999精品在线视频,手机成人午夜在线视频,久久不卡国产精品无码,中日无码在线观看,成人av手机在线观看,日韩精品亚洲一区中文字幕,亚洲av无码人妻,四虎国产在线观看 ?

Two?Dimensional Coordination Polymer[Tb(1,4?bdc)1.5(phen)(H2O)]n:Synthesis,Crystal Structure and Luminescent Detection of Fe3+

2022-03-16 13:27:24WANGZiWeiWUHaoDongMuhammadYaseenLIANGAiLinLIUHeNINGZiAngWANGShuaiWANGGangQUANWeiWANGHao
無機化學學報 2022年3期

WANG Zi-WeiWU Hao-DongMuhammad YaseenLIANG Ai-LinLIU He NING Zi-AngWANG ShuaiWANG GangQUAN WeiWANG Hao*,

(1Beijing Key Lab of Special Elastomer Composite Materials,College of New Materials and Chemical Engineering,Beijing Institute of Petrochemical Technology,Beijing 102617,China)

(2Institute of Chemical Sciences,University of Peshawar,Peshawar 25120,Pakistan)

Abstract:Two-dimensional coordination polymer of[Tb(1,4-bdc)1.5(phen)(H2O)]n(1)(1,4-H2bdc=terephthalic acid,phen=1,10-phenanthroline)was synthesized by solvothermal approach.Complex 1 was characterized by single-crystal X-ray diffraction,powder X-ray diffraction,FT-IR spectroscopy,elemental analysis,and fluorescence spectra.X-ray diffraction crystallographic analyses show that complex 1 crystallizes in the triclinic crystal system P1 space group;two adjacent Tb(Ⅲ) ions are bridged by—O—C—O—from four 1,4-bdc2-into a binuclear unit,and further bridged by 1,4-bdc2-into an infinite 2D layered structure.The fluorescence experiment proved that the complex 1 can detect Fe3+through the fluorescence quenching mechanism with Ksv=8.39×103L·mol-1and limit of detection of 0.017μmol·L-1.CCDC:2095406.

Keywords:coordination polymer;crystal structure;luminescence sensing

0 Introduction

The uncontrolled release of iron ions into air and water sources leading to several types of environmental pollutions are human health hazards[1-3].Therefore,it is important to develop a simple and efficient method for the detection of Fe3+.Among many reported sensing approaches,fluorescence sensing has received extensive attention attributed to its high sensitivity,low detection limit,and fast detection speed[4-5].Therefore,a fluorescence sensor can be developed to detect lowconcentration of Fe3+[6-9].

Coordination polymers(CPs)are fascinating materials that are both fundamentally important and technologically relevant[10-11]and have been extensively studied,not only because of their diverse structures,but also for their wide application prospects in the fields of molecular storage,luminescence,and magnetism[12-14].Currently,luminescent coordination polymers(LCPs)as fluorescent probes have become one of the research hotspots,which can effectively monitor the presence of iron ions based on the fluorescence quenching mechanism[15].

The application of the mixed ligands strategy has been proved an effective method to construct a variety of CPs[16-21].In this work,a new Tb3+CP with terephthalic acid(1,4-bdc)and 1,10-phenanthroline(phen),[Tb(1,4-bdc)1.5(phen)(H2O)]n(1),was synthesized and structurally determined using mixed ligands strategy.The resulting CP exhibited high luminescence sensing performance for Fe3+with a fluorescence quenching mechanism.

1 Experimental

1.1 Reagents and characterization

Terbium nitrate hexahydrate,1,10-phenanthroline,and terephthalic acid were of commercial grade and used without further purification.Powder X-ray diffraction(PXRD)patterns were recorded on a Rigaku D/Max-2500 diffractometer(Cu Kα,λ=0.154 06 nm,2θ=5°-50°,U=40 kV,I=40 mA),having a graphite monochromator.Simulation of the PXRD pattern was carried out by the single-crystal data and diffraction-crystal module of the Mercury program version 1.4.2.Elemental analyses for C,H,and N were performed on a Perkin-Elemer240C analyzer.FT-IR spectra of the powder samples were collected on a Nicolet IS10 infrared spectrum radiometer in a wavenumber range of 4 000-400 cm-1using the KBr pellets.The luminescence spectra and luminescence lifetimes properties were measured with the FS5 fluorescence spectrometer(Edinburgh Instruments).

1.2 Synthesis of the title complex

1,4-H2bdc(8 mg,0.05 mmol),Tb(NO3)3·6H2O(21 mg,0.05 mmol),phen(9 mg,0.05 mmol)and H2O/DMAC/EtOH(5 mL,1∶1∶1,V/V)were sealed in a clear glass vial(10 mL),heated at 95℃for 72 h,and then cooled slowly to room temperature.The colorless and sticklike crystals were obtained and washed with ethanol with a yield of 20%(based on Tb3+).Anal.Calcd.for C24H16N2O7Tb(%):C,47.77;H,2.65;N,4.64.Found(%):C,47.81;H,2.77;N,4.83.IR(KBr pellet,cm-1):2 819(w),2 671(w),2 545(w),1 678(s),1 396(s),1 390(s),1387(s),1286(s),1020(m),933(m),781(m),728(vs).

1.3 XRD structural determination

Diffraction data of 1 were collected on a Bruker D8 venture diffractometer with graphite-monochromator at 293(2)K with Mo Kα radiation(λ =0.071 073 nm).The crystal data was solved by direct methods using the SHELXS-2014 program and refined by fullmatrix least-squares methods on F2using the program SHELXL-2014.Metal atoms in the complex were located from the E-maps while non-hydrogen atoms were located in successive difference Fourier syntheses and refined with anisotropic thermal parameters on F2.Hydrogen atoms of the ligands were generated theoretically onto the specific atoms and refined with fixed thermal factors.The crystallographic data and experimental details for structural analyses are summarized in Table 1.Selected bond lengths for the complex are listed in Table 2.

Table 1 Crystallographic data and structural refinements of complex 1

Table 2 Selected bond lengths(nm)and bond angles(°)of 1

CCDC:2095406.

2 Results and discussion

2.1 Structural description of 1

X-ray single-crystal analysis reveals that complex 1 crystallizes in the triclinic space groupThe asym-metric unit of 1 is composed of one Tb3+ion,one and a half 1,4-bdc2-ligands,one phen ligand,and one coordinated water molecule.Tb3+ion is eight-coordinate and surrounded by five oxygen atoms from five 1,4-bdc2-,one oxygen atom from the water molecule,and two nitrogen atoms from one chelating phen molecule(Fig.1a).As expected,the average distance of Tb—O(0.255 6 nm)is shorter than that of Tb—N(0.257 4 nm).1,4-bdc2-adopt two kinds of coordination modes to bridge three Tb3+ions and four Tb3+ions(Fig.1b).Neighboring Tb3+ions are bridged by—O—C—O—links from four 1,4-bdc2-into a binuclear unit with Tb…Tb distance of 0.432 1 nm(Fig.1c).Such units are further bridged by 1,4-bdc2-into an infinite 2D plane(Fig.1d).

Fig.1 Crystal structure of complex 1:(a)coordination environment;(b)two kinds of coordination mode of 1,4-bdc2-;(c)binuclear unit;(d)2D plane where phen molecules are omitted for clarity

2.2 PXRD analysis and stability in organic solvents

The purity of the crystalline samples of 1 was confirmed by PXRD and the results shown in Fig.2a confirm that the PXRD pattern of the as-synthesized complex matched well with the simulated one based on the single-crystal diffraction data.To explore its stability in different solvents,crystal samples of 1 were immersed in several common organic solvents,which were ethylene glycol (EG), N-methyl-2-pyrrolidone (NMP),MeOH,EtOH,dimethyl sulfoxide(DMSO),N,N-dimethylformamide(DMF),N,N-dimethylacetamide(DMAC),N,N-diethylformamide(DEF),and CH2Cl2,for 24 h.As shown in Fig.2b,the peak positions of the sample after soaking in different organic solvents and experimental patterns were in good agreement with each other,proving that 1 has good stability in the above organic solvents.

Fig.2 (a)View of simulated and experimental PXRD patterns of 1;(b)PXRD patterns of 1 soaked in different solvents

2.3 Fluorescence spectra and sensing performance

2.3.1 Luminescent properties

The solid-state luminescence performance of 1 was studied at room temperature and the results are shown in Fig.3.As shown in Fig.3a,the luminescence spectrum of 1 showed a characteristic emission of Tb(Ⅲ)with an excitation wavelength of 310 nm.The emission peaks located at 489,544,585,613 nm are ascribed to the5D4→7Fj(j=6,5,4,3)transition of Tb3+.To better understand its luminescent properties,the luminescence lifetime was also studied.Under 310 nm excita-tion wavelength,the luminescence lifetime was studied by monitoring the most intense peak in the whole spectrum of 1(5D4→7F5).The observed luminescent lifetime determined from Fig.3b was 708μs.

Fig.3 (a)Emission spectra of 1 in solid-state;(b)Decay curve of 1 at room temperature

2.3.2 Sensing performance for metal ions

To investigate the sensing ability of different metal ions,the ground powder of complex 1(3 mg)was introduced into an ethanol solution(3 mL)of M(NO3)m(Mm+=Ni2+,Mn2+,Zn2+,K+,Cd2+,Ca2+,Mg2+,Fe3+,1 mmol·L-1).The resulting solution was homogenized under ultrasonication for 5 min,and then the fluorescence responses were recorded at room temperature(Fig.4a).The luminescence intensity at 544 nm showed a slight decrease with the addition of Ni2+,Mn2+,Zn2+,K+,Cd2+,Ca2+,and Mg2+.On the contrary,the addition of Fe3+prominently decreased the luminescence intensity(almost 0),indicating that complex 1 can selectively detect Fe3+by fluorescence“turn-off”,which also can even be observed by naked eyes(Fig.4b).

Fig.4 (a)Emission spectra of 1 in ethanol solutions with different metal ions;(b)Luminescence intensity at 544 nm of 1 in different ethanol solutions of various metal ions

To better understand the sensitivity to Fe3+ions of complex 1,a luminescence quantitative titration experiment was carried out.The luminescence intensity of complex 1 descended gradually with increasing the concentration of Fe3+ions(Fig.5).Quantitatively,the calculated value of Ksvwas 8.39 × 103L·mol-1using the Stern-Volmer equation at low concentration with a linear correlation coefficient value(R2)of 0.995[22-26](Fig.6).According to LOD=3σ/k[27-30],the calculated detection limit was 0.017 μmol·L-1.The limit of detection of compound 1 was much superior to those CPsbased sensor materials reported in the literature(Table 3).

Table 3 Comparison of sensing performance of compounds 1 for Fe3+ions with other reported CPs

Fig.6 Stern-Volmer plot of 1 in Fe3+solution with various concentrations

The PXRD patterns of 1 before and after the Fe3+treatment proved that the crystal structure of 1 remained stable(Fig.2b),so the luminescence quenching was not caused by the decomposition of the framework.We further obtained the UV-Vis spectra of all the identified metal ions(1 mmol·L-1in ethanol).In Fig.7,it can be seen that the absorption band of Fe3+was in 300-400 nm region,which overlaps with the excitation wavelength of 1(310 nm),indicating that there may be a competitive energy absorption progress.And other metal ions had negligible absorption on 310 nm.So,the quenching mechanism of 1 for Fe3+may be attributed to competitive energy absorption,which is a common quenching mechanism in CPs sensing for Fe3+[31-32].

Fig.7 UV-Vis spectra of different metal ions used for the detection experiments

Seven kinds of interference substances were used to selectively detect the identified iron ions.As shown in Fig.8,initially,with the addition of other metal ions,the fluorescence intensity of 1 showed a negligible change(left column).However,with the addition of Fe3+,the fluorescence intensity decreased rapidly(right column).The decrease in fluorescence intensity indicates that it can detect Fe3+ions even in the presence of other metal ions.

3 Conclusions

A 2D coordination polymer,[Tb(1,4-bdc)1.5(phen)(H2O)]n(1),was synthesized by the solvothermal method and the luminescent emission spectrum and luminescence lifetime were investigated.Compound 1 exhibited good sensitivity and selectivity for detecting Fe3+ions by fluorescence quenching mechanism with Ksv=8.39×103L·mol-1and limit of detection of 0.017 μmol·L-1.

主站蜘蛛池模板: 欧美成人二区| 亚洲品质国产精品无码| 精品久久国产综合精麻豆| 国产内射一区亚洲| 国产一级在线观看www色 | 米奇精品一区二区三区| 99这里只有精品6| 国产av色站网站| 国产精品久久久久久影院| jizz亚洲高清在线观看| 久久精品丝袜| 亚洲愉拍一区二区精品| 国产亚洲精品97AA片在线播放| 国产97视频在线| 久久人妻xunleige无码| 亚洲成人黄色在线| 欧美性精品不卡在线观看| 永久毛片在线播| AV天堂资源福利在线观看| 伊伊人成亚洲综合人网7777| 亚洲香蕉伊综合在人在线| 亚洲国产精品日韩欧美一区| 亚洲a级毛片| 国产美女视频黄a视频全免费网站| 日本手机在线视频| 亚洲AV成人一区国产精品| 91国内外精品自在线播放| 找国产毛片看| 夜精品a一区二区三区| 国产成人精品男人的天堂| 亚洲AV无码久久精品色欲| 全部毛片免费看| 青青青草国产| 国产一区二区免费播放| 午夜视频免费一区二区在线看| 热99re99首页精品亚洲五月天| 人人看人人鲁狠狠高清| 狠狠做深爱婷婷综合一区| 欧美亚洲综合免费精品高清在线观看 | 久久精品国产电影| 亚洲天堂精品在线| 99成人在线观看| 中文字幕人妻无码系列第三区| 国产天天射| 成人永久免费A∨一级在线播放| www.日韩三级| 国产三级视频网站| 亚洲精品日产精品乱码不卡| 国产SUV精品一区二区6| 国产精品va| 一级做a爰片久久免费| 爆乳熟妇一区二区三区| 日本免费新一区视频| 黄色片中文字幕| 精品色综合| 国产精品一区在线麻豆| 老色鬼欧美精品| 免费看黄片一区二区三区| 国产亚洲精品无码专| 国产成人无码播放| 成人字幕网视频在线观看| 久久综合色天堂av| 多人乱p欧美在线观看| 尤物精品国产福利网站| 人妻丰满熟妇αv无码| av一区二区三区在线观看| 欧美一级大片在线观看| 天天爽免费视频| 无码精油按摩潮喷在线播放 | 无码日韩视频| 日韩国产欧美精品在线| 中文字幕伦视频| 精品99在线观看| 国产美女人喷水在线观看| 99精品国产高清一区二区| 亚洲av日韩av制服丝袜| 亚洲无码熟妇人妻AV在线| 国产午夜一级淫片| 色网站在线视频| 亚洲另类国产欧美一区二区| 国产美女一级毛片| 成人国产一区二区三区|