• <tr id="yyy80"></tr>
  • <sup id="yyy80"></sup>
  • <tfoot id="yyy80"><noscript id="yyy80"></noscript></tfoot>
  • 99热精品在线国产_美女午夜性视频免费_国产精品国产高清国产av_av欧美777_自拍偷自拍亚洲精品老妇_亚洲熟女精品中文字幕_www日本黄色视频网_国产精品野战在线观看 ?

    一例夾心型含錳鉍鎢酸鹽的合成、結(jié)構(gòu)及磁學(xué)性質(zhì)

    2022-10-10 05:43:22武立州李義衛(wèi)常奕丹楊娜葛欣宇惠俊峰劉斌薛崗林
    關(guān)鍵詞:西北大學(xué)化工學(xué)院材料科學(xué)

    武立州李義衛(wèi)常奕丹楊 娜葛欣宇惠俊峰劉 斌薛崗林

    (1安康學(xué)院化學(xué)化工學(xué)院,新材料研究中心,安康鋅基材料科學(xué)與技術(shù)研究中心,安康725000)

    (2西北大學(xué)化工學(xué)院,西安710069)

    (3西北大學(xué)化學(xué)與材料科學(xué)學(xué)院,合成與天然功能分子化學(xué)教育部重點(diǎn)實(shí)驗(yàn)室,西安710069)

    0 Introduction

    Polyoxometalates(POMs)are a fascinating class of metal-oxygen cluster compounds,which exhibit compositional diversity and structural versatility as well as potential applications in a variety of fields,including catalysis,analytic chemistry,medicine,and materials science[1-4].In the development of POMs chemistry,lacunary polyoxoanions play an important role because they can serve as the nucleophilic inorganic multidentate ligands and coordinate to electrophiles of transition metal cations,organometallic or organic fragments to constitute a great quantity of novel transition metal substituted POMs(TMSPs)or organic-inorganic hybrid materials[5-8].Within the class of TMSPs,the sandwichtype polyoxoanions,accommodating lots of paramagnetic transition-metal cations between the two lacunary polyoxoanions,are an important subclass.Up to now,numerous sandwich-type polyoxoanions have been synthesized and mostly belong to the well-known Weakley-[M4(H2O)2(XW9O34)2]n-and[M4(H2O)2(X2W15O56)2]n-(X=SiⅣ,PⅤ,GeⅣ,AsⅤ)[9-11],Hervé-[M3(H2O)3(B-α-XW9O33)2]n-(X=AsⅢ,SbⅢ,SeⅣ,TeⅣ,BiⅢ)[12-14],Krebs-[(WO2)2M2(H2O)6(β-XW9O33)2]n-(X=SbⅢ,BiⅢ)and[M4(H2O)10(β-XW9O33)2]n-(X=AsⅢ,SbⅢ,TeⅣ)[12,15-17]and Knoth-type[M3(A-α-XW9O34)2]n-(X=P,Si)[18-19].

    In contrast to the sandwich polyanions containing the SiⅣ,PⅤ,and GeⅣas heteroatoms,the analogues containing AsⅢ,SbⅢ,and BiⅢheteroatoms display peculiar crystal structures due to the stereochemical effect of the lone pair orbital electrons located on top of the trigonal pyramid[15].Besides,the ionic radius of Bi3+(0.117 nm)is bigger than As3+(0.072 nm)and Sb3+(0.090 nm),which is also an important factor to induce the structural distinctiveness of polyoxotungstate clusters.In addition,it is well known that bismuth tungstate is a class of potential solid functional materials having excellent catalytic activity,ferroelectric,piezoelectric,and non-linear dielectric susceptibility[20-22].

    Therefore,the synthesis of polyoxotungstate clusters with heteroatom Bi3+has aroused the wide attention of POMs researchers.Up to now,many dimeric tungstobismutates based on trivacantβ-B-(BiW9O33)units have been reported,such as[(WO2(OH))2(WO2)2(β-B-BiW9O33)2]12-,and its transition/lanthanide metal-disubstituted complexes,[(M(H2O)3)2(WO2)2(β-B-BiW9O33)2](14-2n)-(M=Fe3+,Co2+,Ni2+,Cu2+,Zn2+,Mn2+)[9,15,23-26],[(M(H2O)3)2(WO(OH))2(β-B-BiW9O33)2](14-2n)-(M=Fe3+,Cu2+)[27-28],[Sn1.5(WO2(OH))0.5(WO2)2(β-BBiW9O33)2]10.5-[29],[(M(H2O)2)2(WO2)2(β-B-BiW9O33)2](14-2n)-(M=VO2+,Co2+,Ni2+,Mn2+)[30-31],[(Pd(H2O)3)3(WO3)2(WO2)2(β-B-BiW9O33)2]8-[32], [(WO(dmso))2(Fe(dmso)3)2(β-BBiW9O33)2]4-[33],[Fe4(C2O4)4(H2O)2(β-B-BiW9O33)2]14-[34],[(RuC6H6)2(WO2)2(β-B-BiW9O33)2]10-[35], [(W(OH)2)2(Mn(H2O)3)2(β-B-BiW9O33)2]6-[36],[(M(H2O)3)2(Sn(CH2)2COO)2(β-B-BiW9O33)2]10-(M=Co2+,Mn2+)[37],[Cu2(WO2)2(β-B-BiW9O33)2]12-[38], [(M(H2O)3)2(M0.5(W0.5O))2(β-BBiW9O33)2]10-(M=Co2+,Ni2+,Mn2+)[39],and[Ln3(H2O)18(WO3)2(WO2)2(β-B-BiW9O33)2]5-(Ln=Ce3+,Eu3+)[40-41].Moreover,tungstobismuthates anions containingα-B-(BiW9O33)units are also known as the Dawson-like polyanion[H3BiW18O60]6-[42],dimeric polyanions[Mx(L)y(α-B-BiW9O33)2](18-2n)-(M=Co2+,Mn2+,L=imidazole,1-methylimidazole,mim,x=1,y=3;M=Fe3+,Co2+,Ni2+,Cu2+,Cr3+,Mn2+,L=H2O,x=3,y=3;M=Cu2+,VO2+,x=3,y=0;M=Cu2+,L=H2O,x=1,y=3,x=4,y=2;M=VO2+,x=2,y=0;M=UO22+,L=H2O,x=2,y=4)[43-53],[{Cu(im)4}{Na(H2O)2}3{Cu3(im)2(H2O)}(α-B-XW9O33)2]14-[54],[Cu(im)4{Na(H2O)2Co(im)}3(α-B-BiW9O33)2]10-[55],[Zn2(H2O)10(ZnCl)6(α-B-BiW9O33)2]8-[56],and trimeric polyanions[(Np3W4O15)(H2O)3(α-B-BiW9O33)3]18-[57], [Bi2Ag3Na(W3O10)(α-B-BiW9O33)3]19-[58],[Bi6(OH)3(H2O)3V4O10(α-BBiW9O33)3]12-[59],tetrameric polyanions[(WO3)(Bi6(μ3-O)4(μ2-OH)3)(Ln3(H2O)6CO3)(α-B-BiW9O33)4]22-[60].Above these reports,rare examples of dimeric polyanions containing tetranuclear metal clusters except for[Fe4(C2O4)4(H2O)2(BiW9O33)2]14-[34]and[Cu4(H2O)2(BiW9O33)2]10-[28],and few examples of sandwich tungstobismutates serving as a catalyst have been reported[12,35].

    Taking into this account,our current synthetic strategy is to obtain new sandwich tungstobismutates containing multinuclear metal clusters with special properties applicable to magnetism,catalysis,medicine,or materials science through conventional solution syntheses.Here we reported the synthesis,structure,and some properties of new manganeseギdecorated tungstobismuthateバNa9H[(Mn(H2O)3)2(Mn(H2O)2)(WO2)(BiW9O33)2]·30H2O(1).

    1 Experimental

    1.1 Materials and measurements

    All chemicals purchased were of reagent grade and used without further purification.Na9[BiW9O33]·16H2O was synthesized according to the literature[59]and characterized by IR spectra.Elemental analysis(C,H,and N)was performed on a Vario ELⅢCHN elemental analyzer.Na,Bi,W,and Mn were analyzed on an IRIS Advantage ICP atomic emission spectrometer.IR spectra were recorded on an EQUINOX55 IR spectrometer with KBr pellets.UV spectra were performed on a Shimazu UV-2550 spectrophotometer.The powder X-ray diffraction(PXRD)data were recorded on a Rigaku RU200 diffractometer at 60 kV,300 mA,and CuKαradiation(λ=0.154 06 nm),with a scan speed of 5(°)·min-1and a step size of 0.02° in a 2θrange of 5°-50°.Thermogravimetric(TG)analysis was performed on a model Q600SDT analyzer in flowing N2with a heating rate of 10℃·min-1.Magnetism measurements were performed on a Quantum Design MPMS SQUID magnetometer.

    1.2 Synthesis of tungstobismuthate 1

    Na9[BiW9O33]·16H2O(2.886 g,1 mmol)was dissolved in 20.0 mL H2O to form solution A.MnCl2·4H2O(0.297 g,1.5 mmol)was dissolved in 5.0 mL H2O to form solution B.Then,solution B was added dropwise to solution A.The pH value of the solution was adjusted to 4.5 at room temperature by the addition of 1 mol·L-1HCl.The mixture was kept at 80℃for about 1 h and then cooled to room temperature and filtered.Yellow prismatic crystals of1were isolated in a week(Yield:36% based on W).Anal.Calcd.for H77Bi2Mn3Na9O106W19(%):H,1.28;Na,3.41;Mn,2.72;W,57.67;Bi,6.90.Found(%):H,1.29;Na,3.49;Mn,2.67;W,57.46;Bi,7.05.IR(KBr,cm-1):3 417(s),1 627(m),929(m),817(s),680(m).

    1.3 X-ray crystallography

    The selected crystal of1was mounted on a glass fiber capillary for indexing and intensity data collection at 296 K on a BRUKER SMART APEXⅡCCD diffractometer using MoKαradiation(λ=0.071 073 nm).The structure was solved by direct methods(SHELXL-2018)and refined by the full-matrix-block least-squares method onF2.All heavy atoms(W,Mn,Na,and Bi)were refined anisotropically and other atoms were refined isotropically,and hydrogen atoms were not included.A summary of the crystal data and structure refinements for1is given in Table 1.Selected bond lengths and angles are listed in Table S1(Supporting information).

    CCDC:2141242.

    2 Results and discussion

    2.1 Synthesis

    Compound1was synthesized by mixing Na9[BiW9O33]·16H2O and MnCl2·4H2O(1∶1.5,n/n)in a pH 4.5 aqueous solution under conventional conditions.In view of the very recent work of Krebs[15-16]and Kortz[32],we find the ratio of Mn2+to[BiW9O33]10-is a phase-determining factor for the formation of the title compound.When the ratio was lower than 1∶1,[(Mn(H2O)3)2(WO2)2(β-BiW9O33)2]10-was obtained.At a higher ratio(1.5∶1),compound1was obtained.Last but not least,why the dimeric polyanions containing tetranuclear manganese cluster[(Mn(H2O)2)4(β-BiW9O33)2]10-was not obtained when the ratio was higher than 2∶1?A reason is that the[(Mn(H2O)2)4(β-BiW9O33)2]10-polyanion is unstable and easily transforms into[(Mn(H2O)2)2(Mn(H2O)2)x(WO2)2-x(β-BiW9O33)2]10-at the lower pH.We presume that the mechanism of formation of compound1is as follows(Scheme 1).

    Scheme 1 Mechanism of formation of compound 1

    2.2 Structure description

    Single crystal X-ray analysis reveals that compound1is composed of sandwich-type[(Mn(H2O)3)2(Mn(H2O)2)(WO2)(BiW9O33)2]10-polyanions,sodium cations,H+ion,and lattice water molecules[15,40].The sandwich-type[(Mn(H2O)3)2(Mn(H2O)2)(WO2)(BiW9O33)2]10-polyanion assembly of two trivacantβ-B-[BiW9O33]9-Keggin fragments connected by two[(Mn(H2O)2)0.5(WO2)0.5]2+moieties and two[Mn(H2O)3]2+subunits are located in the inner and outer positions,respectively(Fig.1).The manganese atom Mn1 is disordered with tungsten atom W10 and shared with the occupancies of 50% Mn and 50% W,respectively.This trivacantβ-B-[BiW9O33]9-unit derives from the Keggin structure by removing one W3O13fragment.The trivacant unit consists of three edge-sharing W3O13groups with the central Bi3+which is surrounded pyramidally by three oxygen atoms.The lone pair is located on the top of the pyramid.Generally,β-B-[XW9O33]n-units can be derived from theα-B-type anions by 60° rotation of one W3O13group around the X—OW3Xbinding vector.In compound1,each[(Mn(H2O)2)0.5(WO2)0.5]2+/[Mn(H2O)3]2+unit links twoβ-B-[BiW9O33]9-units by four/three terminal-oxygen atoms from twoβ-B-[BiW9O33]9-units,and Mn1/Mn2 exhibits an octahedral coordination arrangement defined by two oxygen atoms of oneβ-B-[BiW9O33]9-moiety and two/one oxygen atoms of the other,the additional free coordination sites are completed by two/three water molecules.The Mn—O bond distances range from 0.209 0(14)to 0.228 0(20)nm with an average of 0.215 9 nm,while the O—Mn—O angles vary from 82.2(6)°to 178.0(7)°.

    Fig.1 View of the novel polyanion of 1,showing the coordination environments around Mn

    In the packing arrangement of compound1,the adjacent sandwich-type polyoxoanions are stacked into a 3D supramolecular framework via the extensive Hbonding interactions between water molecules and the polyoxoanions as well as the electrostatic forces between Na+cations and the polyoxoanions(Fig.S1).

    2.3 IR spectrum

    The IR spectrum of compound1exhibited prominent characteristic peaks for the sandwich-type structure at 929,817,and 680 cm-1,which can be ascribed to the W—Od,W—Ob—W,and W—Oc—W vibrations of the polyoxoanion cluster(Fig.2).The strong peak at 1 627 cm-1can be assigned to isolated solvent water molecules.The peak at 3 417 cm-1can be assigned to the O—H vibration.

    Fig.2 IR spectrum of compound 1

    2.4 UV spectrum

    In the UV region(Fig.3),compound1exhibited two characteristic bands for the ligand to metal charge transfer in the polyanions.The more intense band corresponding to thepπ(Od)→dπ*(W)transitions[61]appeared at 195.8 nm.The broader band around 250.0 nm is assigned to apπ(Ob,c)→dπ*(W)charge transfer transition in the tri-centric bonds of POMs,which is consistent with the values in the literature(193.6 and 250.7 nm)[48].

    Fig.3 UV spectrum of compound 1 in aqueous solution

    2.5 TG analysis

    To examine the thermal stability of compound1,TG analysis was carried out.The TG curve of1showed one main weight loss(Fig.4).The TG curve of1showed the compound lost weight in a temperature range of 20-350℃,and the total weight loss was 11.59%,corresponding to the loss of lattice water molecules and coordinated water molecules.The value of weight loss from the TG curve for compound1(11.59%)was in agreement with the calculated value(11.95%).

    Fig.4 TG curve of compound 1

    2.6 PXRD analysis

    In order to check the phase purity of compound1,PXRD experiment was carried out.As shown in Fig.5,the diffraction peaks on the pattern corresponded well in position,confirming that the product is a pure phase.The differences in reflection intensity are probably due to preferred orientation in the powder samples.

    Fig.5 PXRD patterns from the single-crystal structure determination and as-synthesized product of compound 1

    2.7 Magnetic properties

    Fig.6 shows the experimental data of1plotted as theχMTvsTandχMvsT.TheχMTvalue of 12.68 cm3·K·mol-1at 300 K was close to that of three uncoupled manganeseギions(13.13 cm3·mol-1·K),which was larger than that expected for two manganese ions(8.75 cm3·mol-1·K)and smaller than that expected for four manganese ions(17.50 cm3·mol-1·K).This result also confirms the presence of sandwich-type[(Mn(H2O)3)2(Mn(H2O)2)(WO2)(BiW9O33)2]10-polyanion.Subsequently theχMTdecreased continuously with decreasing temperature.Below 50 K,χMTquickly decreased and then reached a minimum value of 4.35 cm3·mol-1·K at 1.8 K.This behavior indicates the presence of relatively strong antiferromagnetic interactions between the Mnギions.

    Fig.6 Temperature dependence of χMT and χM for 1

    The magnetic susceptibility followed the Curie-Weiss law over the entire temperature range withC=12.80 cm3·K·mol-1andθ=-4.29 K(Fig.7).The negative Weiss constant further demonstrates strong antiferromagnetic interactions between the Mnギions through the oxygen bridges.

    Fig.7 Plot of the temperature dependence of χM-1 for 1,recorded on a powder sample at an applied field of 0.1 T

    3 Conclusions

    In summary,a new sandwich-type tungstobismuthate based on trivacantβ-B-[BiW9O33]9-Keggin polyanions and Mnギions has been successfully synthesized by the aqueous solution method.Magnetic studies reveal that compound1exhibits relatively strong antiferromagnetic coupling interactions between Mnギions in the central belt of polyoxoanion.The successful synthesis of1confirms that it is feasible to introduce the metal cations into the[BiW9O33]9-cluster for the construction of high-performance tungstobismuthates magnetics,and more investigations are underway.

    Acknowledgments:This work was supported by the Education Commission of Shaanxi Province(Grant No.17JK0017),the Natural Science Foundation of Shaanxi Province(Grant No.S2018-JC-QN-0631),the Funded Projects of Ankang University(Grants No.2018JCRC01,2021AYZD01),and the Training Programs of Innovation and Entrepreneurship of Undergraduates in Shaanxi Province(Grants No.S201911397009,S201911397010).

    Supporting information is available at http://www.wjhxxb.cn

    猜你喜歡
    西北大學(xué)化工學(xué)院材料科學(xué)
    使固態(tài)化學(xué)反應(yīng)100%完成的方法
    中海油化工與新材料科學(xué)研究院
    西北大學(xué)木香文學(xué)社
    材料科學(xué)與工程學(xué)科
    國家開放大學(xué)石油和化工學(xué)院學(xué)習(xí)中心列表
    【鏈接】國家開放大學(xué)石油和化工學(xué)院學(xué)習(xí)中心(第四批)名單
    《西北大學(xué)學(xué)報(bào)》(自然科學(xué)版)征稿簡則
    福建工程學(xué)院材料科學(xué)與工程學(xué)科
    《材料科學(xué)與工藝》2017年優(yōu)秀審稿專家
    《我們》、《疑惑》
    国产亚洲一区二区精品| 中国三级夫妇交换| 一级片'在线观看视频| 91精品国产国语对白视频| a 毛片基地| 一个人免费看片子| 中文字幕人妻丝袜制服| 搡女人真爽免费视频火全软件| 免费不卡的大黄色大毛片视频在线观看| 久久99热这里只频精品6学生| 国产 精品1| 丝袜喷水一区| 香蕉丝袜av| 哪个播放器可以免费观看大片| 伦理电影免费视频| 人妻少妇偷人精品九色| 两个人免费观看高清视频| 免费观看在线日韩| 成人国产麻豆网| 春色校园在线视频观看| 免费黄频网站在线观看国产| 国产精品.久久久| 婷婷色麻豆天堂久久| 99热网站在线观看| 一二三四中文在线观看免费高清| 纯流量卡能插随身wifi吗| 亚洲精品一二三| 亚洲激情五月婷婷啪啪| 国产日韩一区二区三区精品不卡| 啦啦啦啦在线视频资源| 欧美激情 高清一区二区三区| 欧美精品人与动牲交sv欧美| 欧美另类一区| 麻豆精品久久久久久蜜桃| 午夜福利乱码中文字幕| 国产成人精品无人区| 十分钟在线观看高清视频www| 久久人人爽av亚洲精品天堂| 人人妻人人添人人爽欧美一区卜| 日本-黄色视频高清免费观看| 免费高清在线观看日韩| 久久久久久久久久久免费av| 22中文网久久字幕| 国产熟女欧美一区二区| 国产成人精品无人区| 亚洲av国产av综合av卡| av.在线天堂| 黑丝袜美女国产一区| 国产高清不卡午夜福利| 深夜精品福利| 国产不卡av网站在线观看| 久久精品熟女亚洲av麻豆精品| av在线老鸭窝| 青春草视频在线免费观看| 国产xxxxx性猛交| 精品一品国产午夜福利视频| 成年女人在线观看亚洲视频| 亚洲精品自拍成人| 天美传媒精品一区二区| 晚上一个人看的免费电影| 欧美+日韩+精品| 大香蕉久久成人网| 高清不卡的av网站| av在线app专区| 99精国产麻豆久久婷婷| 精品久久蜜臀av无| 一二三四在线观看免费中文在 | 国产在线免费精品| 国产精品国产三级国产av玫瑰| 国精品久久久久久国模美| 亚洲五月色婷婷综合| 人妻 亚洲 视频| 美女大奶头黄色视频| 国产精品免费大片| 97精品久久久久久久久久精品| 国产色爽女视频免费观看| 狠狠婷婷综合久久久久久88av| 精品久久久久久电影网| 日本欧美国产在线视频| 国产不卡av网站在线观看| 免费高清在线观看视频在线观看| 国产精品女同一区二区软件| 妹子高潮喷水视频| 成人免费观看视频高清| 国产精品人妻久久久影院| 国产精品熟女久久久久浪| 精品一区二区三卡| 一区二区三区精品91| av天堂久久9| 99热这里只有是精品在线观看| 午夜福利,免费看| 香蕉国产在线看| 久久久久久久精品精品| 国产色爽女视频免费观看| 日本黄大片高清| 久久久国产一区二区| 男人爽女人下面视频在线观看| 久久婷婷青草| 婷婷色麻豆天堂久久| 黄片播放在线免费| 精品亚洲乱码少妇综合久久| 亚洲第一区二区三区不卡| 一级片'在线观看视频| 一二三四在线观看免费中文在 | 精品午夜福利在线看| 欧美国产精品va在线观看不卡| 欧美97在线视频| 欧美精品人与动牲交sv欧美| 亚洲精品久久午夜乱码| 免费黄网站久久成人精品| 宅男免费午夜| 性高湖久久久久久久久免费观看| 一级毛片黄色毛片免费观看视频| 精品一区二区三区四区五区乱码 | 国产免费一区二区三区四区乱码| 亚洲精品456在线播放app| 午夜福利视频在线观看免费| 91精品三级在线观看| 波多野结衣一区麻豆| 日日爽夜夜爽网站| 在线观看人妻少妇| 亚洲精品自拍成人| 精品少妇内射三级| 精品一区二区三卡| 国产 一区精品| 一二三四中文在线观看免费高清| 日韩视频在线欧美| 欧美精品一区二区免费开放| 咕卡用的链子| 黑人巨大精品欧美一区二区蜜桃 | 美女视频免费永久观看网站| 99久久人妻综合| 久久婷婷青草| 亚洲精华国产精华液的使用体验| 久久久久精品人妻al黑| 母亲3免费完整高清在线观看 | 亚洲丝袜综合中文字幕| 夫妻性生交免费视频一级片| 国产精品 国内视频| 香蕉国产在线看| 久久久久精品久久久久真实原创| 国产亚洲最大av| 91精品伊人久久大香线蕉| 国产免费视频播放在线视频| 亚洲色图综合在线观看| 黑人欧美特级aaaaaa片| 毛片一级片免费看久久久久| 最近2019中文字幕mv第一页| 国产爽快片一区二区三区| 在线观看一区二区三区激情| 欧美变态另类bdsm刘玥| videosex国产| 日韩一本色道免费dvd| 国产熟女午夜一区二区三区| 国产精品国产三级国产av玫瑰| 男女边吃奶边做爰视频| 国产视频首页在线观看| 国产综合精华液| 亚洲婷婷狠狠爱综合网| videossex国产| 女性被躁到高潮视频| 飞空精品影院首页| 80岁老熟妇乱子伦牲交| 国产成人一区二区在线| 夫妻性生交免费视频一级片| 天天操日日干夜夜撸| 亚洲美女视频黄频| 亚洲精品国产色婷婷电影| 亚洲国产最新在线播放| 欧美 亚洲 国产 日韩一| 亚洲综合精品二区| 在线观看www视频免费| 女人被躁到高潮嗷嗷叫费观| 亚洲国产成人一精品久久久| 亚洲伊人色综图| 丁香六月天网| 欧美97在线视频| 久久久久国产网址| 精品熟女少妇av免费看| 欧美精品人与动牲交sv欧美| 哪个播放器可以免费观看大片| 国产一区二区三区av在线| 亚洲国产av新网站| 亚洲人与动物交配视频| 又黄又粗又硬又大视频| 老司机亚洲免费影院| 午夜激情av网站| 水蜜桃什么品种好| 精品人妻一区二区三区麻豆| 久久av网站| 蜜桃在线观看..| 老司机影院毛片| av福利片在线| 国产免费一区二区三区四区乱码| 久久精品aⅴ一区二区三区四区 | 国产精品国产三级专区第一集| 日日爽夜夜爽网站| 80岁老熟妇乱子伦牲交| 精品久久久久久电影网| 欧美亚洲日本最大视频资源| 日本黄大片高清| 多毛熟女@视频| 中文字幕亚洲精品专区| 中文天堂在线官网| 9191精品国产免费久久| 欧美激情 高清一区二区三区| 国产精品一国产av| 久久久久精品性色| 免费大片黄手机在线观看| 爱豆传媒免费全集在线观看| 国产精品久久久久久久久免| 男女啪啪激烈高潮av片| 国语对白做爰xxxⅹ性视频网站| 午夜视频国产福利| 亚洲av男天堂| 女人被躁到高潮嗷嗷叫费观| 日产精品乱码卡一卡2卡三| 男男h啪啪无遮挡| 久久精品熟女亚洲av麻豆精品| 99香蕉大伊视频| 国产精品嫩草影院av在线观看| 国产成人一区二区在线| √禁漫天堂资源中文www| 中文字幕免费在线视频6| 最近最新中文字幕大全免费视频 | 国产av码专区亚洲av| 精品一区在线观看国产| 丝瓜视频免费看黄片| 国产免费福利视频在线观看| 亚洲精品色激情综合| 久久久久人妻精品一区果冻| 久久精品久久久久久噜噜老黄| 夫妻午夜视频| 精品一区二区三区视频在线| 精品一区二区三卡| 亚洲欧美精品自产自拍| 成人国产av品久久久| 蜜桃国产av成人99| 亚洲成av片中文字幕在线观看 | 成人毛片a级毛片在线播放| 免费久久久久久久精品成人欧美视频 | 26uuu在线亚洲综合色| www.熟女人妻精品国产 | 国产熟女欧美一区二区| 精品国产一区二区久久| 黑人欧美特级aaaaaa片| 超碰97精品在线观看| 18禁国产床啪视频网站| 国产福利在线免费观看视频| 亚洲一级一片aⅴ在线观看| 91精品伊人久久大香线蕉| 国产欧美日韩一区二区三区在线| 另类亚洲欧美激情| 永久网站在线| 国产精品秋霞免费鲁丝片| xxxhd国产人妻xxx| 97精品久久久久久久久久精品| 赤兔流量卡办理| 一区二区三区精品91| 最近中文字幕高清免费大全6| 久久久精品区二区三区| 中国美白少妇内射xxxbb| av网站免费在线观看视频| 亚洲av.av天堂| 99九九在线精品视频| 两个人免费观看高清视频| 色婷婷av一区二区三区视频| 美女视频免费永久观看网站| 蜜臀久久99精品久久宅男| 又黄又粗又硬又大视频| 人体艺术视频欧美日本| 国产免费一区二区三区四区乱码| 成人免费观看视频高清| 国产av国产精品国产| 热99久久久久精品小说推荐| 国产国拍精品亚洲av在线观看| 欧美成人午夜免费资源| 亚洲色图 男人天堂 中文字幕 | 精品少妇黑人巨大在线播放| 伦理电影免费视频| 午夜免费观看性视频| 99热网站在线观看| 欧美成人午夜免费资源| 五月伊人婷婷丁香| 妹子高潮喷水视频| 汤姆久久久久久久影院中文字幕| 亚洲欧美清纯卡通| 夫妻性生交免费视频一级片| 国产av国产精品国产| 亚洲精品一二三| xxx大片免费视频| 纯流量卡能插随身wifi吗| 国产黄色免费在线视频| 熟女人妻精品中文字幕| 交换朋友夫妻互换小说| 成年人午夜在线观看视频| 亚洲成色77777| 人人妻人人添人人爽欧美一区卜| 国产av一区二区精品久久| 最近最新中文字幕免费大全7| 女人被躁到高潮嗷嗷叫费观| 成人黄色视频免费在线看| 最近2019中文字幕mv第一页| 交换朋友夫妻互换小说| 亚洲精品日本国产第一区| 岛国毛片在线播放| 国产精品欧美亚洲77777| 另类精品久久| 最近中文字幕2019免费版| 亚洲精品乱码久久久久久按摩| www.av在线官网国产| 日本猛色少妇xxxxx猛交久久| 曰老女人黄片| 免费看光身美女| 精品久久久久久电影网| 国产片特级美女逼逼视频| 欧美激情 高清一区二区三区| 看非洲黑人一级黄片| 欧美国产精品一级二级三级| 99热6这里只有精品| 亚洲精品久久成人aⅴ小说| 国产成人精品无人区| 国产男女内射视频| 性色av一级| 全区人妻精品视频| 夫妻午夜视频| 亚洲精品一区蜜桃| 汤姆久久久久久久影院中文字幕| 国产在视频线精品| 两个人免费观看高清视频| 日韩不卡一区二区三区视频在线| 18禁在线无遮挡免费观看视频| 国产精品国产av在线观看| 精品国产一区二区久久| 一二三四在线观看免费中文在 | 九九在线视频观看精品| 亚洲欧洲日产国产| 一本久久精品| 秋霞伦理黄片| 久久这里只有精品19| 亚洲情色 制服丝袜| 成年av动漫网址| videosex国产| 久久人人爽人人爽人人片va| 亚洲国产成人一精品久久久| 一级毛片黄色毛片免费观看视频| 狂野欧美激情性xxxx在线观看| 精品亚洲乱码少妇综合久久| 22中文网久久字幕| 嫩草影院入口| 日韩成人伦理影院| 亚洲综合色网址| 自线自在国产av| 国产黄色免费在线视频| 热99国产精品久久久久久7| 97超碰精品成人国产| 久久这里只有精品19| 黄网站色视频无遮挡免费观看| 国产高清不卡午夜福利| 成人18禁高潮啪啪吃奶动态图| 久久精品国产亚洲av天美| 老司机影院毛片| 两个人看的免费小视频| 亚洲国产精品国产精品| 亚洲成人一二三区av| 午夜影院在线不卡| av在线观看视频网站免费| 免费日韩欧美在线观看| 在线精品无人区一区二区三| 成人手机av| 啦啦啦视频在线资源免费观看| 精品一品国产午夜福利视频| 极品人妻少妇av视频| 黄网站色视频无遮挡免费观看| 亚洲人成77777在线视频| 最近最新中文字幕免费大全7| 亚洲综合精品二区| 丁香六月天网| 久久人妻熟女aⅴ| av又黄又爽大尺度在线免费看| 免费日韩欧美在线观看| 亚洲国产看品久久| 国产成人精品无人区| 久久久国产一区二区| 美女国产高潮福利片在线看| 精品视频人人做人人爽| 成人毛片60女人毛片免费| 九色成人免费人妻av| 欧美xxxx性猛交bbbb| 亚洲成av片中文字幕在线观看 | 国产又色又爽无遮挡免| 视频在线观看一区二区三区| 久久午夜综合久久蜜桃| 啦啦啦啦在线视频资源| 久久精品国产亚洲av涩爱| 欧美日韩精品成人综合77777| 91在线精品国自产拍蜜月| 欧美成人精品欧美一级黄| 精品人妻熟女毛片av久久网站| 亚洲色图 男人天堂 中文字幕 | 少妇精品久久久久久久| 汤姆久久久久久久影院中文字幕| 人妻少妇偷人精品九色| 一级毛片黄色毛片免费观看视频| 久久人人爽av亚洲精品天堂| 久久国产精品男人的天堂亚洲 | 久久精品夜色国产| 亚洲成色77777| 一区二区三区四区激情视频| 久久女婷五月综合色啪小说| 夜夜骑夜夜射夜夜干| 亚洲国产精品一区二区三区在线| 久久国内精品自在自线图片| 国产免费福利视频在线观看| 国产黄色视频一区二区在线观看| 成人手机av| 黄色 视频免费看| 又大又黄又爽视频免费| 久久久国产欧美日韩av| 五月玫瑰六月丁香| 久久久精品免费免费高清| 久久精品国产亚洲av天美| 国产麻豆69| 涩涩av久久男人的天堂| 又粗又硬又长又爽又黄的视频| 免费少妇av软件| 国产男女内射视频| 国产伦理片在线播放av一区| 国产1区2区3区精品| 亚洲av电影在线进入| 国语对白做爰xxxⅹ性视频网站| 亚洲第一区二区三区不卡| 曰老女人黄片| 国产黄频视频在线观看| 中文字幕制服av| 亚洲国产av新网站| 夜夜爽夜夜爽视频| 制服人妻中文乱码| 亚洲在久久综合| 一区二区三区四区激情视频| av线在线观看网站| 美国免费a级毛片| 人妻一区二区av| 国国产精品蜜臀av免费| 久久国产精品男人的天堂亚洲 | 97人妻天天添夜夜摸| 免费观看av网站的网址| 精品少妇内射三级| 十八禁网站网址无遮挡| 高清av免费在线| 国产一区亚洲一区在线观看| 日韩一区二区三区影片| 国产免费福利视频在线观看| 日韩欧美精品免费久久| 18+在线观看网站| 日韩大片免费观看网站| 在线亚洲精品国产二区图片欧美| 午夜日本视频在线| 午夜免费鲁丝| 亚洲丝袜综合中文字幕| 国产国语露脸激情在线看| 国产日韩欧美视频二区| 永久免费av网站大全| 性色avwww在线观看| 国产一区二区三区综合在线观看 | 老熟女久久久| 欧美精品一区二区免费开放| 国产精品99久久99久久久不卡 | 国产男女内射视频| 美女视频免费永久观看网站| 亚洲成人av在线免费| 天美传媒精品一区二区| 午夜免费男女啪啪视频观看| 精品久久蜜臀av无| 中文字幕免费在线视频6| 超色免费av| 亚洲人与动物交配视频| 久久99一区二区三区| videossex国产| 黄色配什么色好看| 狂野欧美激情性xxxx在线观看| 久久精品aⅴ一区二区三区四区 | 少妇猛男粗大的猛烈进出视频| 全区人妻精品视频| 久久人人爽人人片av| 日韩伦理黄色片| 国产色爽女视频免费观看| 欧美少妇被猛烈插入视频| 在线天堂中文资源库| 婷婷色综合www| 亚洲精品日韩在线中文字幕| 狠狠精品人妻久久久久久综合| 一级毛片 在线播放| 久久久精品免费免费高清| 啦啦啦中文免费视频观看日本| 在线天堂最新版资源| 少妇 在线观看| 日韩伦理黄色片| 国产xxxxx性猛交| 美女xxoo啪啪120秒动态图| 女人久久www免费人成看片| 中文字幕精品免费在线观看视频 | 国产精品蜜桃在线观看| 精品久久蜜臀av无| 亚洲性久久影院| 欧美日韩国产mv在线观看视频| 母亲3免费完整高清在线观看 | 91成人精品电影| 国产精品欧美亚洲77777| 亚洲国产日韩一区二区| 国产老妇伦熟女老妇高清| 亚洲精品久久久久久婷婷小说| 亚洲精品国产av蜜桃| 国产男人的电影天堂91| 日本黄色日本黄色录像| 久久国内精品自在自线图片| 在线观看免费日韩欧美大片| 男女午夜视频在线观看 | 女性生殖器流出的白浆| 中文乱码字字幕精品一区二区三区| 超色免费av| 日日啪夜夜爽| 在线观看国产h片| 少妇高潮的动态图| 丝袜脚勾引网站| av福利片在线| 亚洲精品久久成人aⅴ小说| 日本爱情动作片www.在线观看| 全区人妻精品视频| 久久久精品区二区三区| 中国三级夫妇交换| 亚洲国产精品999| 丝袜美足系列| a级毛片在线看网站| 久久人人97超碰香蕉20202| 欧美精品国产亚洲| 伦精品一区二区三区| 婷婷色综合www| 欧美精品一区二区免费开放| 国产高清三级在线| 人人澡人人妻人| 精品国产露脸久久av麻豆| 99热6这里只有精品| 精品久久久久久电影网| 午夜视频国产福利| 18禁在线无遮挡免费观看视频| 亚洲av中文av极速乱| av线在线观看网站| 国产精品一区二区在线不卡| 熟女电影av网| 免费看av在线观看网站| 777米奇影视久久| 亚洲成av片中文字幕在线观看 | 妹子高潮喷水视频| 日韩中文字幕视频在线看片| 免费看光身美女| 丝袜脚勾引网站| 人人妻人人澡人人看| 另类亚洲欧美激情| 午夜老司机福利剧场| 国产精品偷伦视频观看了| 国产一区有黄有色的免费视频| 国产综合精华液| 国产免费一级a男人的天堂| 女人被躁到高潮嗷嗷叫费观| 国产亚洲午夜精品一区二区久久| 亚洲经典国产精华液单| a级毛色黄片| 久久久久视频综合| 在线天堂中文资源库| 丝袜脚勾引网站| 搡女人真爽免费视频火全软件| 亚洲精华国产精华液的使用体验| 午夜福利影视在线免费观看| 街头女战士在线观看网站| 国产成人精品一,二区| 亚洲 欧美一区二区三区| 国产成人精品无人区| 亚洲美女搞黄在线观看| 国产高清国产精品国产三级| 免费观看av网站的网址| 国产精品蜜桃在线观看| 国产亚洲午夜精品一区二区久久| 黑丝袜美女国产一区| 在线观看www视频免费| 大片电影免费在线观看免费| 久久久久久久久久久免费av| 麻豆精品久久久久久蜜桃| 日韩中文字幕视频在线看片| 少妇高潮的动态图| 亚洲精品成人av观看孕妇| 亚洲一级一片aⅴ在线观看| 久久鲁丝午夜福利片| 亚洲欧美一区二区三区国产| 色吧在线观看| 日韩,欧美,国产一区二区三区| 最近2019中文字幕mv第一页| 99热网站在线观看| 亚洲在久久综合| 水蜜桃什么品种好| 亚洲综合色惰| 99re6热这里在线精品视频| 黄色视频在线播放观看不卡| 精品国产一区二区久久| 日韩在线高清观看一区二区三区| 午夜福利影视在线免费观看| av福利片在线| 两个人免费观看高清视频| 成人无遮挡网站| 日本av免费视频播放| 精品人妻在线不人妻| 精品久久久精品久久久| 亚洲熟女精品中文字幕| 久久精品aⅴ一区二区三区四区 | 侵犯人妻中文字幕一二三四区|