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Synthesis and Photoluminescence of a Novel Iridium Complex (BuPhOXD)_2Ir(acac) with Unit of 1, 3, 4-Oxadiazole 被引量:2
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作者 ZhongLianWU MeiXiangZHU +5 位作者 YuLIU JianLIU JianRenLI YuPingYANG QuanGAN WeiGuoZHU 《Chinese Chemical Letters》 SCIE CAS CSCD 2005年第2期241-244,共4页
A novel cyclometalated iridium complex with 1, 3, 4-oxadiazole moiety was synthesizedand characterized. Its UV and photoluminescent properties were studied. The strong UVabsorption intensity around 462 nm attributed t... A novel cyclometalated iridium complex with 1, 3, 4-oxadiazole moiety was synthesizedand characterized. Its UV and photoluminescent properties were studied. The strong UVabsorption intensity around 462 nm attributed to spin-forbidden triplet metal–ligand charge transferband and photoluminescence at 518 nm were observed. This indicated that achieved iridiumcomplex could be used as an efficient electrophosphorescent material. 展开更多
关键词 iridium complex 1 3 4-oxadiazole SYNTHESIS photoluminescence.
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Blue-green Phosporescent Iridium Complex with Terdentate Ligand 被引量:2
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作者 陈熳 王雪梅 +3 位作者 何禹亨 杨建 王松 童碧海 《Chinese Journal of Structural Chemistry》 SCIE CAS CSCD 2016年第1期114-118,共5页
An ionic iridium(Ⅲ) complex[Ir(F2dpyb)(bzdpp)2Cl][OTf]with 1,3-difluoro-4,6-di(2-pyridinyl) benzene(F2dpybH) terdentate ligand and benzyldiphenylphosphine(bzdpp)ligand was synthesized and characterized.Th... An ionic iridium(Ⅲ) complex[Ir(F2dpyb)(bzdpp)2Cl][OTf]with 1,3-difluoro-4,6-di(2-pyridinyl) benzene(F2dpybH) terdentate ligand and benzyldiphenylphosphine(bzdpp)ligand was synthesized and characterized.The structure of iridium complex was verified by single-crystal X-ray crystallography.It crystallizes in monoclinic,space group P21/n with a =14.3654(7),b = 23.0026(10),c = 15.7964(7) A°,β = 97.6029(11),V= 5173.9(4) A°3,Z = 4,F(000) =2552,Dc = 1.645 Mg/m^3,Mr = 1281.49 and μ = 0.071 mm^-1.The UV-vis absorption and phosphorescence of the complex were discussed.The complex was 'aggregation induced emission(AIE)' active.It exhibited no emission in CH2Cl2 solution but strong blue-green emission in solid state under ultraviolet light excitation.The complex emitted a strong phosphorescence centered at493 nm when doped in PMMA.Its lifetime is 0.755 μs and quantum yield is approximately 0.134. 展开更多
关键词 iridium complex aggregation induced emission(AIE) crystal structure phosphorescence
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Optoelectronic properties of new functionalized heteroleptic iridium complex
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作者 梁波 王磊 +1 位作者 张勇 曹镛 《Journal of Central South University》 SCIE EI CAS 2011年第1期63-67,共5页
A new functionalized heteroleptic iridium complex coordinated with 1-phenylisoquinoline (1-piq) and a functionalized fl-diketone (G1), Ir(1-piq)2G1, was synthesized and characterized by 1H-NMR, mass spectrometry... A new functionalized heteroleptic iridium complex coordinated with 1-phenylisoquinoline (1-piq) and a functionalized fl-diketone (G1), Ir(1-piq)2G1, was synthesized and characterized by 1H-NMR, mass spectrometry and elemental analysis. The larger conjugation of the replacement of acetylacetone (acac) by a functionalizedβ-diketonate ligand led to a significant decrease in the HOMO level toward vacuum level, while Ir(1-piq)2G1 and Ir(1-piq)2(acac) showed red phosphorescent emissions of about 620 nm in dichloromethane solution. The phosphorescent polymer light-emitting devices were achieved, with the complexes incorporated with polyfluorene (PFO) as a host polymer doped with 30% of 5-(4-biphenylyl)-2-(4-tert-butylphenyl)-1,3,4-oxadiazole (PBD) as electron transport material. The energy transfer mechanism of the devices was also discussed. The lower EL performance of Ir(1-piq)2G1 is ascribed to the inter-ligand energy transfer, indicating that it is important to control the energy level of the cyclometalated and ancillary ligands. 展开更多
关键词 iridium complex PHOSPHORESCENCE energy transfer ancillary ligands
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Novel Iridium Complex with Carbazol-2-yl-β-diketone Derivative:Low-energy Excitation and Red Electrophosphorescent Devices
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作者 LIU Jian CHEN Hong-bin LIU Sheng-gui 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2012年第4期572-576,共5页
A novel iridium-complex,(BPPBI) 2 Ir(2-TFDBC)[BPPBI=2-(biphenyl-4-yl)-1-phenyl-1H-benzo[d]imidazole,2-TFDBC=1-(9-ethyl-9H-carbazol-2-yl)-4,4,4-trifluorobutane-1,3-dione],was synthesized,and its structure and c... A novel iridium-complex,(BPPBI) 2 Ir(2-TFDBC)[BPPBI=2-(biphenyl-4-yl)-1-phenyl-1H-benzo[d]imidazole,2-TFDBC=1-(9-ethyl-9H-carbazol-2-yl)-4,4,4-trifluorobutane-1,3-dione],was synthesized,and its structure and component were confirmed by 1 H NMR and element analysis,respectively.UV-Vis absorption and photoluminescent(PL) spectra of(BPPBI) 2 Ir(2-TFDBC) in dichloromethane were investigated.The Ir-complex exhibited a long wavelength excitation of 470 nm,i.e.,low-energy excitation.So,it is a promising candidate for phosphorescent probe and PL material.(BPPBI) 2 Ir(2-TFDBC)-based electroluminescent devices,ITO/MoO 3(10 nm)/NPB(80 nm)/CBP:x(BPPBI) 2 Ir(2-TFDBC)(20 nm)/TPBi(45 nm)/LiF/Al,were fabricated,where x(%) was of 4% or 8% doping concentration(mass fraction);ITO=indium tin oxides;NBP=N,N'-bis-(1-naphthalenyl)-N,N'-bis-phenyl-(1,1'-biphenyl)4,4'-diamine,CBP=4,4'-bis(N-carbazolyl)-1,1'-biphenyl,TPBi=1,3,5-tris(1-phenyl-1H-benzimidazol-2-yl)benzene.The devices showed a red emission of 620 nm.The maximum current efficiency and brightness were 1.7 cd/A and 4063 cd/m 2 for a device of 8%(mass fraction) doping level,respectively.The moderate luminous efficiency was due to the inadequate energy transfer from the host material to the vip material. 展开更多
关键词 iridium complex Low-energy excitation Red electrophosphorescent device
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Geometric isomers of asymmetric rigid fourmembered chelating ring based deep-red-emitting iridium complexes featuring three charged(0,-1,-2)ligands
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作者 Ruoqi Zeng Nengquan Li +7 位作者 Feiyang Li Chao Shi Zhen Jiang Fuzheng Zhang Qiuxia Li Kaishun Ye Aihua Yuan Chuluo Yang 《Inorganic Chemistry Frontiers》 2023年第11期3263-3272,共10页
Geometric isomers are very important and interesting in the field of optical materials.In this work,we have designed and synthesized a new series of geometric isomers of iridium complexes featuring three charged(0,-1,... Geometric isomers are very important and interesting in the field of optical materials.In this work,we have designed and synthesized a new series of geometric isomers of iridium complexes featuring three charged(0,-1,-2)ligands,which contain a rigid asymmetric four-membered Ir-N-C-S chelating ring.The reaction of iridium complex precursors(2a and 2b)with an equal amount of the four-membered ring S^N ligand at a low temperature produces the kinetic isomers Ir1K and Ir2K,while a higher temperature leads to the formation of their corresponding thermodynamic isomers Ir1T and Ir2T.The X-ray diffraction analysis shows that the kinetic isomers exhibit a trans-S^N configuration,which is in contrast with the trans-N^N configuration of the thermodynamic isomers,and their coordination bond lengths,bond angles and packing patterns are also quite different.More importantly,all isomers showed efficient deepred emission(619-676 nm),and the thermodynamic isomers have shorter emission wavelengths,longer excited state lifetimes and higher luminescent efficiencies than their corresponding kinetic isomers.Theoretical calculations show that the four-membered ring S^N ligand in the thermodynamic isomers is more involved in the excited state than that in the kinetic isomers,and the^(3)MLCT effects are more pronounced in the thermodynamic isomers.Notably,OLED devices incorporating both thermodynamic and kinetic isomers(Ir2T and Ir2K)as emitting layers can achieve good maximum external quantum efficiencies(EQEs)(5.0%and 4.6%)peaking at 642 nm and 643 nm of the deep-red region with CIE coordinates(0.675,0.323)and(0.668,0.329),respectively,accompanied by a low turn-on voltage(3.0 V).This study provides an important strategy for the design of deep-red emitting geometric isomers of iridium complexes and their photoelectric applications. 展开更多
关键词 kinetic isomers charged ligands optical materialsin iridium complexes iridium complex precursors geometric isomers asymmetric four membered chelating ring
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Unraveling the marked differences of the phosphorescence efficiencies of blue-emitting iridium complexes with isomerized phenyltriazole ligands
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作者 Chongping Song Yanan Chen +2 位作者 Jiaqi Li Fei Zhao Houyu Zhang 《Inorganic Chemistry Frontiers》 2019年第10期2776-2787,共12页
Four structurally similar blue phosphorescent iridium complexes with isomerized phenyltriazole(ptz)ligands,[Ir(5-phenyl^(-1)H-1,2,4-triazole)_(3)](1),[Ir(3-phenyl-4H-1,2,4-triazole)_(3)](2),[Ir(4-phenyl^(-1)H-1,2,3-tr... Four structurally similar blue phosphorescent iridium complexes with isomerized phenyltriazole(ptz)ligands,[Ir(5-phenyl^(-1)H-1,2,4-triazole)_(3)](1),[Ir(3-phenyl-4H-1,2,4-triazole)_(3)](2),[Ir(4-phenyl^(-1)H-1,2,3-triazole)_(3)](3),and[Ir(2-phenyl-2H-1,2,3-triazole)_(3)](4),exhibit marked differences in their quantum efficiencies.In order to reveal the coordinating effect of these isomerized ptz ligands on the photophysical properties,density functional theory(DFT)and time-dependent DFT(TD-DFT)calculations were performed to investigate the geometrical and electronic structures,absorption and emission properties,and radiative and nonradiative process of iridium complexes.The calculated results show that the transition nature of an emissive T1 state can be assigned to the mixture of metal-to-ligand charge-transfer(3MLCT)and intraligand charge-transfer(3ILCT)states.The radiative decay rate constants are within the same order of magnitude,and thus the marked difference in the quantum efficiencies is ascribed to the different thermal deactivation pathways via the metal-centered(3MC)states and the nonradiative vibrational relaxation.This work establishes the structure-property relationship for complexes with different ptz isomer ligands,and provides a better understanding of the excited-state behavior of the ptzbased iridium complexes. 展开更多
关键词 isomerized ptz ligands iridium complexes phosphorescence quantum efficiency quantum efficienciesin structurally similar blue phosphorescent iridium complexes density functional theory isomerized phenyltriazole ptz ligands ir phenyl h triazole ir phenyl h triazole ir phenyl h triazole ir phenyl h triazole exhibit
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Folate-targeted iridium complexes amplify photodynamic therapy efficacy through ferroptosis
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作者 Xiangdong He Lai Wei +4 位作者 Jun Chen Shuwang Ge Martha Kandawa-Shultz Guoqiang Shao Yihong Wang 《Inorganic Chemistry Frontiers》 2023年第16期4780-4788,共9页
Interest in targeted cancer therapies with fewer side effects has increased in recent years.Photodynamic therapy(PDT)involves the use of photosensitizers(PSs)and light to selectively kill cancer cells,generating highl... Interest in targeted cancer therapies with fewer side effects has increased in recent years.Photodynamic therapy(PDT)involves the use of photosensitizers(PSs)and light to selectively kill cancer cells,generating highly reactive reactive oxygen species(ROS)that damage cellular components.Here,we synthesized a water-soluble iridium metal complex(Ir-PEG-Fn)with folate-targeting characteristics.PEG endowing the iridium complex with the ability to self-assemble into uniform nanoparticles enhances its permeability and retention effect in tumor cells.The elevation in singlet oxygen(^(1)O_(2))levels led to a reduction in the expression levels of glutathione(GSH)and glutathione peroxidase 4(GPX4),while concomitantly augmenting the levels of lipid peroxidase(LPO).These physiological responses effectively suppress tumor growth through the manifestation of ferroptosis events.The combination of ferroptosis and PDT has demonstrated excellent anti-cancer efficacy in tumor models in vivo and in vitro. 展开更多
关键词 Reactive oxygen species iridium metal complex ir peg fn Folate targeted targeted cancer therapies Photodynamic therapy Cancer therapy iridium complexes Ferroptosis
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Synthetic ease and exceptional in vivo performance of pyrazole-based cyclometallated iridium complexes
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作者 Marta Redrado Eduardo Romanos +4 位作者 Andrea Benedi Guillermo Canudo-Barreras Isabel Marzo M.Concepción Gimeno Vanesa Fernández-Moreira 《Inorganic Chemistry Frontiers》 2024年第6期1828-1838,共11页
Two luminescent cyclometallated IrIII complexes of the type[Ir(C^N)_(2)(N^N)]^(x)(X=0(1),and X=+1(2))were prepared using methyl 2-phenylquinoline-4-carboxylate as C^N ligands and either a deprotonated or protonated 3-... Two luminescent cyclometallated IrIII complexes of the type[Ir(C^N)_(2)(N^N)]^(x)(X=0(1),and X=+1(2))were prepared using methyl 2-phenylquinoline-4-carboxylate as C^N ligands and either a deprotonated or protonated 3-(2-pyridyl)pyrazole as the N^N chelate.The synthesis followed a well-established and straightforward procedure.Photophysical analysis unveiled their remarkable properties,featuring phosphorescent red and orange emissions attributed to^(3)MLCT and^(3)LLCT transitions,with high emissive quantum yields in degassed DMSO solutions.Importantly,these complexes exhibited dual functionality as potent chemotherapeutic agents and photosensitisers,with their effectiveness tailored to specific cancer cell lines.Phototherapeutic treatment was particularly effective against lung cancer A549 cells,while a chemotherapeutic approach yielded superior results against breast cancer 4T1-luc2 cells.Both complexes primarily targeted lysosomes,leading to cell death through apoptotic pathways,with IC_(50)values in the nanomolar range.Importantly,they demonstrated no cytotoxicity against lymphocytes,mimicking the behaviour observed in healthy cells.Encouragingly,1 and 2 exhibited minimal in vivo toxicity.The most striking finding was the exceptional chemotherapeutic efficacy of complexes 1 and 2 against 4T1-luc2 cells in BALB/c mice.These complexes surpassed the performance of the clinically employed 5-fluorouracil,especially at early tumor stages,significantly retarding 4T1-luc2 proliferation.Further investigations at vascularised and organised tumor stages revealed that complex 1 could reduce tumor size by half compared to untreated mice,which was also confirmed through tumoral weight analysis.While these findings are preliminary,the outstanding performance of these complexes at early tumor stages against breast cancer 4T1-luc2 in vivo,their selective therapeutic feasibility(chemotherapy vs.PDT)tailored to specific cancerous cell lines,and their straightforward synthetic design make them highly attractive candidates for cancer treatment. 展开更多
关键词 iridium complexes synthetic chemotherapeutic agents c n ligands luminescent photophysical properties emissive quantum yie pyrazole
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Photodegradation of carbonic anhydrase by iridium complexes for induction of immunogenic cell death under hypoxia
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作者 Yu-Yi Ling Ya-Jie Kong +3 位作者 Liang Hao Zheng-Yin Pan Zong-Wan Mao Cai-Ping Tan 《Inorganic Chemistry Frontiers》 2023年第11期3284-3292,共9页
Carbonic anhydrase is an important cancer molecular target and plays important roles in cancer immune functions and maintenance of microenvironments.Herein,three Ir_((III))photosensitizers(Ir1-Ir_(3))targeting carboni... Carbonic anhydrase is an important cancer molecular target and plays important roles in cancer immune functions and maintenance of microenvironments.Herein,three Ir_((III))photosensitizers(Ir1-Ir_(3))targeting carbonic anhydrase IX(CAIX)were designed.Ir1-Ir_(3)exhibit potent antiproliferative activities in colon cancer cells upon irradiation with visible light(425 nm).The most active complex Ir_(3)can photodegrade CAIX under hypoxia,which downregulates the expression of hypoxic inducible factor-1(HIF-1α)and vascular endothelial growth factor(VEGF)to improve cancer immune microenvironments.Ir_(3)can induce pyroptosis of cancer cells through lipid peroxidation,which causes immunogenic cell death(ICD)under hypoxia.In all,we present a new design strategy for small molecules that can improve tumor microenvironments and induce ICD by targeted protein photodegradation,which may bring innovation in the design of novel photoimmunotherapeutic agents. 展开更多
关键词 iridium complexes cancer molecular target colon cancer cells antiproliferative activities photodegradation maintenance microenvironmentshereinthree carbonic anhydrase cancer immune functions
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Modulating the peripheral large steric hindrance of iridium complexes for achieving narrowband emission and pure red OLEDs with an EQE up to 32.0%
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作者 Changjin Ou Yu-Chen Qiu +5 位作者 Chenhui Cao Hui Zhang Juan Qin Zhen-Long Tu Jian Shi Zheng-Guang Wu 《Inorganic Chemistry Frontiers》 2023年第3期1018-1026,共9页
Iridium(Ir)(Ⅲ)complexes with sufficient luminous efficiency and narrow full width at half maxima(FWHM)are required urgently for realizing organic light-emitting diodes(OLEDs)simultaneously with high electroluminescen... Iridium(Ir)(Ⅲ)complexes with sufficient luminous efficiency and narrow full width at half maxima(FWHM)are required urgently for realizing organic light-emitting diodes(OLEDs)simultaneously with high electroluminescence efficiency and good color purity.In this work,three novel main ligands incorporating the peripheral large steric hindrance units and rigid structures for efficiently suppressing the intermolecular stacking effect. 展开更多
关键词 main ligands electroluminescence efficiency iridium complexes rigid structures large steric hindrance units steric hindrance color purity suppressing intermolecular stacking effect
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Impacts of ancillary ligand coordination modes on red-emitting cyclometalated iridium complexes
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作者 Chenggang Jiang Thomas S.Teets 《Inorganic Chemistry Frontiers》 2024年第5期1501-1510,共10页
Cyclometalated iridium complexes are widely used in optoelectronic technologies,but creating efficient red emitters remains challenging.Prior investigations have demonstrated the efficiency of electron-rich salicylald... Cyclometalated iridium complexes are widely used in optoelectronic technologies,but creating efficient red emitters remains challenging.Prior investigations have demonstrated the efficiency of electron-rich salicylaldimine and 2-picolinamide ligands in promoting red to deep red luminescence.This work introduces a series of ten new red or deep-red emitting heteroleptic bis-cyclometalated iridium(Ⅲ)complexes supported by eight different ancillary ligands,including some from the salicylaldimine and 2-picolinamide families.Our study reveals that the effectiveness of salicylaldimine ligands at supporting efficient red phosphorescence is dependent on the cyclometalating ligand they are paired with.A more significant finding is that the 2-picolinamide ligands can adopt three different coordination modes.Firstly,the N-propyl-substituted 2-picolinamide proligand can bind to the iridium center in its neutral,protonated form through the pyridyl N and amide O atoms,forming five-membered metallacycles.Furthermore,N-aryl-substituted ligands can coordinate with the iridium center in either N,N’or N(pyridyl),O modes,yielding two structurally distinct isomers.Notably,the change in coordination mode minimally influences emission wavelength while significantly modulating the photoluminescence quantum yield.This study advances our comprehension of how ligand coordination impacts cyclometalated iridium complexes,offering invaluable insights into the design of high-performance red phosphors for potential optoelectronic applications. 展开更多
关键词 ancillary ligandsincluding red emitters photoluminescence quantum yield optoelectronic technologiesbut cyclometalated iridium complexes red emitting phosphors coordination modes ancillary ligand coordination modes
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Encapsulation of an iridium complex in a metal-organic framework to give a composite with efficient white light emission
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作者 Wei Xie Jun-Sheng Qin +5 位作者 Wen-Wen He Kui-Zhan Shao Zhong-Min Su Dong-Ying Du Shun-Li Li Ya-Qian Lan 《Inorganic Chemistry Frontiers》 2017年第3期547-552,共6页
We successfully synthesized a novel anionic luminescent metal-organic framework(MOF)(NENU-524)with a lonsdaleite topology.NENU-524 contains a trigonal prismatic unit{Zn_(8)(btca)_(6)(2-NH_(2)-bdc)_(3)}that can be rega... We successfully synthesized a novel anionic luminescent metal-organic framework(MOF)(NENU-524)with a lonsdaleite topology.NENU-524 contains a trigonal prismatic unit{Zn_(8)(btca)_(6)(2-NH_(2)-bdc)_(3)}that can be regarded as a double secondary building unit with an unusual triply bound triangular frustum geometry.The prepared NENU-524 had a permanent porosity and excellent stability in air.NENU-524 was used as a platform to encapsulate yellow-emitting[Ir(ppy)_(2)(bpy)]^(+)cations in the nanotube channels of the blue-emitting MOF via an ion-exchange process.The[Ir(ppy)_(2)(bpy)]^(+)@NENU-524 MOF([Ir(ppy)_(2)(bpy)]^(+)concentration 3.86 wt%)emitted a pure white light with CIE coordinates of(0.300,0.336)and a high quantum yield of up to 15.2%.The white light-emitting diodes assembled using[Ir(ppy)_(2)(bpy)]^(+)@NENU-524 as a white phosphor emitted a bright white light,suggesting that the composite is a promising material for use in lighting.The assembled white light-emitting diodes continued to emit a bright white light for up to one month.This simple and feasible approach could be used to develop luminescent luminophor@MOFs composites for practical applications. 展开更多
关键词 encapsulation trigonal prismatic unit zn btca nh bdc lonsdaleite topologynenu iridium complex nanotube channels triply bound triangular frustum geometrythe white light emission metal organic framework
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Improved deep-red phosphorescence in cyclometalated iridium complexes via ancillary ligand modification
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作者 Evanta Kabir Yanyu Wu +2 位作者 Steven Sittel Boi-Lien Nguyen Thomas S.Teets 《Inorganic Chemistry Frontiers》 2020年第6期1362-1373,共12页
In this work,we describe bis-cyclometalated iridium complexes with efficient deep-red luminescence.Two different cyclometalating(C^N)ligands-1-phenylisoquinoline(piq)and 2-(2-pyridyl)benzothiophene(btp)-are used with ... In this work,we describe bis-cyclometalated iridium complexes with efficient deep-red luminescence.Two different cyclometalating(C^N)ligands-1-phenylisoquinoline(piq)and 2-(2-pyridyl)benzothiophene(btp)-are used with five strongπ-donating ancillary ligands(L^X)to furnish a suite of nine new complexes with the general formula Ir(C^N)_(2)(L^X).Improvements in deep-red photoluminescence quantum yields were accomplished by the incorporation of sterically encumbering substituents onto the ancillary ligand,which can enhance the radiative rate constant(k_(r))and/or reduce the non-radiative rate constant(k_(nr)).Five of the complexes were characterized by X-ray crystallography,and all of them were investigated by in-depth spectroscopic and electrochemical measurements. 展开更多
关键词 photoluminescence quantum yields radiative rate constant sterically encumbering substituents cyclometalated iridium complexes ancillary ligand modification suite nine new complexes deep red phosphorescence ancillary ligandwhich
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Efficient electroluminescence of bluish green iridium complexes with 2-(3,5-bis(trifluoromethyl)phenyl)pyrimidine and 2-(3,5-bis(trifluoromethyl)phenyl)-5-fluoropyrimidine as the main ligands
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作者 Hua-Bo Han Zheng-Guang Wu You-Xuan Zheng 《Inorganic Chemistry Frontiers》 2018年第7期1545-1552,共8页
We thoroughly investigated four iridium(III)complexes(Ir(tfmphpm)_(2)(acac),Ir(f-tfmphpm)_(2)(acac),Ir(tfmphpm)_(2)(tpip),and Ir(f-tfmphpm)_(2)(tpip))using 2-(3,5-bis(trifluoromethyl)phenyl)pyrimidine(tfmphpm)and 2-(3... We thoroughly investigated four iridium(III)complexes(Ir(tfmphpm)_(2)(acac),Ir(f-tfmphpm)_(2)(acac),Ir(tfmphpm)_(2)(tpip),and Ir(f-tfmphpm)_(2)(tpip))using 2-(3,5-bis(trifluoromethyl)phenyl)pyrimidine(tfmphpm)and 2-(3,5-bis(trifluoromethyl)phenyl)-5-fluoropyrimidine(f-tfmphpm)as the main ligands and 2,4-pentanedionate(acac)and tetraphenylimidodiphosphinate(tpip)as the ancillary ligands.All complexes showed bluish green emissions peaking at 473–480 nm with very high photoluminescence quantum efficiencies in the range of 85–95%. 展开更多
关键词 ancillary ligandsall bluish green emissions electroluminescence bis trifluoromethyl phenyl fluoropyrimidine bis trifluoromethyl phenyl pyrimidine photoluminescence quantum efficiencies iridium iii complexes
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Hydrogenation of CO_(2) to formate catalyzed by N⁃heterocyclic carbene⁃nitrogen⁃phosphine chelated iridium(Ⅰ)complexes
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作者 GONG Huihua CUI Tianhua +6 位作者 JI Li ZHANG Jichuan ZHANG Liyuan CHEN Yan WANG Zhenye XU Jiaqi LI Ruixiang 《无机化学学报》 北大核心 2025年第12期2609-2620,共12页
To achieve efficient catalytic hydrogenation of CO_(2)to formate,we employed a transmetallation strategy to develop three novel iridium(Ⅰ)complexes,which feature N‑heterocyclic carbene‑nitrogen‑phosphine ligands(CNP)... To achieve efficient catalytic hydrogenation of CO_(2)to formate,we employed a transmetallation strategy to develop three novel iridium(Ⅰ)complexes,which feature N‑heterocyclic carbene‑nitrogen‑phosphine ligands(CNP)and a 1,5‑cyclooctadiene(cod)molecule:[Ir(cod)(κ^(3)‑CN^(im)P)]Cl(1⁃Cl),[Ir(cod)(κ^(3)‑CN^(im)P)]PF6(1⁃PF_(6)),and[Ir(cod)(κ^(3)‑CNHP)]Cl(2).The^(1)H NMR spectra,^(31)P NMR spectra,and high‑resolution mass spectra verify the successful synthesis of these three Ir(Ⅰ)‑CNP complexes.Furthermore,single‑crystal X‑ray diffraction analysis confirms the coordination geometry of 1⁃PF_(6).The strong Ir—C(NHC)bond suggests that the carbene carbon plays an enhanced anchoring role to iridium due to its strongσ‑donating ability,which helps stabilize the active metal species during CO_(2)hydrogenation.As a result,the Ir(Ⅰ)‑CNP complex exhibits remarkable activity and long catalytic lifetime for the hydrogenation of CO_(2)to formate,reaching a turnover number(TON)of 1.16×10^(6)after 150 h at a high temperature of 170℃,which was a relatively high value among all the Ir complexes.CCDC:2384071,1⁃PF_(6). 展开更多
关键词 CO_(2)hydrogenation iridium complex CNP ligands homogeneous catalysis
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B-embedded narrowband pure near-infrared(NIR)phosphorescent iridium(Ⅲ)complexes and solution-processed OLED application
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作者 Fuzheng Zhang Chao Shi +7 位作者 Jiale Li Fulin Jia Xinyu Liu Feiyang Li Xinyu Bai Qiuxia Li Aihua Yuan Guohua Xie 《Chinese Chemical Letters》 2025年第1期623-626,共4页
Pure near-infrared(NIR)phosphorescent materials with emission peak larger than 700 nm are of great significance for the development of optoelectronics and biomedicine.We have designed and synthesized two new B-embedde... Pure near-infrared(NIR)phosphorescent materials with emission peak larger than 700 nm are of great significance for the development of optoelectronics and biomedicine.We have designed and synthesized two new B-embedded pure near-infrared(NIR)-emitting iridium complexes(Ir(Bpiq)2acac and Ir(Bpiq)2dpm)with peaks greater than 720 nm.More importantly,they exhibit very narrow phosphorescent emission with full width at half maximum(FWHM)of only about 50 nm(0.12 e V),resulting in a high NIR content(>90%)in their spectrum.In view of better optical property and solubility,the complex Ir(Bpiq)_(2)dpm was used as the emitting layer of a solution-processed OLED device,and achieved good maximum external quantum efficiency(EQE)(2.8%)peaking at 728 nm.This research provides an important strategy for the design of narrowband NIR-emitting phosphorescent iridium complexes and their optoelectronic applications. 展开更多
关键词 iridium complex B-embedded NEAR-INFRARED OLED PHOSPHORESCENCE
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Synthesis,Structure and Properties of Green-emitting Iridium(Ⅲ)Complexes
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作者 XU Haipeng LI Xiangguang +4 位作者 NIE Zhifeng YANG Lihang CHANG Qiaowen YAN Caixian JIANG Wen 《Journal of Wuhan University of Technology(Materials Science)》 2025年第3期836-841,共6页
Green-emitting iridium(Ⅲ)complexes were synthesised using chlorobridged dimer(ppy)_(2)Ir_(2)Cl_(2)(ppy)_(2),3-hydroxy-2-methyl-γ-pyranone,2-ethyl-3-hydroxy-4-pyranone,and 5-hydroxy-2-(hydroxymethyl)-1,4-pyranone as ... Green-emitting iridium(Ⅲ)complexes were synthesised using chlorobridged dimer(ppy)_(2)Ir_(2)Cl_(2)(ppy)_(2),3-hydroxy-2-methyl-γ-pyranone,2-ethyl-3-hydroxy-4-pyranone,and 5-hydroxy-2-(hydroxymethyl)-1,4-pyranone as the auxiliary ligand.The structure of the target product was characterised by nuclear magnetic resonance spectroscopy(~1H-NMR),infrared spectroscopy(IR)and mass spectrometry(MS),and its thermal stability,photophysical properties and electrochemical properties were investigated.The results show that the decomposition temperatures of Ir1,Ir2 and Ir3 are 349,292 and 200℃,respectively.The maximum emission wavelength of Ir1,Ir2 and Ir3 dissolved in dichloromethane is 491 nm.The HOMO energy level of Ir1,Ir2 and Ir3 are 5.39,-5.38,and-5.30 eV.The LUMO energy levels are-2.86,-2.85,and-2.80 eV,respectively. 展开更多
关键词 pyranone iridium phosphorescent complex photophysical properties electrochemical properties
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Phosphorescent Cationic Iridium(Ⅲ) Complexes with 1,3,4-Oxadiazole Cyclometalating Ligands: Solvent-Dependent Excited-State Dynamics
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作者 匡卓然 王娴 +4 位作者 王振 何桂营 郭前进 何磊 夏安东 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2017年第3期259-267,I0001,共10页
To elucidate the nature of low-lying triplet states and the effect of ligand modifica- tions on the excited-state properties of functional cationic iridium complexes, the solvent- dependent excited-state dynamics of t... To elucidate the nature of low-lying triplet states and the effect of ligand modifica- tions on the excited-state properties of functional cationic iridium complexes, the solvent- dependent excited-state dynamics of two phosphorescent cationic iridium(Ⅲ) complexes, namely [Ir(dph-oxd)2(bpy)]PF6 (1) and [Ir(dph-oxd)2(pzpy)]Pf6 (2), were investigated by femtosecond and nanosecond transient absorption spectroscopy. Upon photoexcitation to the metal-to-ligand charge-transfer (MLCT) states, the excited-state dynamics shows a rapid process (τ-=0.7-3 ps) for the formation of solvent stabilized 3MLCT states, which significantly depends on the solvent polarity for both 1 and 2. Sequentially, a relatively slow process assigned to the vibrational cooling/geometrical relaxation and a long-lived phospho- rescent emissive state is identified. Due to the different excited-state electronic structures regulated by ancillary ligands, the solvation-induced stabilization of the 3MLCT state in 1 is faster than that in 2. The present results provide a better sight of excited-state relaxation dynamics of ligand-related iridium(Ⅲ) complexes and solvation effects on triplet manifolds. 展开更多
关键词 iridium complex PHOSPHORESCENCE Metal-to-ligand charge transfer Transientabsorption SOLVATION
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Microwave Assisted Synthesis of a New Triplet Iridium(Ⅲ) Pyrazine Complex 被引量:1
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作者 吴秋华 王传红 +1 位作者 宋溪明 张国林 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2010年第3期355-357,I0002,共4页
A new cyclometalated iridium(IlI) complex Ir(DPP)3 (DPP=2,3-diphenylpyrazine) was prepared by reaction of DPP with iridium trichloride hydrate under microwave irradiation. The structure of the complex was confir... A new cyclometalated iridium(IlI) complex Ir(DPP)3 (DPP=2,3-diphenylpyrazine) was prepared by reaction of DPP with iridium trichloride hydrate under microwave irradiation. The structure of the complex was confirmed by elemental analysis, ^1H NMR, and mass spectroscopy. The UV-Vis absorption and photoluminescent properties of the complex were investigated. The complex shows strong ^1MLCT (singlet metal to ligand charge-transfer) and aMLCT (triplet metal to ligand charge-transfer) absorption at 382 and 504 nm, respectively. The complex also shows strong photoluminescence at 573 nm at room temperature. These results suggest the complex to be a promising phosphorescent material. 展开更多
关键词 Microwave-assisted synthesis Phosphorescent material iridium pyrazine complex TRIPLET
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Synthesis and optophysical properties of blue-emitting iridium (Ⅲ) complex bearing oxadiazole-based picolinic acid derivative 被引量:2
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作者 文忠林 胡峥勇 +4 位作者 刘煜 肖方亮 马小云 朱美香 朱卫国 《Journal of Central South University》 SCIE EI CAS 2009年第3期380-384,共5页
An iridium (Ⅲ) bis[(4,6-difluorophenyl)pyridinato-N, C^2][6-(6'-(4"-( 5"-phenyl- 1", 3", 4"-oxadiazole-2"-yl) phenoxy) hexyloxy picolinate) was synthesized and characterized by IH NMR and elementary ... An iridium (Ⅲ) bis[(4,6-difluorophenyl)pyridinato-N, C^2][6-(6'-(4"-( 5"-phenyl- 1", 3", 4"-oxadiazole-2"-yl) phenoxy) hexyloxy picolinate) was synthesized and characterized by IH NMR and elementary analysis in order to study the effect of ancillary ligand of the oxadiazole-based picolinic acid derivative on optophysical properties of its iridium complex, and further to obtain an iridium complex with highly-efficient blue emission. The thermal stability, UV absorption and photoluminescent properties of this iridium complex were investigated. Compared with iridium (Ⅲ) bis[(4,6-difluorophenyl)pyridinato-N, C^2](picolinate) reported as a highly-efficient blue electroluminescent material, this iridium complex bearing an oxadiazole-based picolinic acid derivative presents higher thermal stability, more intense UV absorption at 291 nm and similar photoluminescent spectrum peaked at 469 nm. This indicates that tuning ancillary ligand of picolinic acid with an oxadiazole unit can improve the optophysical properties of its iridium complex. 展开更多
关键词 iridium complex 1 3 4-oxadiazole SYNTHESIS optophysical properties
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