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    <title>Electrochemical Society Letters: Electrochemical/Chemical Deposition and Etching - Current Issue</title>
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    <description>Electrochemical Society Letters: Electrochemical/Chemical Deposition and Etching - Current Issue</description>
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    <title>Rapid Galvanostatic Determination on Levelers for Superfilling in Cu Electroplating</title>
    <link>http://link.aip.org/link/?ESL/13/D7/1&amp;agg=rss</link>
    <description>Ho-Cheng Tsai, Yu-Chen Chang, and Pu-Wei Wu&lt;br/&gt;  4-Amino-2,1,3-benzothiadiazole and 6-aminobenzo-thiazole were studied as potential levelers for Cu plating in submicrometer trenches. We conducted galvanostatic measurements on rotating disk electrodes at various concentrations and recorded their respective voltages at 200 and 430  rpm. A profile of ... [Electrochem. Solid-State Lett. 13, D7 (2009)] published Fri Nov 20, 2009.</description>
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    <title>Room-Temperature Synthesis of Cobalt Nanoparticles by Electroless Deposition in Aqueous Solution</title>
    <link>http://link.aip.org/link/?ESL/13/D4/1&amp;agg=rss</link>
    <description>Mary Donnabelle L. Balela, Shunsuke Yagi, and Eiichiro Matsubara&lt;br/&gt;  Metallic Co nanoparticles of 24110 nm diameters are prepared by electroless deposition (chemical reduction) in an aqueous solution at room temperature. The reduction process is monitored by an in situ measurement of a mixed potential. The mixed potential, which is above the redox potential of a Co(I ... [Electrochem. Solid-State Lett. 13, D4 (2009)] published Wed Nov 18, 2009.</description>
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    <title>Enhancement of Light Output Power in InGaN/GaN LEDs with Nanoroughed Hemispherical Indium Tin Oxide Transparent Ohmic Contacts</title>
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    <description>Ji Hye Kang, Hyung Gu Kim, Jae Hyoung Ryu, Hyun Kyu Kim, Hee Yun Kim et al.&lt;br/&gt;  The light output power of light emitting diodes (LEDs) has been enhanced using nanoroughed hemispherical indium tin oxide (ITO) transparent ohmic contacts. The hemispherical shape is easily achieved by evaporating ITO film on an ITO nanosphere, and the aspect ratio of an individual hemispherical ITO ... [Electrochem. Solid-State Lett. 13, D1 (2009)] published Thu Nov 12, 2009.</description>
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