I. B and/or N-doped TiO2: Synthesis and Visible-light Catalysis II. Theoretical Study on C-Br Bond Scission of 2,4-Dibromopyridine on Cu(100)

碩士 === 國立成功大學 === 化學系碩博士班 === 101 === Hydrothermal treatments of titanium diboride or titanium nitride in nitric acid aqueous solutions have been performed to prepare heteroelement-doped titanium dioxide with anatase phase (containing elements B and N) or rutile phase (containing element N) respecti...

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Main Authors: Guan-HongLin, 林冠宏
Other Authors: Jong-Liang Lin
Format: Others
Language:zh-TW
Published: 2013
Online Access:http://ndltd.ncl.edu.tw/handle/88278515301422359598
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spelling ndltd-TW-101NCKU50650932015-10-13T22:51:44Z http://ndltd.ncl.edu.tw/handle/88278515301422359598 I. B and/or N-doped TiO2: Synthesis and Visible-light Catalysis II. Theoretical Study on C-Br Bond Scission of 2,4-Dibromopyridine on Cu(100) I. 摻雜硼或氮的二氧化鈦:製備及可見光催化 II. 2,4-二溴吡啶於銅(100)上斷裂碳-溴鍵的理論探討 Guan-HongLin 林冠宏 碩士 國立成功大學 化學系碩博士班 101 Hydrothermal treatments of titanium diboride or titanium nitride in nitric acid aqueous solutions have been performed to prepare heteroelement-doped titanium dioxide with anatase phase (containing elements B and N) or rutile phase (containing element N) respectively. Mixture of these two precursors give rise to mixed crystals, containing boron and nitrogen impurity and having the highest visible-light activity, including degradation of methylene blue and formation of hydroxyl radical in water. The computation based on density functional theory has been investigated for 2,4-dibromopyridine (2,4-DBP) / Cu(100) system to obtain the adsorption geometries, C-Br bond dissociation pathways, and related energetics. These results assist in understanding the chemical processes of 2,4-DBP on copper surfaces. Jong-Liang Lin 林榮良 2013 學位論文 ; thesis 100 zh-TW
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language zh-TW
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description 碩士 === 國立成功大學 === 化學系碩博士班 === 101 === Hydrothermal treatments of titanium diboride or titanium nitride in nitric acid aqueous solutions have been performed to prepare heteroelement-doped titanium dioxide with anatase phase (containing elements B and N) or rutile phase (containing element N) respectively. Mixture of these two precursors give rise to mixed crystals, containing boron and nitrogen impurity and having the highest visible-light activity, including degradation of methylene blue and formation of hydroxyl radical in water. The computation based on density functional theory has been investigated for 2,4-dibromopyridine (2,4-DBP) / Cu(100) system to obtain the adsorption geometries, C-Br bond dissociation pathways, and related energetics. These results assist in understanding the chemical processes of 2,4-DBP on copper surfaces.
author2 Jong-Liang Lin
author_facet Jong-Liang Lin
Guan-HongLin
林冠宏
author Guan-HongLin
林冠宏
spellingShingle Guan-HongLin
林冠宏
I. B and/or N-doped TiO2: Synthesis and Visible-light Catalysis II. Theoretical Study on C-Br Bond Scission of 2,4-Dibromopyridine on Cu(100)
author_sort Guan-HongLin
title I. B and/or N-doped TiO2: Synthesis and Visible-light Catalysis II. Theoretical Study on C-Br Bond Scission of 2,4-Dibromopyridine on Cu(100)
title_short I. B and/or N-doped TiO2: Synthesis and Visible-light Catalysis II. Theoretical Study on C-Br Bond Scission of 2,4-Dibromopyridine on Cu(100)
title_full I. B and/or N-doped TiO2: Synthesis and Visible-light Catalysis II. Theoretical Study on C-Br Bond Scission of 2,4-Dibromopyridine on Cu(100)
title_fullStr I. B and/or N-doped TiO2: Synthesis and Visible-light Catalysis II. Theoretical Study on C-Br Bond Scission of 2,4-Dibromopyridine on Cu(100)
title_full_unstemmed I. B and/or N-doped TiO2: Synthesis and Visible-light Catalysis II. Theoretical Study on C-Br Bond Scission of 2,4-Dibromopyridine on Cu(100)
title_sort i. b and/or n-doped tio2: synthesis and visible-light catalysis ii. theoretical study on c-br bond scission of 2,4-dibromopyridine on cu(100)
publishDate 2013
url http://ndltd.ncl.edu.tw/handle/88278515301422359598
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