紫精材料在外界刺激(如光、热、电)下会表现出灵敏的变色行为,在光学开关和分子传感识别中具有良好的潜在应用前景.通过一步反应合成了4-氟苯乙酮双取代紫精衍生物(VioF_(2)·2Cl).氟苯乙酮取代基的引入扩大了其共轭体系,起到稳定...紫精材料在外界刺激(如光、热、电)下会表现出灵敏的变色行为,在光学开关和分子传感识别中具有良好的潜在应用前景.通过一步反应合成了4-氟苯乙酮双取代紫精衍生物(VioF_(2)·2Cl).氟苯乙酮取代基的引入扩大了其共轭体系,起到稳定自由基的作用,使着色更稳定持久.VioF_(2)·2Cl在紫外(ultraviolet,UV)灯的照射下可以快速地从白色转变为浅黄色直至黄绿色,显示出了灵敏的光致变色行为.变色后晶体中的VioF_(2)^(2+)分子间具有更短的π···π^(*)作用距离,能够促进光致电子转移(photoinduced electron transfer,PET)过程的发生,并且起到稳定紫精阳离子自由基的作用,使其能够在氧气环境下持续变色3 d而不被氧化褪色.这种新型的紫精衍生物表现出了更为灵敏的光致变色性能及自由基着色稳定性,在光致变色材料领域具有良好的潜在应用可能.展开更多
为了提高槲皮素的生物利用度以改善其抗肿瘤等活性,本论文根据其体内基本传递特性,利用前药原理成功设计合成了3个新型槲皮素磺酸酯衍生物(1,3~4),所有化合物的结构均经IR,MS,元素分析和1 H NMR等确证。对目标产物进行溶解度测定,发现...为了提高槲皮素的生物利用度以改善其抗肿瘤等活性,本论文根据其体内基本传递特性,利用前药原理成功设计合成了3个新型槲皮素磺酸酯衍生物(1,3~4),所有化合物的结构均经IR,MS,元素分析和1 H NMR等确证。对目标产物进行溶解度测定,发现三种目标化合物的脂溶性与水溶性均有显著的提高。展开更多
3,5-di(2-pyrazinyl)-4-amino-1,2,4-triazole(II) was synthesized through hydrothermal reaction,and the crystal structure was determined by X-ray crystallography.Crystalline was assigned into triclinic system with space ...3,5-di(2-pyrazinyl)-4-amino-1,2,4-triazole(II) was synthesized through hydrothermal reaction,and the crystal structure was determined by X-ray crystallography.Crystalline was assigned into triclinic system with space group P-1,lattice parameters a=0.62527(2) nm,b=0.6807(2) nm,c=1.2792(4) nm,α=85.833(5)o,β=80.517(5)o,γ=72.405(5)°,V=0.5118(3) nm3,and Z=2.Intermolecular hydrogen bonds extend the molecules of compound(II) into a 2D supramolecular layer.CCDC:666956.展开更多
The new dithiocarbamate 4-vinylbenzyl 9H-carbazole-9-carbodithioate was synthesized and characterized by means of 1H NMR,elemental analysis,FT-IR,and X-ray crystallography.The crystal structure is of triclinic,space g...The new dithiocarbamate 4-vinylbenzyl 9H-carbazole-9-carbodithioate was synthesized and characterized by means of 1H NMR,elemental analysis,FT-IR,and X-ray crystallography.The crystal structure is of triclinic,space group Pī,with a=9.4301(19) nm,b=9.518(2) nm,c=10.541(2),α=83.909(16) °,β=77.279(13)°,γ=79.312(14) °,V=904.8(3) nm3,Z=2,F(000)=376,Dc=1.319 mg/ m3,final R1=0.0731,wR2=0.1615 for 10164 observed reflections with I> 2σ(I).The thermal stability of the title compound was also studied.The main released gas product of the thermal decomposition of the title compound were possibly nitrogen,carbon sulfide and hydrogen sulfide,and the final solid product was 14.5% carbon leavings.展开更多
文摘紫精材料在外界刺激(如光、热、电)下会表现出灵敏的变色行为,在光学开关和分子传感识别中具有良好的潜在应用前景.通过一步反应合成了4-氟苯乙酮双取代紫精衍生物(VioF_(2)·2Cl).氟苯乙酮取代基的引入扩大了其共轭体系,起到稳定自由基的作用,使着色更稳定持久.VioF_(2)·2Cl在紫外(ultraviolet,UV)灯的照射下可以快速地从白色转变为浅黄色直至黄绿色,显示出了灵敏的光致变色行为.变色后晶体中的VioF_(2)^(2+)分子间具有更短的π···π^(*)作用距离,能够促进光致电子转移(photoinduced electron transfer,PET)过程的发生,并且起到稳定紫精阳离子自由基的作用,使其能够在氧气环境下持续变色3 d而不被氧化褪色.这种新型的紫精衍生物表现出了更为灵敏的光致变色性能及自由基着色稳定性,在光致变色材料领域具有良好的潜在应用可能.
基金supported by the Key Scientific"Twelfth Five-Year"National Technology Support Program(2011BAE06B01-17)the Innovation Project of Shanghai Education Commission(12YZ078)+2 种基金the National Natural Science Foundation of China(21102092)the Leading Academic Discipline Project of Shanghai Normal University(DXL123)Shanghai Key Laboratory of Rare Earth Functional Materials,and Shanghai NormalUniversity(07dz22303)
文摘3,5-di(2-pyrazinyl)-4-amino-1,2,4-triazole(II) was synthesized through hydrothermal reaction,and the crystal structure was determined by X-ray crystallography.Crystalline was assigned into triclinic system with space group P-1,lattice parameters a=0.62527(2) nm,b=0.6807(2) nm,c=1.2792(4) nm,α=85.833(5)o,β=80.517(5)o,γ=72.405(5)°,V=0.5118(3) nm3,and Z=2.Intermolecular hydrogen bonds extend the molecules of compound(II) into a 2D supramolecular layer.CCDC:666956.
文摘The new dithiocarbamate 4-vinylbenzyl 9H-carbazole-9-carbodithioate was synthesized and characterized by means of 1H NMR,elemental analysis,FT-IR,and X-ray crystallography.The crystal structure is of triclinic,space group Pī,with a=9.4301(19) nm,b=9.518(2) nm,c=10.541(2),α=83.909(16) °,β=77.279(13)°,γ=79.312(14) °,V=904.8(3) nm3,Z=2,F(000)=376,Dc=1.319 mg/ m3,final R1=0.0731,wR2=0.1615 for 10164 observed reflections with I> 2σ(I).The thermal stability of the title compound was also studied.The main released gas product of the thermal decomposition of the title compound were possibly nitrogen,carbon sulfide and hydrogen sulfide,and the final solid product was 14.5% carbon leavings.