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Surface chemistry / Mass spectrometry / Hydrogen storage / X-ray photoelectron spectroscopy / Hydride / Potassium hydride / Time-of-flight mass spectrometry / Hydrogen / Electrolytic cell / Chemistry / Metal hydrides / Spectroscopy


Document Date: 2012-02-27 15:00:42


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New York / Pittsburgh / Solon / Rockford / Cranbury / /

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Wall Street Journal / Ametek Inc. / Academic Press Inc. / Swagelok Co. / Wiley & Sons / Electrochemical Systems / Engelhard / BlackLight Power Inc. / Perkin-Elmer Corp. / J. Alloy Comp. / Galbraith Laboratories / A-1 Wire Tech Inc. / /

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United States / /

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pence / /

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IndustryTerm

energy trend / higher energy density / electrolyte solution / mobile energy / low binding energy region / natural gas / nickel metal hydride battery / fuel cell technology / hydrogen gas / ionization energy / aqueous solution / eV binding energy region / metal hydride storage / energy / eV binding energy / high binding energy / metal / higher binding energy / electricity / step energy / metal hydrides / concentrated electrolytic solution / high binding energy hydride ions / chemical structure / battery technology / 69Ga+ liquid metal source / chemical environments / /

Organization

US Department of Commerce / US Office / National Technical Information Service / /

Person

Ion Mass Spectroscopy / Randell L. Mills / G. E. Mullenberg / Raman Characteristic / /

Position

Model D200MP / Editor / clear front-runner / Scientist / chair / Representative / /

Product

Mg 2s / Mg 2p / MG 3 / Mg KL23L23 / /

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DC / /

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New Jersey / Minnesota / Illinois / New York / Pennsylvania / /

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New Scientist / The Wall Street Journal / /

Technology

X-ray / promising battery technology / Fuel cells / fuel cell / fuel cell technology / electrolytic cell / spectroscopy / battery technology / determined using X-ray photoelectron spectroscopy / /

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