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was given in the Supporting Information.[4] A flow diagram of the experimental setup was given in the new Fig. 1.[5] The CO adsorption experiments were performed in the same adsorption mode, by bubbling CO through a clean Pt surface in different days to achieve the same saturation coverage of CO. Initial experiments indicated that given the CO bubbling rate was cm3/min, CO can saturate on Pt after 3045 min. We bubble CO for 60 min to guarantee the same CO coverage. If we bubble CO for more time, or if we increase the CO flowing rate several times, the CO saturation coverage doesn’t change, indicating 60 min is already enough. A figure showing the CO uptake as a function of bubbling time was given in the Supporting Information.[6] The displacement of EtPy by CCl4 was confirmed by the removing of EtPy peaks. The mention of Fig. 7a and 7b etc. throughout the text were all corrected.[7] It is known that some solvents such as acetone can corrode the Viton oring. We saw the damage of oring after using highconcentration EtPy. A reference to the Viton oring information was given.[8] The observed reactivity trend is due to a bination of both effects, with the accumulation of organic moieties on Pt surface during numerous flushing cycles the more important reason. A few proper sentences were added to clarity this point. [9] The repeated arguments in the first paragraph in Section were deleted.[10] The toolong captions were significantly shortened. In all, I found the reviewer’s ments are quite helpful, and I revised my paper pointbypoint. Thank you and the review again for your help!==============================================結(jié)果:歡迎瀏覽: Organic Chemistry on Solid Surfaces (Review) Z. Ma, F. Zaera*, Surface Scence Reports 61 (2006) 229281. ScienceDirect TOP25 Hottest Articles in Chemistry CI修改稿回答審稿人意見范文模板 修改稿回答審稿人的意見(最重要的部分)List of ResponsesDear Editors and Reviewers:Thank you for your letter and for the reviewers’ m