CN104610301A - Naphthaline bis-triazole m-phthalic acid zinc complex serving as potential fluorescent material and preparation method of naphthaline bis-triazole m-phthalic acid zinc complex - Google Patents

Naphthaline bis-triazole m-phthalic acid zinc complex serving as potential fluorescent material and preparation method of naphthaline bis-triazole m-phthalic acid zinc complex Download PDF

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CN104610301A
CN104610301A CN201510088166.8A CN201510088166A CN104610301A CN 104610301 A CN104610301 A CN 104610301A CN 201510088166 A CN201510088166 A CN 201510088166A CN 104610301 A CN104610301 A CN 104610301A
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triazole
phthalic acid
ipa
naphthalene
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CN104610301B (en
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王英
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Tianjin Normal University
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    • C07F3/00Compounds containing elements of Groups 2 or 12 of the Periodic Table
    • C07F3/06Zinc compounds
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    • C09K11/00Luminescent, e.g. electroluminescent, chemiluminescent materials
    • C09K11/06Luminescent, e.g. electroluminescent, chemiluminescent materials containing organic luminescent materials
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    • C07BGENERAL METHODS OF ORGANIC CHEMISTRY; APPARATUS THEREFOR
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    • C09K2211/00Chemical nature of organic luminescent or tenebrescent compounds
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Abstract

The invention discloses a naphthaline bis-triazole m-phthalic acid zinc complex serving as a potential fluorescent material and a preparation method of the naphthaline bis-triazole m-phthalic acid zinc complex. A structure motif of the naphthaline bis-triazole m-phthalic acid zinc complex {[Zn(L)(ipa)].1.5H2O} (1) is as shown in a graph 1. Meanwhile, the invention further discloses a preparation method of {[Zn(L)(ipa)].1.5H2O} (1) (L=1-[7-(1H-1,2,4-triazole-1-yl) naphthaline-2-yl]-1H-1,2,4-triazole, ipa= m-phthalic acid). According to a solvothermal method, Zn(NO3)2.6H2O, ipa, L, DMF and water react under a hydrothermal condition at 90 DEG C for three days and then the reaction product is cooled to a room temperature so as to obtain brown rodlike crystals suitable for X-ray single crystal diffraction. The invention further discloses an application of the naphthaline bis-triazole m-phthalic acid zinc complex as a potential fluorescent material.

Description

Two triazole m-phthalic acid Zn complex of naphthalene with potential fluorescent material and preparation method thereof
The present invention obtains state natural sciences fund general project (21471113), young top-notch personnel's support plan, Tianjin Education Commission general project (20140506), Tianjin Normal University Middl-age and youth faculty Academic innovations advance planning item (52XC1401), the subsidy of Tianjin State Scientific and Technological Commission general project (11JCYBJC03600) and Tianjin innovation team of institution of higher education training plan (TD12-5038).
Technical field
The invention belongs to organic and Inorganic synthese technical field, relate to and state two triazole m-phthalic acid Zn complex { [Zn (L) (the ipa)] 1.5H of naphthalene 2o} ( 1) (L=1-[7-(1H-1,2,4-triazole-1-base) naphthalene-2-base)-1H-1,2,4-triazole, ipa=m-phthalic acid) preparation method and application as potential fluorescent material.
Background technology
1,2,4-triazole and derivative thereof have the coordination feature of pyrazoles and imidazoles concurrently, are the bridgingligands that coordination ability is stronger, have synthesized at present and have characterized a large amount of monokaryons, multinuclear and multidimensional compound.These parts can with 1, nitrogen-atoms on 2 and metallic ion coordination form N1, N2-bridging pattern, for 4 unsubstituted 1,2,4-triazole derivative is by 2, nitrogen-atoms on 4 forms N2, N4-bridging pattern, this N2, N4-bridging pattern is with the N1 of imidazoles in metalloenzyme, and N3-bridging mode class seemingly.Special purpose for triazole class compounds also shows in the design of molecular device, and the metal complexes that synthesis has different dimension has been the vital step of device.
The present invention adopts " solvent-thermal method ", i.e. Zn (NO 3) 26H 2o, ipa, L, DMF and water are 90 oreact under C hydrothermal condition after three days and be down to brown rhabdolith { [Zn (L) (ipa)] 1.5H that room temperature obtains applicable X-ray single crystal diffraction 2o} ( 1) (L=1-[7-(1H-1,2,4-triazole-1-base) naphthalene-2-base)-1H-1,2,4-triazole, ipa=m-phthalic acid).This title complex also can be used as potential fluorescent material aspect and is applied.
Summary of the invention
Another object of the present invention is to provide a kind of naphthalene two triazole m-phthalic acid Zn complex { [Zn (L) (ipa)] 1.5H 2o} ( 1) (L=1-[7-(1H-1,2,4-triazole-1-base) naphthalene-2-base)-1H-1,2,4-triazole, ipa=m-phthalic acid) monocrystalline and preparation method thereof.
Current inventor provides following technical scheme for this reason:
Two triazole m-phthalic acid Zn complex { [Zn (L) (the ipa)] 1.5H of naphthalene 2o} ( 1) (L=1-[7-(1H-1,2,4-triazole-1-base) naphthalene-2-base)-1H-1,2,4-triazole, ipa=m-phthalic acid) structural motif as shown in Figure 1.
The present invention further discloses two triazole m-phthalic acid Zn complex { [Zn (L) (the ipa)] 1.5H of naphthalene 2o} ( 1) (L=1-[7-(1H-1,2,4-triazole-1-base) naphthalene-2-base)-1H-1,2,4-triazole, ipa=m-phthalic acid) monocrystalline, it is characterized in that this single crystal structure adopts APEX II CCD single crystal diffractometer, use through graphite monochromatised Mok alpha-ray (λ=0.71073) be incident radiation, with ω-2 θscan mode collects point diffraction, obtains unit cell parameters, utilize SHELXL-97 direct method to solve single crystal data from difference Fourier electron density map through least-squares refinement:
Table 1. title complex 1crystallographic data
Two triazole m-phthalic acid Zn complex { [Zn (L) (the ipa)] 1.5H of naphthalene of the present invention 2o} ( 1) (L=1-[7-(1H-1,2,4-triazole-1-base) naphthalene-2-base)-1H-1,2,4-triazole, ipa=m-phthalic acid) preparation method of monocrystalline, its feature adopts " solvent-thermal method " in employing, Zn (NO 3) 26H 2o, ipa, L, DMF and water are 90 oreact under C hydrothermal condition after three days and be down to room temperature to prepare this title complex
L ipa。
The present invention's preferred example:
1-[7-(1H-1,2,4-triazole-1-base) naphthalene-2-base) preparation of-1H-1,2,4-triazole (L)
" one kettle way " is adopted at polar solvent, by 2,7-dibromine naphthalene, 1H-1,2,4-triazole, salt of wormwood and cupric oxide are prepared in a heated condition; Wherein 2,7-dibromine naphthalenes: 1H-1,2,4-triazole: salt of wormwood: the mol ratio of cupric oxide is 2:10-15:30:1;
2,7-dibromine naphthalene 1H-1,2,4-triazole
The present invention is 2,7-dibromine naphthalenes preferably: 1H-1,2,4-triazole: salt of wormwood: the mol ratio of cupric oxide is 2:10-15:30:1; Temperature of reaction 100 DEG C, 48 hours reaction times.In polar solvent, adopt " one kettle way ", by 2,7-dibromine naphthalene, 1H-1,2,4-triazole, this organic compound prepared in a heated condition by salt of wormwood and cupric oxide;
Another preferred embodiment of the present invention
L (0.1 mmol), m-phthalic acid (0.1 mmol), Zn (NO 3) 26H 2o (0.2 mmo), 10 mL water and 6 mL DMF are put in 23 mL water heating kettles.90 oc heats and is slowly down to room temperature afterwards in three days, has the brown rhabdolith of applicable X-ray single crystal diffraction after driving still.Productive rate: 40%.Ultimate analysis (C 44h 34n 12o 11zn 2) theoretical value (%): C, 50.93; H, 3.30; N, 16.20.Measured value: C, 50.88; H, 3.35; N, 16.26.
The present invention further discloses two triazole m-phthalic acid Zn complex { [Zn (L) (the ipa)] 1.5H of naphthalene 2o} ( 1) (L=1-[7-(1H-1,2,4-triazole-1-base) naphthalene-2-base)-1H-1,2,4-triazole, ipa=m-phthalic acid) can be used as potential fluorescent material aspect and applied.
Two triazole m-phthalic acid Zn complex { [Zn (L) (the ipa)] 1.5H of a kind of naphthalene disclosed by the invention 2o} ( 1) (L=1-[7-(1H-1,2,4-triazole-1-base) naphthalene-2-base)-1H-1,2,4-triazole, ipa=m-phthalic acid) advantage and disadvantage that has of monocrystalline is:
(1) operation is simple and easy to do.
(2) reaction yield is high, and the purity of products obtained therefrom is high.
(3) { [Zn (L) (the ipa)] 1.5H prepared by the present invention 2o} ( 1) (L=1-[7-(1H-1,2,4-triazole-1-base) naphthalene-2-base)-1H-1,2,4-triazole, ipa=m-phthalic acid) production cost is low, and method is easy, is applicable to scale operation.
Accompanying drawing explanation
Fig. 1: title complex 1crystalline structure primitive figure;
Fig. 2: title complex 1two-dimensional layered structure figure.
Embodiment
Below in conjunction with embodiment, the present invention is described further, and embodiment is only indicative, never means that it limits the scope of the invention by any way.All raw materials are such as: anthracene nucleus etc. are all buy from chemical reagents corporation both domestic and external, through continuing to purify but directly use.Raw materials used 2,7-dibromine naphthalenes, 1H-1,2,4-triazole, salt of wormwood, cupric oxide etc. all have commercially available.
Embodiment 1
2,7-dibromine naphthalene: triazole: salt of wormwood: the mol ratio of cupric oxide is 2:10:30:1
CuO (0.0398 mg is added respectively in 50 mL, tri-mouthfuls of round-bottomed flasks that magneton, reflux exchanger and thermometer are housed, 0.5 mmol), salt of wormwood (2.0731 g, 15 mmol), triazole (0.345 mg, 5 mmol), 2,7-dibromine naphthalene (0.2860 g, 1 mmol), 20 mL DMF.Start and be stirred in 100 oc, reacts 24 hours.After reaction terminates, reaction solution is down to room temperature, filter, filtrate adds 100 mL water, separates out and precipitates in a large number, suction filtration, collects filter cake, 1-[7-(1H-1,2,4-triazole-1-base) naphthalene-2-base)-1H-1,2,4-triazole (L), yield 60%.
Embodiment 2
1-[7-(1H-1,2,4-triazole-1-base) naphthalene-2-base)-1H-1,2,4-triazole (0.1 mmol), m-phthalic acid (0.1 mmol), Zn (NO 3) 26H 2o (0.2 mmo), 10 mL water and 6 mL DMF are put in 23 mL water heating kettles.90 oc heats and is slowly down to room temperature afterwards in three days, has the brown rhabdolith of applicable X-ray single crystal diffraction after driving still.Productive rate: 40%.Ultimate analysis (C 44h 34n 12o 11zn 2) theoretical value (%): C, 50.93; H, 3.30; N, 16.20.Measured value: C, 50.88; H, 3.35; N, 16.26.
Embodiment 3
Crystal structure determination adopts APEX II CCD single crystal diffractometer, use through graphite monochromatised Mok alpha-ray (λ=0.71073) be incident radiation, with ω-2 θscan mode collects point diffraction, obtains unit cell parameters, utilize software to solve crystalline structure from difference Fourier electron density map through least-squares refinement, and through Lorentz lorentz and polarizing effect correction.All H atom are synthesized by difference Fourier and are determined through desirable position calculation.Detailed axonometry data are in table 1.Structural motif is shown in Fig. 1, and two-dimensional layered structure is shown in Fig. 2.
Table 1. title complex 1crystallographic data
Embodiment 4
The concrete instance that dyestuff or luminous agent use
Method: PARSTAT 2273 electrochemical workstation of differentiated pulse volt-ampere (DPV) the curve negotiating Princeton Applied Research Laboratory development of dye solution is measured.The DPV test of solution adopts three-electrode system, and glass-carbon electrode is working electrode, and supporting electrode is platinum plate electrode, homemade Ag/AgNO 3electrode is reference electrode; Electrolytic solution is the acetonitrile solution of 0.1molL-1TBAP.Reduce reversible point to for interior mark with Oxidation of Ferrocene, obtains the correction value between test system and standard hydrogen electrode system.
Monochromatic incident light photoelectric transformation efficiency (IPCE) describes the photoelectric transformation efficiency of DSCs under monochromatic ray effect, is transfer to the electronic number of external circuit and the ratio of incident light subnumber.During measurement, use 500 W xenon lamps as light source, the monochromatic ray of incident light under the multifunctional assembled grating spectrograph of WDS-5 type obtains different wave length λ; Monochromatic light exposure, in the light anode of battery, reads current value I by Keithley2400 digital sourcemeter.Monochromatic good fortune illumination is measured by USB4000 plug-and-play Miniature optical linear light spectrometer.
Step: in order to definitely understand dyestuff at TiO 2adsorptive capacity on film, by dye sensitization TiO 2(geometric area is about 1 cm to nanometer crystal film 2) be immersed in 10 mL 0.01 molL -1sodium hydroxide methanol solution in spend the night, treat that the absorbancy of attached mensuration solution separated completely by dyestuff.Wash one's face and rinse one's mouth according to absorbancy and molar absorptivity and can calculate the adsorptive capacity of dyestuff on unit surface nanometer crystal film.The adsorptive capacity of this title complex is 5.6 × 10 -4mol/cm 2.
Result: compared with the methanol solution of dyestuff, dyestuff is at TiO 2absorption spectrum on film all obviously broadens and red shift.This shows that dye molecule is at TiO 2define the J-aggregate of first also tail.From the principle of work of DSCs, the spectrum broadening that dye aggregation causes and red shift are very favourable for the widening of photoelectric response scope of dyestuff.But meanwhile, dye aggregation cognition reduces its electron injection efficiency greatly, thus causes the degraded performance of DSCs.So, in dye solution, usually add coadsorbent to suppress the gathering of dyestuff.This title complex is in methanol solution and at TiO 2the fluorometric investigation of the purple solution on membrane electrode adopts 2.5 × 10 -5the methanol solution of mol/L, maximum emission wavelength is positioned at 560 nm.
After the preferred embodiment described in detail, be familiar with this technology personage can be well understood to, do not departing under above-mentioned claim and spirit and can carry out various change and amendment, all above embodiment is done according to technical spirit of the present invention any simple modification, equivalent variations and modification, all belong to the scope of technical solution of the present invention.And the present invention is not also by the restriction of example embodiment in specification sheets.

Claims (4)

1. two triazole m-phthalic acid Zn complex { [Zn (L) (ipa)] 1.5H of naphthalene 2o} ( 1) structural motif as shown in Figure 1:
L=1-[7-(1H-1,2,4-triazole-1-base) naphthalene-2-base)-1H-1,2,4-triazole, ipa=m-phthalic acid.
2. the monocrystalline of the two triazole m-phthalic acid Zn complex of naphthalene described in claim 1, it is characterized in that this single crystal structure adopts APEX II CCD single crystal diffractometer, use through graphite monochromatised Mok alpha-ray (λ=0.71073) be incident radiation, with ω-2 θscan mode collects point diffraction, obtains unit cell parameters, utilize software to solve single crystal data from difference Fourier electron density map through least-squares refinement:
Table 1. title complex 1crystallographic data
3. two triazole m-phthalic acid Zn complex { [Zn (L) (ipa)] 1.5H of naphthalene described in claim 1 2o} ( 1) (L=1-[7-(1H-1,2,4-triazole-1-base) naphthalene-2-base)-1H-1,2,4-triazole, ipa=m-phthalic acid) preparation method, it is characterized in that it adopts " solvent-thermal method ", i.e. Zn (NO 3) 26H 2o, ipa, L, DMF and water are 90 oreact under C hydrothermal condition after three days and be down to room temperature to prepare this title complex
L ipa。
4. two triazole m-phthalic acid Zn complex { [Zn (L) (ipa)] 1.5H of naphthalene described in claim 1 2o} ( 1) (L=1-[7-(1H-1,2,4-triazole-1-base) naphthalene-2-base)-1H-1,2,4-triazole, ipa=m-phthalic acid) as the application of potential fluorescent material aspect.
CN201510088166.8A 2015-02-26 2015-02-26 There are two triazole M-phthalic acid Zn complexes of naphthalene of potential fluorescent material and preparation method thereof Expired - Fee Related CN104610301B (en)

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Cited By (1)

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Publication number Priority date Publication date Assignee Title
CN112592358A (en) * 2020-12-18 2021-04-02 闽都创新实验室 Blue light luminescent crystal material and preparation method and application thereof

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CN102942580A (en) * 2012-12-06 2013-02-27 洛阳师范学院 Zinc 5-methyl isophthalate complex and preparation method thereof

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CN102942580A (en) * 2012-12-06 2013-02-27 洛阳师范学院 Zinc 5-methyl isophthalate complex and preparation method thereof

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CN112592358A (en) * 2020-12-18 2021-04-02 闽都创新实验室 Blue light luminescent crystal material and preparation method and application thereof
CN112592358B (en) * 2020-12-18 2022-12-13 闽都创新实验室 Blue light luminescent crystal material and preparation method and application thereof

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