Syntheses and Characterization of Metal Strings and Cluster Complexes with the Modified Asymmetrical Ligands

碩士 === 國立臺灣大學 === 化學研究所 === 99 === The aim of this research is to investigate the synthesis, structure, and properties of the pentanickel metal string complexes and the tetranuclear cluster which the ligands are 2-pyridylamino-7-acetylamino- 1,8-naphthyridine (H2pan) and 2-(5-phenylpyridyl) -amino-7...

Full description

Bibliographic Details
Main Authors: Pin-Ren Dai, 戴品仁
Other Authors: Shie-Ming Peng
Format: Others
Language:zh-TW
Published: 2011
Online Access:http://ndltd.ncl.edu.tw/handle/84771841084655958471
id ndltd-TW-099NTU05065018
record_format oai_dc
spelling ndltd-TW-099NTU050650182015-10-16T04:02:49Z http://ndltd.ncl.edu.tw/handle/84771841084655958471 Syntheses and Characterization of Metal Strings and Cluster Complexes with the Modified Asymmetrical Ligands 修飾不對稱吡啶萘啶二胺配基及其鎳金屬串與金屬簇之合成與研究 Pin-Ren Dai 戴品仁 碩士 國立臺灣大學 化學研究所 99 The aim of this research is to investigate the synthesis, structure, and properties of the pentanickel metal string complexes and the tetranuclear cluster which the ligands are 2-pyridylamino-7-acetylamino- 1,8-naphthyridine (H2pan) and 2-(5-phenylpyridyl) -amino-7-acetylamino-1,8-naphthyridine(H2ppan). The novel asymmetrical ligands were synthesized by palladium-catalyzed reaction which was proposed by S. L. Buchwald27, and the product was characterized by NMR and FAB-MS. First of all, we reacted these ligands with Ni(OAc)2.4H2O at high temperature of melt naphthalene, we successfully obtained two novel pentanickel metal string compounds, [Ni5(pan)4(OAc)2] and [Ni5(ppan)4Cl2]. The X-ray structure studies of [Ni5(pan)4(OAc)2] reveals the crystal system is triclinic and the space group is P-1. In the structure of [Ni5(pan)4(OAc)2], the terminal nickel ions (Ni5, Ni4) are octahedral. In the metal string, the outer nickel ions (Ni1, Ni3) are square pyramidal and the central nickel ion (Ni2) is square planar. The axial ligand is acetate ion. There are two forms for ligands binding: one uses the nitrogen atom from amide group to bind terminal nickel ions, and another uses oxygen atom from amide to connect with two outer nickel ions as a bridge. Compared to traditional metal string, the middle part of this complex is similar to trinickel string complexes. The average metal distance from inside to outside is 2.414 and 3.30 A. Through the bond length of Ni-N, we know that Ni(2) is LS, and other Nickel ions are HS. The magnetic properties shows that the pentanickel complex [Ni5(pan)4(OAc)2] is antiferromagnetic. The μeff value for [Ni5(pan)4(OAc)2] is 5.16 B.M at 300K. The CV of [Ni5(pan)4(OAc)2] complex show one reversible reduction at -0.78 V. The structure of [Ni5(ppan)4Cl2] is monoclinic, and the space group is P21/c. The major structure is similar to that of [Ni5(pan)4(OAc)2]. The main difference is that the outer nickel ions are square pyramidal. The magnetic properties show that the pentanickel complex [Ni5(ppan)4Cl2] is antiferromagnetic. The μeff for [Ni5(ppan)4Cl2] is 5.01 B.M at 300 K. The CV of [Ni5(ppan)4Cl2], one reversible reduction at -0.70 V for [Ni5(ppan)4Cl2]. Eventually, we study the coordination chemistry by using H2pan ligand to react separately with cobalt, copper and zinc ions to get tetranuclear clusters; among this, copper and zinc metal clusters all formed [2×2] structure. We also study its structure and magnetic properties. Shie-Ming Peng 彭旭明 2011 學位論文 ; thesis 103 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 國立臺灣大學 === 化學研究所 === 99 === The aim of this research is to investigate the synthesis, structure, and properties of the pentanickel metal string complexes and the tetranuclear cluster which the ligands are 2-pyridylamino-7-acetylamino- 1,8-naphthyridine (H2pan) and 2-(5-phenylpyridyl) -amino-7-acetylamino-1,8-naphthyridine(H2ppan). The novel asymmetrical ligands were synthesized by palladium-catalyzed reaction which was proposed by S. L. Buchwald27, and the product was characterized by NMR and FAB-MS. First of all, we reacted these ligands with Ni(OAc)2.4H2O at high temperature of melt naphthalene, we successfully obtained two novel pentanickel metal string compounds, [Ni5(pan)4(OAc)2] and [Ni5(ppan)4Cl2]. The X-ray structure studies of [Ni5(pan)4(OAc)2] reveals the crystal system is triclinic and the space group is P-1. In the structure of [Ni5(pan)4(OAc)2], the terminal nickel ions (Ni5, Ni4) are octahedral. In the metal string, the outer nickel ions (Ni1, Ni3) are square pyramidal and the central nickel ion (Ni2) is square planar. The axial ligand is acetate ion. There are two forms for ligands binding: one uses the nitrogen atom from amide group to bind terminal nickel ions, and another uses oxygen atom from amide to connect with two outer nickel ions as a bridge. Compared to traditional metal string, the middle part of this complex is similar to trinickel string complexes. The average metal distance from inside to outside is 2.414 and 3.30 A. Through the bond length of Ni-N, we know that Ni(2) is LS, and other Nickel ions are HS. The magnetic properties shows that the pentanickel complex [Ni5(pan)4(OAc)2] is antiferromagnetic. The μeff value for [Ni5(pan)4(OAc)2] is 5.16 B.M at 300K. The CV of [Ni5(pan)4(OAc)2] complex show one reversible reduction at -0.78 V. The structure of [Ni5(ppan)4Cl2] is monoclinic, and the space group is P21/c. The major structure is similar to that of [Ni5(pan)4(OAc)2]. The main difference is that the outer nickel ions are square pyramidal. The magnetic properties show that the pentanickel complex [Ni5(ppan)4Cl2] is antiferromagnetic. The μeff for [Ni5(ppan)4Cl2] is 5.01 B.M at 300 K. The CV of [Ni5(ppan)4Cl2], one reversible reduction at -0.70 V for [Ni5(ppan)4Cl2]. Eventually, we study the coordination chemistry by using H2pan ligand to react separately with cobalt, copper and zinc ions to get tetranuclear clusters; among this, copper and zinc metal clusters all formed [2×2] structure. We also study its structure and magnetic properties.
author2 Shie-Ming Peng
author_facet Shie-Ming Peng
Pin-Ren Dai
戴品仁
author Pin-Ren Dai
戴品仁
spellingShingle Pin-Ren Dai
戴品仁
Syntheses and Characterization of Metal Strings and Cluster Complexes with the Modified Asymmetrical Ligands
author_sort Pin-Ren Dai
title Syntheses and Characterization of Metal Strings and Cluster Complexes with the Modified Asymmetrical Ligands
title_short Syntheses and Characterization of Metal Strings and Cluster Complexes with the Modified Asymmetrical Ligands
title_full Syntheses and Characterization of Metal Strings and Cluster Complexes with the Modified Asymmetrical Ligands
title_fullStr Syntheses and Characterization of Metal Strings and Cluster Complexes with the Modified Asymmetrical Ligands
title_full_unstemmed Syntheses and Characterization of Metal Strings and Cluster Complexes with the Modified Asymmetrical Ligands
title_sort syntheses and characterization of metal strings and cluster complexes with the modified asymmetrical ligands
publishDate 2011
url http://ndltd.ncl.edu.tw/handle/84771841084655958471
work_keys_str_mv AT pinrendai synthesesandcharacterizationofmetalstringsandclustercomplexeswiththemodifiedasymmetricalligands
AT dàipǐnrén synthesesandcharacterizationofmetalstringsandclustercomplexeswiththemodifiedasymmetricalligands
AT pinrendai xiūshìbùduìchēngbǐdìngnàidìngèrànpèijījíqínièjīnshǔchuànyǔjīnshǔcùzhīhéchéngyǔyánjiū
AT dàipǐnrén xiūshìbùduìchēngbǐdìngnàidìngèrànpèijījíqínièjīnshǔchuànyǔjīnshǔcùzhīhéchéngyǔyánjiū
_version_ 1718091085297745920