The laser ablation-molecular beam(LA-MB) method is useful for studying the reactions of metal ions with molecular clusters. Reactions of magnesium plasma with methanol clusters were studied by using this method. A s...The laser ablation-molecular beam(LA-MB) method is useful for studying the reactions of metal ions with molecular clusters. Reactions of magnesium plasma with methanol clusters were studied by using this method. A specially designed reaction cell was used as a fast flow reactor operated under thermal conditions, and the reaction products were measured with a time-of-flight(TOF) mass spectrometer. Surprisingly, several series of cluster ions with complex sizes and intensity distributions were obtained when the laser ablating was applied to different parts of the molecular beam. In the front part of the molecular beam, strong Mg^+ (CH3OH)n( n = 0-5) and weak H^+ (CH3OH)n( n = 0-5 ) cluster ions were observed with relatively small cluster sizes ; in the middle part of the molecular beam, the main cluster ions were H^+ ( CH3OH)n ( n = 6-17 ) and H^+( H2O) 2 ( CH3OH)n( n = 6-17 ) with a relatively large cluster size and a weak intensity; in the back part of the molecular beam, two new series of cluster ions, MgO^+ ( H2O) ( CH3 OH)n( n = 6-10 ) and MgOCH3^+ ( CH3OH)n( n = 6-10), were obtained and accompanied by weak H^+(CH3OH)n(n = 4-7) and H^+( H2O)2 (CH3OH)n( n = 3-6). The formation mechanisms and speed characteristics of the cluster ions are discussed in this article.展开更多
The Ugi four-component reaction (U-4CR) was utilized to prepare divalent and trivalent cluster mannosides. Thus, two target compounds 6 and 8 were obtained efficiently using carboxymethyl 2, 3, 4, 6-tetra-O-acetyl--D-...The Ugi four-component reaction (U-4CR) was utilized to prepare divalent and trivalent cluster mannosides. Thus, two target compounds 6 and 8 were obtained efficiently using carboxymethyl 2, 3, 4, 6-tetra-O-acetyl--D-mannopyranoside 4 as acid component, and 1, 6-hexanediamine or tris(2-aminoethyl)amine as the multivalent scaffolds.展开更多
The sulfides of transitional metals chromium[1-3] and iron[4] are of great importance inmaterial and biology sciences due to their characteristic structures and properties.So the studyon the properties of Cr-S and F...The sulfides of transitional metals chromium[1-3] and iron[4] are of great importance inmaterial and biology sciences due to their characteristic structures and properties.So the studyon the properties of Cr-S and Fe-S clusters will give many contributions to the understandingof physical and chemical behavior of those compounds.展开更多
We have studied the reaction mechanism of CO oxidation on the Cu13 cluster via density functional theory. There are two main reaction pathways to be considered: Eley-Rideal(ER) and Langmuir-Hinshelwood(LH) mechan...We have studied the reaction mechanism of CO oxidation on the Cu13 cluster via density functional theory. There are two main reaction pathways to be considered: Eley-Rideal(ER) and Langmuir-Hinshelwood(LH) mechanisms, respectively. According to these two main reaction mechanisms, we have obtained five reaction pathways for the first CO oxidation(denoted as RER1,RER2, RLH1, RLH2 and RLH3, respectively): RER1 is COgas + O2(ads) → O(ads) + CO2(gas); RER2 is COgas + O2(ads) → CO3(ads) → O(ads) + CO2(gas); RLH1 refers to CO(ads) + O2(ads) → O(ads) + CO2(gas); RLH2 refers to CO(ads) + O2(ads) → OOCO(ads) → O(ads) + CO2(gas) and RLH3 refers to O2(ads) + CO(ads)→ O(ads) + O(ads) + CO(ads) → O(ads) + CO2(gas). These pathways have low energy barriers and are strongly exothermic, suggesting the Cu13 cluster is very favorable catalyst for the first CO oxidation. However, there are higher energy barriers of 99. 8 and 45.4 kJ/mol in the process of producing and decomposing intermediates along the RLH2 and RER2, indicating that RER1, RLH1 and RLH3 are superior pathways with lower energy barriers, especially the RER1 channel. Thereafter, the second CO is more prone to react with the remaining oxygen atom on Cu13 along the ER channel in comparison with the LH pathway, in which the moderate barrier is 70.0 kJ/mol and it is exothermic by 59.6 kJ/mol. Furthermore, the interaction between the absorbate and cluster is analyzed by electronic analysis to gain insights into high activity of the copper cluster.展开更多
The hydrothermal reaction of 5-methoxyisophthalic acid(MeO-H2ip), 1,3-bis(2-methylimidazol-1-yl)propane(bmip) and Zn(NO3)2·6H2O in the presence of NaOCH3 gave rise to a three-dimensional(3-D) metal-orga...The hydrothermal reaction of 5-methoxyisophthalic acid(MeO-H2ip), 1,3-bis(2-methylimidazol-1-yl)propane(bmip) and Zn(NO3)2·6H2O in the presence of NaOCH3 gave rise to a three-dimensional(3-D) metal-organic framework containing octanuclear Zn(II) units, [Zn4(MeO-ip)3(OH)2(bmip)]n. Single-crystal X-ray diffraction analysis reveals that the complex crystallizes in the triclinic space group P1 with a = 11.348(3), b = 14.163(4), c = 15.088(4) , α = 108.537(2), β = 106.542(2), γ = 103.106(1)o, V = 2065.4(9) -3, Z = 2, Mr = 334.62, Dc = 1.740 g·cm-(-3), μ = 2.375 mm-(-1), S = 1.015, F(000) = 1096, the final R = 0.0272 and w R = 0.0715 for 8929 observed reflections(I 〉 2σ(I)). The complex is thermally stable up to 370 oC, and exhibits photoluminescent emission at 450 nm on 350 nm excitation.展开更多
The breakup reaction of ~9Li on a Pb target has been measured at 32.7 MeV/nucleon for the first time. Two peaks of ~6He+t coincident fragments at 9.8 and 12.5 MeV were observed and agreed with the results of the gener...The breakup reaction of ~9Li on a Pb target has been measured at 32.7 MeV/nucleon for the first time. Two peaks of ~6He+t coincident fragments at 9.8 and 12.5 MeV were observed and agreed with the results of the generator coordinate method calculation. The experiment was carried out thanks to a specially arranged detection system around zero degrees at the Heavy Ion Research Facility in Lanzhou, Radioactive Ion Beam Line in Lanzhou(HIRFL–RIBLL).展开更多
Hexanuclear ruthenium cluster compound Ru<sub>6</sub>C (CO)<sub>17</sub> has interesting activity in the gase-phase. The ion-molecular reaction of Ru<sub>6</sub>C (CO)<sub>...Hexanuclear ruthenium cluster compound Ru<sub>6</sub>C (CO)<sub>17</sub> has interesting activity in the gase-phase. The ion-molecular reaction of Ru<sub>6</sub>C (CO)<sub>17</sub> with triphcnylphosphine was investigated by EI-MS. The experimental results showed that Ru<sub>6</sub>C (CO)<sub>17</sub> could undergo the ligand substitution by PPh<sub>2</sub> or PPh<sub>3</sub> to initially yield monosubstituted product [Ru<sub>6</sub>C(CO)<sub>16</sub>PPh<sub>2</sub>]<sup>+</sup> or [Ru<sub>6</sub>C (CO)<sub>16</sub>PPh<sub>3</sub>]<sup>+</sup>.展开更多
A new cluster {Mo3S4[NH2CH2CH(O)CH2NH2]3}(DTP)?(H2O)2?(DMF) (DTP = diethyldithiophosphate) has been synthesized via ligand substitution reaction of Mo3S4(DTP)4(H2O) with an alkaline ligand 1,3-diamino-2-propanol(DAPRO...A new cluster {Mo3S4[NH2CH2CH(O)CH2NH2]3}(DTP)?(H2O)2?(DMF) (DTP = diethyldithiophosphate) has been synthesized via ligand substitution reaction of Mo3S4(DTP)4(H2O) with an alkaline ligand 1,3-diamino-2-propanol(DAPROH) in a mixed organic solvent, and its crys- tal structure was determined with the following data: Mo3S6PC16H48O8N7, Mr = 977.76, triclinic, space group P1, Z = 2, a = 10.319(2), b = 12.843(3), c = 15.335(3) ?, α = 65.26(3), β = 82.18(3), γ = 70.67(3)o, V = 1741.7(6) ?3, Dc = 1.864 g/cm3, μ = 1.517 mm-1, F(000) = 988, the final R = 0.0794 and wR = 0.2111 for 6318 observed reflections (I>2σ(I)). The structure analysis indicates that all DTP ligands of Mo3S4(DTP)4(H2O) are replaced and each DAPRO molecule acts as a tri- dentate ligand chelating to each Mo atom of the Mo3S4 core. Different from the precursor, the clus- ter symmetry is elevated to C3. In addition, the UV-spectrum of the title compound was measured.展开更多
基金Supported by the Doctoral Startup Foundation from Qufu Normal University.
文摘The laser ablation-molecular beam(LA-MB) method is useful for studying the reactions of metal ions with molecular clusters. Reactions of magnesium plasma with methanol clusters were studied by using this method. A specially designed reaction cell was used as a fast flow reactor operated under thermal conditions, and the reaction products were measured with a time-of-flight(TOF) mass spectrometer. Surprisingly, several series of cluster ions with complex sizes and intensity distributions were obtained when the laser ablating was applied to different parts of the molecular beam. In the front part of the molecular beam, strong Mg^+ (CH3OH)n( n = 0-5) and weak H^+ (CH3OH)n( n = 0-5 ) cluster ions were observed with relatively small cluster sizes ; in the middle part of the molecular beam, the main cluster ions were H^+ ( CH3OH)n ( n = 6-17 ) and H^+( H2O) 2 ( CH3OH)n( n = 6-17 ) with a relatively large cluster size and a weak intensity; in the back part of the molecular beam, two new series of cluster ions, MgO^+ ( H2O) ( CH3 OH)n( n = 6-10 ) and MgOCH3^+ ( CH3OH)n( n = 6-10), were obtained and accompanied by weak H^+(CH3OH)n(n = 4-7) and H^+( H2O)2 (CH3OH)n( n = 3-6). The formation mechanisms and speed characteristics of the cluster ions are discussed in this article.
文摘The Ugi four-component reaction (U-4CR) was utilized to prepare divalent and trivalent cluster mannosides. Thus, two target compounds 6 and 8 were obtained efficiently using carboxymethyl 2, 3, 4, 6-tetra-O-acetyl--D-mannopyranoside 4 as acid component, and 1, 6-hexanediamine or tris(2-aminoethyl)amine as the multivalent scaffolds.
文摘The sulfides of transitional metals chromium[1-3] and iron[4] are of great importance inmaterial and biology sciences due to their characteristic structures and properties.So the studyon the properties of Cr-S and Fe-S clusters will give many contributions to the understandingof physical and chemical behavior of those compounds.
基金supported by the National Natural Science Foundation of China(Nos.51574090 and 21773030)Natural Science Foundation of Fujian Province(2017J01409)
文摘We have studied the reaction mechanism of CO oxidation on the Cu13 cluster via density functional theory. There are two main reaction pathways to be considered: Eley-Rideal(ER) and Langmuir-Hinshelwood(LH) mechanisms, respectively. According to these two main reaction mechanisms, we have obtained five reaction pathways for the first CO oxidation(denoted as RER1,RER2, RLH1, RLH2 and RLH3, respectively): RER1 is COgas + O2(ads) → O(ads) + CO2(gas); RER2 is COgas + O2(ads) → CO3(ads) → O(ads) + CO2(gas); RLH1 refers to CO(ads) + O2(ads) → O(ads) + CO2(gas); RLH2 refers to CO(ads) + O2(ads) → OOCO(ads) → O(ads) + CO2(gas) and RLH3 refers to O2(ads) + CO(ads)→ O(ads) + O(ads) + CO(ads) → O(ads) + CO2(gas). These pathways have low energy barriers and are strongly exothermic, suggesting the Cu13 cluster is very favorable catalyst for the first CO oxidation. However, there are higher energy barriers of 99. 8 and 45.4 kJ/mol in the process of producing and decomposing intermediates along the RLH2 and RER2, indicating that RER1, RLH1 and RLH3 are superior pathways with lower energy barriers, especially the RER1 channel. Thereafter, the second CO is more prone to react with the remaining oxygen atom on Cu13 along the ER channel in comparison with the LH pathway, in which the moderate barrier is 70.0 kJ/mol and it is exothermic by 59.6 kJ/mol. Furthermore, the interaction between the absorbate and cluster is analyzed by electronic analysis to gain insights into high activity of the copper cluster.
基金supported by the Natural Science Foundation of Fujian Province(2015J01038)Provincial Education Department of Fujian(JA12070)State Key Laboratory of Structural Chemistry(20150015)
文摘The hydrothermal reaction of 5-methoxyisophthalic acid(MeO-H2ip), 1,3-bis(2-methylimidazol-1-yl)propane(bmip) and Zn(NO3)2·6H2O in the presence of NaOCH3 gave rise to a three-dimensional(3-D) metal-organic framework containing octanuclear Zn(II) units, [Zn4(MeO-ip)3(OH)2(bmip)]n. Single-crystal X-ray diffraction analysis reveals that the complex crystallizes in the triclinic space group P1 with a = 11.348(3), b = 14.163(4), c = 15.088(4) , α = 108.537(2), β = 106.542(2), γ = 103.106(1)o, V = 2065.4(9) -3, Z = 2, Mr = 334.62, Dc = 1.740 g·cm-(-3), μ = 2.375 mm-(-1), S = 1.015, F(000) = 1096, the final R = 0.0272 and w R = 0.0715 for 8929 observed reflections(I 〉 2σ(I)). The complex is thermally stable up to 370 oC, and exhibits photoluminescent emission at 450 nm on 350 nm excitation.
基金supported by the National Natural Science Foundation of China(Nos.U1432247 and 11575256)the National Basic Research Program of China(973 Program)(Nos.2014CB845405 and2013CB83440x)
文摘The breakup reaction of ~9Li on a Pb target has been measured at 32.7 MeV/nucleon for the first time. Two peaks of ~6He+t coincident fragments at 9.8 and 12.5 MeV were observed and agreed with the results of the generator coordinate method calculation. The experiment was carried out thanks to a specially arranged detection system around zero degrees at the Heavy Ion Research Facility in Lanzhou, Radioactive Ion Beam Line in Lanzhou(HIRFL–RIBLL).
基金This work was supported by Fujian Natural Science Found
文摘Hexanuclear ruthenium cluster compound Ru<sub>6</sub>C (CO)<sub>17</sub> has interesting activity in the gase-phase. The ion-molecular reaction of Ru<sub>6</sub>C (CO)<sub>17</sub> with triphcnylphosphine was investigated by EI-MS. The experimental results showed that Ru<sub>6</sub>C (CO)<sub>17</sub> could undergo the ligand substitution by PPh<sub>2</sub> or PPh<sub>3</sub> to initially yield monosubstituted product [Ru<sub>6</sub>C(CO)<sub>16</sub>PPh<sub>2</sub>]<sup>+</sup> or [Ru<sub>6</sub>C (CO)<sub>16</sub>PPh<sub>3</sub>]<sup>+</sup>.
基金This work was supported by the State Key Basic Research and Development Plan of China (001CB108906)the NNSF of China (20173063) NSF of Fujian Province (E0020001)
文摘A new cluster {Mo3S4[NH2CH2CH(O)CH2NH2]3}(DTP)?(H2O)2?(DMF) (DTP = diethyldithiophosphate) has been synthesized via ligand substitution reaction of Mo3S4(DTP)4(H2O) with an alkaline ligand 1,3-diamino-2-propanol(DAPROH) in a mixed organic solvent, and its crys- tal structure was determined with the following data: Mo3S6PC16H48O8N7, Mr = 977.76, triclinic, space group P1, Z = 2, a = 10.319(2), b = 12.843(3), c = 15.335(3) ?, α = 65.26(3), β = 82.18(3), γ = 70.67(3)o, V = 1741.7(6) ?3, Dc = 1.864 g/cm3, μ = 1.517 mm-1, F(000) = 988, the final R = 0.0794 and wR = 0.2111 for 6318 observed reflections (I>2σ(I)). The structure analysis indicates that all DTP ligands of Mo3S4(DTP)4(H2O) are replaced and each DAPRO molecule acts as a tri- dentate ligand chelating to each Mo atom of the Mo3S4 core. Different from the precursor, the clus- ter symmetry is elevated to C3. In addition, the UV-spectrum of the title compound was measured.