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Published in: Rare Metals 6/2021

07-09-2020 | Communication

Organoimido functionalized trinuclear gold(I) clusters with fluorescent chromophore

Authors: Chun-Lin Lv, Chen-Huai Yang, Li-Ya Liu, Zhi-Cheng Zhang

Published in: Rare Metals | Issue 6/2021

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Abstract

The post-functionalization of gold nanoclusters with organic molecules into organic–inorganic hybrid functional materials is an efficient approach to develop multifunctional materials. By introducing 1-pyrenamine and 3-aminofluoranthene into [O(AuPPh3)3][BF4] with a covalent bond, two novel organoimido functionalized trinuclear gold nanoclusters [C16H9N(AuPPh3)3][BF4] (Au3–P) and [C6H4–C10H5N(AuPPh3)3][BF4] (Au3–F) have been successfully obtained. Their structures have been determined by electrospray ionization mass spectroscopy (ESI–MS) and single-crystal X-ray diffraction (SC-XRD), and the photoluminescence properties have been investigated from both experimental and theoretical aspects. It is found that the lowest-energy electronic transitions in the ultraviolet–visible (UV–Vis) absorption spectra of Au3–P (403 nm) and Au3–F (425 nm) exhibit a slight bathochromic shift compared to the corresponding transitions in the spectra of 1-pyrenamine and 3-aminofluoranthene, respectively. In addition, the dichloromethane solutions of Au3–P and Au3–F complexes clearly display blue and yellowish-green fluorescence, respectively. These results will help to design and prepare organic–inorganic nanocluster hybrid luminescent materials for potential applications in (bio)sensors, bioimaging and optoelectronic devices.

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Appendix
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Literature
[1]
go back to reference Yang Z, Mao Z, Xie Z, Zhang Y, Liu S, Zhao J, Xu J, Chi Z, Aldred MP. Recent advances in organic thermally activated delayed fluorescence materials. Chem Soc Rev. 2017;46(3):915. Yang Z, Mao Z, Xie Z, Zhang Y, Liu S, Zhao J, Xu J, Chi Z, Aldred MP. Recent advances in organic thermally activated delayed fluorescence materials. Chem Soc Rev. 2017;46(3):915.
[2]
go back to reference Liang F, Liu JX. Photoluminescence properties of hexagonal indium tin oxide nanopowders prepared by solvothermal method. Rare Met. 2018;37(1):47. Liang F, Liu JX. Photoluminescence properties of hexagonal indium tin oxide nanopowders prepared by solvothermal method. Rare Met. 2018;37(1):47.
[3]
go back to reference Choung KS, Marroquin K, Teets TS. Cyclometalated iridium-BODIPY ratiometric O2 sensors. Chem Sci. 2019;10(19):5124. Choung KS, Marroquin K, Teets TS. Cyclometalated iridium-BODIPY ratiometric O2 sensors. Chem Sci. 2019;10(19):5124.
[4]
go back to reference Wang JC, Luo HS, Zhang MH, Zu XH, Zhang J, Gu YX, Yi GB. Design and fabrication of a new fluorescence enhancement system of silver nanoparticles-decorated aligned silver nanowires. Rare Met. 2019;38(12):1178. Wang JC, Luo HS, Zhang MH, Zu XH, Zhang J, Gu YX, Yi GB. Design and fabrication of a new fluorescence enhancement system of silver nanoparticles-decorated aligned silver nanowires. Rare Met. 2019;38(12):1178.
[5]
go back to reference Fan L, Wang X, Ge J, Li F, Zhang C, Lin B, Shuang S, Dong C. A Golgi-targeted off-on fluorescent probe for real-time monitoring of pH changes in vivo. Chem Commun. 2019;55(47):6685. Fan L, Wang X, Ge J, Li F, Zhang C, Lin B, Shuang S, Dong C. A Golgi-targeted off-on fluorescent probe for real-time monitoring of pH changes in vivo. Chem Commun. 2019;55(47):6685.
[6]
go back to reference Luo X, Xue B, Feng G, Zhang J, Lin B, Zeng P, Li H, Yi H, Zhang XL, Zhu H, Nie Z. Lighting up the native viral RNA genome with a fluorogenic probe for the live-cell visualization of virus infection. J Am Chem Soc. 2019;141(13):5182. Luo X, Xue B, Feng G, Zhang J, Lin B, Zeng P, Li H, Yi H, Zhang XL, Zhu H, Nie Z. Lighting up the native viral RNA genome with a fluorogenic probe for the live-cell visualization of virus infection. J Am Chem Soc. 2019;141(13):5182.
[7]
go back to reference Fu Y, Han HH, Zhang J, He XP, Feringa BL, Tian H. Photocontrolled fluorescence “double-check” bioimaging enabled by a glycoprobe-protein hybrid. J Am Chem Soc. 2018;140(28):8671. Fu Y, Han HH, Zhang J, He XP, Feringa BL, Tian H. Photocontrolled fluorescence “double-check” bioimaging enabled by a glycoprobe-protein hybrid. J Am Chem Soc. 2018;140(28):8671.
[8]
go back to reference Gao JF, Yang JH, Zhang XY, Zhao J, Liu XW, Shi BF. Synthesis and fluorescence properties of CdTe:Eu3+ nanocrystals and core-shell SiO2-coated CdTe:Eu3+ nanospheres. Rare Met. 2019;38(10):989. Gao JF, Yang JH, Zhang XY, Zhao J, Liu XW, Shi BF. Synthesis and fluorescence properties of CdTe:Eu3+ nanocrystals and core-shell SiO2-coated CdTe:Eu3+ nanospheres. Rare Met. 2019;38(10):989.
[9]
go back to reference Gui R, Jin H, Bu X, Fu Y, Wang Z, Liu Q. Recent advances in dual-emission ratiometric fluorescence probes for chemo/biosensing and bioimaging of biomarkers. Coordin Chem Rev. 2019;383:82. Gui R, Jin H, Bu X, Fu Y, Wang Z, Liu Q. Recent advances in dual-emission ratiometric fluorescence probes for chemo/biosensing and bioimaging of biomarkers. Coordin Chem Rev. 2019;383:82.
[10]
go back to reference Gao RW, Teraphongphom NT, van den Berg NS, Martin BA, Oberhelman NJ, Divi V, Kaplan MJ, Hong SS, Lu G, Ertsey R, Tummers WSFJ, Gomez AJ, Holsinger FC, Kong CS, Colevas AD, Warram JM, Rosenthal EL. Determination of tumor margins with surgical specimen mapping using near-infrared fluorescence. Cancer Res. 2018;78(17):5144. Gao RW, Teraphongphom NT, van den Berg NS, Martin BA, Oberhelman NJ, Divi V, Kaplan MJ, Hong SS, Lu G, Ertsey R, Tummers WSFJ, Gomez AJ, Holsinger FC, Kong CS, Colevas AD, Warram JM, Rosenthal EL. Determination of tumor margins with surgical specimen mapping using near-infrared fluorescence. Cancer Res. 2018;78(17):5144.
[11]
go back to reference Huang D, Lin S, Wang Q, Zhang Y, Li C, Ji R, Wang M, Chen G, Wang Q. An NIR-II fluorescence/dual bioluminescence multiplexed imaging for in vivo visualizing the location, survival, and differentiation of transplanted stem cells. Adv Funct Mater. 2019;29(2):1806546. Huang D, Lin S, Wang Q, Zhang Y, Li C, Ji R, Wang M, Chen G, Wang Q. An NIR-II fluorescence/dual bioluminescence multiplexed imaging for in vivo visualizing the location, survival, and differentiation of transplanted stem cells. Adv Funct Mater. 2019;29(2):1806546.
[12]
go back to reference Rossdam C, Konze SA, Oberbeck A, Rapp E, Gerardy-Schahn R, Itzstein M, Buettner FFR. Approach for profiling of glycosphingolipid glycosylation by multiplexed capillary gel electrophoresis coupled to laser-induced fluorescence detection to identify cell-surface markers of human pluripotent stem cells and derived cardiomyocytes. Anal Chem. 2019;91(10):6413. Rossdam C, Konze SA, Oberbeck A, Rapp E, Gerardy-Schahn R, Itzstein M, Buettner FFR. Approach for profiling of glycosphingolipid glycosylation by multiplexed capillary gel electrophoresis coupled to laser-induced fluorescence detection to identify cell-surface markers of human pluripotent stem cells and derived cardiomyocytes. Anal Chem. 2019;91(10):6413.
[13]
go back to reference Wong MY, Zysman-Colman E. Purely organic thermally activated delayed fluorescence materials for organic light-emitting diodes. Adv Mater. 2017;29(22):1605444. Wong MY, Zysman-Colman E. Purely organic thermally activated delayed fluorescence materials for organic light-emitting diodes. Adv Mater. 2017;29(22):1605444.
[14]
go back to reference Miao Q, Pu K. Organic semiconducting agents for deep-tissue molecular imaging: second near-infrared fluorescence, self-luminescence, and photoacoustics. Adv Mater. 2018;30(49):1801778. Miao Q, Pu K. Organic semiconducting agents for deep-tissue molecular imaging: second near-infrared fluorescence, self-luminescence, and photoacoustics. Adv Mater. 2018;30(49):1801778.
[15]
go back to reference Chinen AB, Guan CM, Ferrer JR, Barnaby SN, Merkel TJ, Mirkin CA. Nanoparticle probes for the detection of cancer biomarkers, cells, and tissues by fluorescence. Chem Rev. 2015;115(19):10530. Chinen AB, Guan CM, Ferrer JR, Barnaby SN, Merkel TJ, Mirkin CA. Nanoparticle probes for the detection of cancer biomarkers, cells, and tissues by fluorescence. Chem Rev. 2015;115(19):10530.
[16]
go back to reference Li J, Yim D, Jang WD, Yoon J. Recent progress in the design and applications of fluorescence probes containing crown ethers. Chem Soc Rev. 2017;46(9):2437. Li J, Yim D, Jang WD, Yoon J. Recent progress in the design and applications of fluorescence probes containing crown ethers. Chem Soc Rev. 2017;46(9):2437.
[17]
go back to reference Yue GZ, Su S, Li N, Shuai MB, Lai XC, Astruc D, Zhao PX. Gold nanoparticles as sensors in the colorimetric and fluorescence detection of chemical warfare agents. Coordin Chem Rev. 2016;311:75. Yue GZ, Su S, Li N, Shuai MB, Lai XC, Astruc D, Zhao PX. Gold nanoparticles as sensors in the colorimetric and fluorescence detection of chemical warfare agents. Coordin Chem Rev. 2016;311:75.
[18]
go back to reference Saha ML, Yan X, Stang PJ. Photophysical properties of organoplatinum(II) compounds and derived self-assembled metallacycles and metallacages: fluorescence and its applications. Acc Chem Res. 2016;49(11):2527. Saha ML, Yan X, Stang PJ. Photophysical properties of organoplatinum(II) compounds and derived self-assembled metallacycles and metallacages: fluorescence and its applications. Acc Chem Res. 2016;49(11):2527.
[19]
go back to reference Ravotto L, Ceroni P. Aggregation induced phosphorescence of metal complexes: from principles to applications. Coordin Chem Rev. 2017;346:62. Ravotto L, Ceroni P. Aggregation induced phosphorescence of metal complexes: from principles to applications. Coordin Chem Rev. 2017;346:62.
[20]
go back to reference Li D, Song J, Yin P, Simotwo S, Bassler AJ, Aung YY, Roberts JE, Hardcastle KI, Hill CL, Liu T. Inorganic-organic hybrid vesicles with counterion- and pH-controlled fluorescent properties. J Am Chem Soc. 2011;133(35):14010. Li D, Song J, Yin P, Simotwo S, Bassler AJ, Aung YY, Roberts JE, Hardcastle KI, Hill CL, Liu T. Inorganic-organic hybrid vesicles with counterion- and pH-controlled fluorescent properties. J Am Chem Soc. 2011;133(35):14010.
[21]
go back to reference Parrot A, Bernard A, Jacquart A, Serapian SA, Bo C, Derat E, Oms O, Dolbecq A, Proust A, Métivier R, Mialane P, Izzet G. Photochromism and dual-color fluorescence in a polyoxometalate-benzospiropyran molecular switch. Angew Chem Int Ed. 2017;56(17):4872. Parrot A, Bernard A, Jacquart A, Serapian SA, Bo C, Derat E, Oms O, Dolbecq A, Proust A, Métivier R, Mialane P, Izzet G. Photochromism and dual-color fluorescence in a polyoxometalate-benzospiropyran molecular switch. Angew Chem Int Ed. 2017;56(17):4872.
[22]
go back to reference Higaki T, Li Q, Zhou M, Zhao S, Li Y, Li S, Jin R. Toward the tailoring chemistry of metal nanoclusters for enhancing functionalities. Acc Chem Res. 2018;51(11):2764. Higaki T, Li Q, Zhou M, Zhao S, Li Y, Li S, Jin R. Toward the tailoring chemistry of metal nanoclusters for enhancing functionalities. Acc Chem Res. 2018;51(11):2764.
[23]
go back to reference Lei Z, Wan XK, Yuan SF, Wang JQ, Wang QM. Alkynyl-protected gold and gold-silver nanoclusters. Dalton Trans. 2017;46(11):3427. Lei Z, Wan XK, Yuan SF, Wang JQ, Wang QM. Alkynyl-protected gold and gold-silver nanoclusters. Dalton Trans. 2017;46(11):3427.
[24]
go back to reference Desireddy A, Conn BE, Guo J, Yoon B, Barnett RN, Monahan BM, Kirschbaum K, Griffith WP, Whetten RL, Landman U, Bigioni TP. Ultrastable silver nanoparticles. Nature. 2013;501(7467):399. Desireddy A, Conn BE, Guo J, Yoon B, Barnett RN, Monahan BM, Kirschbaum K, Griffith WP, Whetten RL, Landman U, Bigioni TP. Ultrastable silver nanoparticles. Nature. 2013;501(7467):399.
[25]
go back to reference Yang H, Wang Y, Huang H, Gell L, Lehtovaara L, Malola S, Häkkinen H, Zheng N. All-thiol-stabilized Ag44 and Au12Ag32 nanoparticles with single-crystal structures. Nat Commun. 2013;4:2422. Yang H, Wang Y, Huang H, Gell L, Lehtovaara L, Malola S, Häkkinen H, Zheng N. All-thiol-stabilized Ag44 and Au12Ag32 nanoparticles with single-crystal structures. Nat Commun. 2013;4:2422.
[26]
go back to reference Zhou K, Qin C, Wang XL, Shao KZ, Yan LK, Su ZM. Self-assembly of an all-thiol-stabilized Ag28S23 high-nuclearity luminescent nanocluster with a “crab-like” shape. Dalton Trans. 2014;43(28):10695. Zhou K, Qin C, Wang XL, Shao KZ, Yan LK, Su ZM. Self-assembly of an all-thiol-stabilized Ag28S23 high-nuclearity luminescent nanocluster with a “crab-like” shape. Dalton Trans. 2014;43(28):10695.
[27]
go back to reference Lin YM, Guan ZJ, Liu KG, Jiang ZG, Wang QM. Assembly of silver alkynyl compounds with various nuclearities. Dalton Trans. 2015;44(5):2439. Lin YM, Guan ZJ, Liu KG, Jiang ZG, Wang QM. Assembly of silver alkynyl compounds with various nuclearities. Dalton Trans. 2015;44(5):2439.
[28]
go back to reference Yang H, Wang Y, Chen X, Zhao X, Gu L, Huang H, Yan J, Xu C, Li G, Wu J, Edwards AJ, Dittrich B, Tang Z, Wang D, Lehtovaara L, Häkkinen H, Zheng N. Plasmonic twinned silver nanoparticles with molecular precision. Nat Commun. 2016;7:12809. Yang H, Wang Y, Chen X, Zhao X, Gu L, Huang H, Yan J, Xu C, Li G, Wu J, Edwards AJ, Dittrich B, Tang Z, Wang D, Lehtovaara L, Häkkinen H, Zheng N. Plasmonic twinned silver nanoparticles with molecular precision. Nat Commun. 2016;7:12809.
[29]
go back to reference Femoni C, Iapalucci MC, Longoni G, Zacchini S, Zarra S. Icosahedral Pt-centered Pt13 and Pt19 carbonyl clusters decorated by [Cd5(μ–Br)5Br5–x(solvent)x]x+ rings reminiscent of the decoration of Au–Fe–CO and Au-thiolate nanoclusters: a unifying approach to their electron counts. J Am Chem Soc. 2011;133(8):2406. Femoni C, Iapalucci MC, Longoni G, Zacchini S, Zarra S. Icosahedral Pt-centered Pt13 and Pt19 carbonyl clusters decorated by [Cd5(μ–Br)5Br5–x(solvent)x]x+ rings reminiscent of the decoration of Au–Fe–CO and Au-thiolate nanoclusters: a unifying approach to their electron counts. J Am Chem Soc. 2011;133(8):2406.
[30]
go back to reference Mednikov EG, Dahl LF. Ion exchange of protons by coinage metals to give gold and silver encapsulation within a pseudo-D2d distorted face-capped Pd14 cubic kernel: [(µ14–M)Pd22(CO)20(PEt3)8]+ (M = Au, Ag). Angew Chem Int Ed. 2013;52(30):7813. Mednikov EG, Dahl LF. Ion exchange of protons by coinage metals to give gold and silver encapsulation within a pseudo-D2d distorted face-capped Pd14 cubic kernel: [(µ14–M)Pd22(CO)20(PEt3)8]+ (M = Au, Ag). Angew Chem Int Ed. 2013;52(30):7813.
[31]
go back to reference Teramoto M, Iwata K, Yamaura H, Kurashima K, Miyazawa K, Kurashige Y, Yamamoto K, Murahashi T. Three-dimensional sandwich nanocubes composed of 13-atom palladium core and hexakis-carbocycle shell. J Am Chem Soc. 2018;140(40):12682. Teramoto M, Iwata K, Yamaura H, Kurashima K, Miyazawa K, Kurashige Y, Yamamoto K, Murahashi T. Three-dimensional sandwich nanocubes composed of 13-atom palladium core and hexakis-carbocycle shell. J Am Chem Soc. 2018;140(40):12682.
[32]
go back to reference Dolzhnikov DS, Iapalucci MC, Longoni G, Tiozzo C, Zacchini S, Femoni C. New high-nuclearity carbonyl and carbonyl-substituted rhodium clusters and their relationships with polyicosahedral carbonyl-substituted palladium- and gold-thiolates. Inorg Chem. 2012;51(21):11214. Dolzhnikov DS, Iapalucci MC, Longoni G, Tiozzo C, Zacchini S, Femoni C. New high-nuclearity carbonyl and carbonyl-substituted rhodium clusters and their relationships with polyicosahedral carbonyl-substituted palladium- and gold-thiolates. Inorg Chem. 2012;51(21):11214.
[33]
go back to reference Adams RD, Zhang Q, Yang X. Two-dimensional bimetallic carbonyl cluster complexes with new properties and reactivities. J Am Chem Soc. 2011;133(40):15950. Adams RD, Zhang Q, Yang X. Two-dimensional bimetallic carbonyl cluster complexes with new properties and reactivities. J Am Chem Soc. 2011;133(40):15950.
[34]
go back to reference Song Y, Fu F, Zhang J, Chai J, Kang X, Li P, Li S, Zhou H, Zhu M. The magic Au60 nanocluster: a new cluster-assembled material with five Au13 building blocks. Angew Chem Int Ed. 2015;54(29):8430. Song Y, Fu F, Zhang J, Chai J, Kang X, Li P, Li S, Zhou H, Zhu M. The magic Au60 nanocluster: a new cluster-assembled material with five Au13 building blocks. Angew Chem Int Ed. 2015;54(29):8430.
[35]
go back to reference Zeng C, Chen Y, Kirschbaum K, Lambright KJ, Jin R. Emergence of hierarchical structural complexities in nanoparticles and their assembly. Science. 2016;354(6319):1580. Zeng C, Chen Y, Kirschbaum K, Lambright KJ, Jin R. Emergence of hierarchical structural complexities in nanoparticles and their assembly. Science. 2016;354(6319):1580.
[36]
go back to reference Yao LY, Lee TKM, Yam VWW. Thermodynamic-driven self-assembly: heterochiral self-sorting and structural reconfiguration in gold(I)-sulfido cluster system. J Am Chem Soc. 2016;138(23):7260. Yao LY, Lee TKM, Yam VWW. Thermodynamic-driven self-assembly: heterochiral self-sorting and structural reconfiguration in gold(I)-sulfido cluster system. J Am Chem Soc. 2016;138(23):7260.
[37]
go back to reference Yan N, Xia N, Liao L, Zhu M, Jin F, Jin R, Wu Z. Unraveling the long-pursued Au144 structure by X-ray crystallography. Sci Adv. 2018;4(10):eaat7259. Yan N, Xia N, Liao L, Zhu M, Jin F, Jin R, Wu Z. Unraveling the long-pursued Au144 structure by X-ray crystallography. Sci Adv. 2018;4(10):eaat7259.
[38]
go back to reference Wang S, Li Q, Kang X, Zhu M. Customizing the structure, composition, and properties of alloy nanoclusters by metal exchange. Acc Chem Res. 2018;51(11):2784. Wang S, Li Q, Kang X, Zhu M. Customizing the structure, composition, and properties of alloy nanoclusters by metal exchange. Acc Chem Res. 2018;51(11):2784.
[39]
go back to reference Zhou M, Higaki T, Hu G, Sfeir MY, Chen Y, Jiang D, Jin R. Three-orders-of-magnitude variation of carrier lifetimes with crystal phase of gold nanoclusters. Science. 2019;364(6437):279. Zhou M, Higaki T, Hu G, Sfeir MY, Chen Y, Jiang D, Jin R. Three-orders-of-magnitude variation of carrier lifetimes with crystal phase of gold nanoclusters. Science. 2019;364(6437):279.
[40]
go back to reference Schmidbaur H, Kolb A, Bissinger P. Synthesis and structure of trinuclear and novel tetranuclear gold(I) complexes derived from 8-aminoquinoline. Inorg Chem. 1992;31(21):4370. Schmidbaur H, Kolb A, Bissinger P. Synthesis and structure of trinuclear and novel tetranuclear gold(I) complexes derived from 8-aminoquinoline. Inorg Chem. 1992;31(21):4370.
[41]
go back to reference Xia A, James AJ, Sharp PR. Gold(I)-mediated rearrangement of 1,2-diphenylhydrazine to semidines. Organometallics. 1999;18(3):451. Xia A, James AJ, Sharp PR. Gold(I)-mediated rearrangement of 1,2-diphenylhydrazine to semidines. Organometallics. 1999;18(3):451.
[42]
go back to reference Flint BW, Yang Y, Sharp PR. Gold(I) heteroatom-substituted imido complexes. Amino nitrene loss from [(LAu)3(μ–NNR2)]+. Inorg Chem. 2000;39(3):602. Flint BW, Yang Y, Sharp PR. Gold(I) heteroatom-substituted imido complexes. Amino nitrene loss from [(LAu)3(μ–NNR2)]+. Inorg Chem. 2000;39(3):602.
[43]
go back to reference He X, Wang Y, Jiang H, Zhao L. Structurally well-defined sigmoidal gold clusters: probing the correlation between metal atom arrangement and chiroptical response. J Am Chem Soc. 2016;138(17):5634. He X, Wang Y, Jiang H, Zhao L. Structurally well-defined sigmoidal gold clusters: probing the correlation between metal atom arrangement and chiroptical response. J Am Chem Soc. 2016;138(17):5634.
[44]
go back to reference Guo P, Yang B, Zhang L, Zhao L. Temperature dependent chiroptical response of sigmoidal gold clusters: probing the stability of chiral metal clusters. Chem Sci. 2018;9(25):5614. Guo P, Yang B, Zhang L, Zhao L. Temperature dependent chiroptical response of sigmoidal gold clusters: probing the stability of chiral metal clusters. Chem Sci. 2018;9(25):5614.
Metadata
Title
Organoimido functionalized trinuclear gold(I) clusters with fluorescent chromophore
Authors
Chun-Lin Lv
Chen-Huai Yang
Li-Ya Liu
Zhi-Cheng Zhang
Publication date
07-09-2020
Publisher
Nonferrous Metals Society of China
Published in
Rare Metals / Issue 6/2021
Print ISSN: 1001-0521
Electronic ISSN: 1867-7185
DOI
https://doi.org/10.1007/s12598-020-01562-7

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