. W. & Goodacre, R.</author> <title>Optimization of Parameters for the Quantitative Surface-Enhanced Raman Scattering Detection of Mephedrone Using a Fractional Factorial Design and a Portable Raman Spectrometer.</title> <container-title>Analytical Chemistry</container-title> <volume>85,</volume> <page>923–931</page> <year>(2012).</year>
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<citation-number>56.</citation-number> <author>Lu, H.-C. et al.</author> <title>Identification of Nitrogen Defects in Diamond with Photoluminescence Excited in the 160–240 nm Region.</title> <container-title>Analytical Chemistry</container-title> <volume>84,</volume> <page>9596–9600</page> <year>(2012).</year>
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