tailieunhanh - Báo cáo hóa học: " Adsorption behavior of Eu(III) on partially Fe(III)- or Ti(IV)-coated silica"

Tuyển tập các báo cáo nghiên cứu về hóa học được đăng trên tạp chí hóa hoc quốc tế đề tài : Adsorption behavior of Eu(III) on partially Fe(III)- or Ti(IV)-coated silica | Nanoscale Research Letters SpringerOpen0 This Provisional PDF corresponds to the article as it appeared upon acceptance. Fully formatted PDF and full text HTML versions will be made available soon. Adsorption behavior of Eu III on partially Fe III - or Ti IV -coated silica Nanoscale Research Letters 2012 7 51 doi 1556-276X-7-51 Hee-Jung Im imhj@ Kyoung Kyun Park nkkpark@ Euo Chang Jung ecjung@ ISSN 1556-276X Article type Nano Commentary Submission date 10 September 2011 Acceptance date 5 January 2012 Publication date 5 January 2012 Article URL http content 7 1 51 This peer-reviewed article was published immediately upon acceptance. It can be downloaded printed and distributed freely for any purposes see copyright notice below . Articles in Nanoscale Research Letters are listed in PubMed and archived at PubMed Central. For information about publishing your research in Nanoscale Research Letters go to http authors instructions For information about other SpringerOpen publications go to http 2012 Im etal. licensee Springer. This is an open access article distributed under the terms of the Creative Commons Attribution License http licenses by which permits unrestricted use distribution and reproduction in any medium provided the original work is properly cited. Adsorption behavior of Eu III on partially Fe III - or Ti IV -coated silica Hee-Jung Im 1 Kyoung Kyun Park1 and Euo Chang Jung1 Nuclear Chemistry Research Division Korea Atomic Energy Research Institute 150 Deokjin-dong Yuseong-gu Daejeon 305-353 Republic of Korea Corresponding author imhj@ Email addresses H-JI imhj@ KKP nkkpark@ ECJ ecjung@ Abstract The adsorption behavior of Eu III onto silica surface which was partially coated with Fe III or Ti IV was investigated to determine Fe III or Ti IV effects on the surface reaction of .

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