Electroactive Prussian Blue Analogues/TiO2 Nanocomposites Obtained through SILAR Assembly in Mesoporous Nanoarchitectures
The preparation of nanomaterials for energy applications such as intercalation batteries and materials that can act as substrates for water oxidation is a subject of major interest nowadays. In this work, we report the deposition of Prussian blue (PB) and its cobalt analogue (CoPBA) on mesoporous ti...
Saved in:
Published in | European journal of inorganic chemistry Vol. 27; no. 2 |
---|---|
Main Authors | , , , , , , , , |
Format | Journal Article |
Language | English |
Published |
Weinheim
Wiley Subscription Services, Inc
12.01.2024
|
Subjects | |
Online Access | Get full text |
ISSN | 1434-1948 1099-0682 |
DOI | 10.1002/ejic.202300576 |
Cover
Loading…
Abstract | The preparation of nanomaterials for energy applications such as intercalation batteries and materials that can act as substrates for water oxidation is a subject of major interest nowadays. In this work, we report the deposition of Prussian blue (PB) and its cobalt analogue (CoPBA) on mesoporous titania thin films (MTTF) using the successive ionic layer adsorption reaction (SILAR) technique under soft conditions. A bifunctional ligand, 1,10‐phenanthroline‐5,6‐dione (pd), was used to functionalize the titania surface and promote the growth of PB and CoPBA. The resulting PB@MTTF and CoPBA@MTTF nanocomposites were characterized using several techniques and it was determined that PB and CoPBA grow in a controlled and sequential manner, maintaining the mesoporous architecture. Both PB@MTTF and CoPBA@MTTF demonstrated very good electroactive properties, while CoPBA@MTTF exhibited water oxidation capabilities. The flexibility of this PBA@MTTF platform allows the incorporation of any labile transition metal ion or fragment into the structure of the coordination polymer embedded into a mesoporous matrix, opening the door for (photo)electrochemical devices and catalysts.
Ordered Prussian Blue Analogues (PBA) were deposited onto mesoporous TiO2 thin films by a successive ionic adsorption and reaction approach. These highly controlled nanocomposites permit an intimate contact between the PBA and the titania, while retaining the electrochemical and catalytic properties characteristic of the PBA materials for Oxygen Evolution Reaction (OER). |
---|---|
AbstractList | The preparation of nanomaterials for energy applications such as intercalation batteries and materials that can act as substrates for water oxidation is a subject of major interest nowadays. In this work, we report the deposition of Prussian blue (PB) and its cobalt analogue (CoPBA) on mesoporous titania thin films (MTTF) using the successive ionic layer adsorption reaction (SILAR) technique under soft conditions. A bifunctional ligand, 1,10‐phenanthroline‐5,6‐dione (pd), was used to functionalize the titania surface and promote the growth of PB and CoPBA. The resulting PB@MTTF and CoPBA@MTTF nanocomposites were characterized using several techniques and it was determined that PB and CoPBA grow in a controlled and sequential manner, maintaining the mesoporous architecture. Both PB@MTTF and CoPBA@MTTF demonstrated very good electroactive properties, while CoPBA@MTTF exhibited water oxidation capabilities. The flexibility of this PBA@MTTF platform allows the incorporation of any labile transition metal ion or fragment into the structure of the coordination polymer embedded into a mesoporous matrix, opening the door for (photo)electrochemical devices and catalysts. The preparation of nanomaterials for energy applications such as intercalation batteries and materials that can act as substrates for water oxidation is a subject of major interest nowadays. In this work, we report the deposition of Prussian blue (PB) and its cobalt analogue (CoPBA) on mesoporous titania thin films (MTTF) using the successive ionic layer adsorption reaction (SILAR) technique under soft conditions. A bifunctional ligand, 1,10‐phenanthroline‐5,6‐dione (pd), was used to functionalize the titania surface and promote the growth of PB and CoPBA. The resulting PB@MTTF and CoPBA@MTTF nanocomposites were characterized using several techniques and it was determined that PB and CoPBA grow in a controlled and sequential manner, maintaining the mesoporous architecture. Both PB@MTTF and CoPBA@MTTF demonstrated very good electroactive properties, while CoPBA@MTTF exhibited water oxidation capabilities. The flexibility of this PBA@MTTF platform allows the incorporation of any labile transition metal ion or fragment into the structure of the coordination polymer embedded into a mesoporous matrix, opening the door for (photo)electrochemical devices and catalysts. Ordered Prussian Blue Analogues (PBA) were deposited onto mesoporous TiO2 thin films by a successive ionic adsorption and reaction approach. These highly controlled nanocomposites permit an intimate contact between the PBA and the titania, while retaining the electrochemical and catalytic properties characteristic of the PBA materials for Oxygen Evolution Reaction (OER). |
Author | Fernández, Cynthia C. Angelomé, Paula C. Williams, Federico J. Caraballo, Rolando M. Soler‐Illia, Galo J. A. A. Tritto, Emiliano Vensaus, Priscila Fuertes, M. Cecilia Baraldo, Luis M. |
Author_xml | – sequence: 1 givenname: Priscila orcidid: 0000-0002-3859-5578 surname: Vensaus fullname: Vensaus, Priscila organization: Universidad Nacional de General San Martín-CONICET – sequence: 2 givenname: Rolando M. orcidid: 0000-0003-0471-2446 surname: Caraballo fullname: Caraballo, Rolando M. organization: Universidad Nacional de General San Martín-CONICET – sequence: 3 givenname: Emiliano surname: Tritto fullname: Tritto, Emiliano organization: CONICET – Universidad de Buenos Aires – sequence: 4 givenname: Cynthia C. orcidid: 0000-0002-2722-5395 surname: Fernández fullname: Fernández, Cynthia C. organization: Friedrich-Alexander-Universität Erlangen-Nürnberg – sequence: 5 givenname: Paula C. orcidid: 0000-0002-4402-5045 surname: Angelomé fullname: Angelomé, Paula C. organization: Comisión Nacional de Energía Atómica, CONICET – sequence: 6 givenname: M. Cecilia orcidid: 0000-0003-3376-830X surname: Fuertes fullname: Fuertes, M. Cecilia organization: Comisión Nacional de Energía Atómica, CONICET – sequence: 7 givenname: Federico J. orcidid: 0000-0002-6194-2734 surname: Williams fullname: Williams, Federico J. organization: CONICET – Universidad de Buenos Aires – sequence: 8 givenname: Galo J. A. A. orcidid: 0000-0001-9984-3806 surname: Soler‐Illia fullname: Soler‐Illia, Galo J. A. A. email: gsoler-illia@unsam.edu.ar organization: Universidad Nacional de General San Martín-CONICET – sequence: 9 givenname: Luis M. orcidid: 0000-0003-0666-5540 surname: Baraldo fullname: Baraldo, Luis M. email: baraldo@qi.fcen.uba.ar organization: CONICET – Universidad de Buenos Aires |
BookMark | eNo9kEtPwzAQhC1UJJ5XzpY4B9aPJPaxVAWKCkU8zpGTbKirNA52Asq_JwXU085qZ1aa74RMGtcgIRcMrhgAv8aNLa44cAEQp8kBOWagdQSJ4pNRSyEjpqU6IichbABAgEiOyTCvsei8M0Vnv5A--z4Eaxp6U_dIp42p3UeP4frNrjh9Mo0r3LZ1wXYY6CrvjG2wpN3au_5jTV8Xy-kLnYaA27weqG3oIwbXuvEafsPGF-sxWnS9x3BGDitTBzz_n6fk_Xb-NruPlqu7xWy6jFouRBLFWucxA45KlAJSLiWThvOqimWcjoJBrkyKHGSiSoNFlapSKZ7oKlaGIRen5PLvb-vd59ilyzau92OzkHHNRCx1LHYu_ef6tjUOWevt1vghY5Dt2GY7ttmebTZ_WMz2m_gBUMVyXQ |
ContentType | Journal Article |
Copyright | 2023 Wiley‐VCH GmbH 2024 Wiley‐VCH GmbH |
Copyright_xml | – notice: 2023 Wiley‐VCH GmbH – notice: 2024 Wiley‐VCH GmbH |
DBID | 7SR 7U5 8BQ 8FD JG9 L7M |
DOI | 10.1002/ejic.202300576 |
DatabaseName | Engineered Materials Abstracts Solid State and Superconductivity Abstracts METADEX Technology Research Database Materials Research Database Advanced Technologies Database with Aerospace |
DatabaseTitle | Materials Research Database Engineered Materials Abstracts Solid State and Superconductivity Abstracts Technology Research Database Advanced Technologies Database with Aerospace METADEX |
DatabaseTitleList | Materials Research Database |
DeliveryMethod | fulltext_linktorsrc |
Discipline | Chemistry |
EISSN | 1099-0682 |
EndPage | n/a |
ExternalDocumentID | EJIC202300576 |
Genre | article |
GrantInformation_xml | – fundername: CONICET funderid: PIP GI 11220210100917CO – fundername: UNSAM – fundername: UBA – fundername: ANPCyT funderid: PICT 2015-0351; PICT 2017-1028; 2017-1133; 2017-4651; 2018-04236; 2020-03130 – fundername: UBA funderid: UBACyT 20020130100534BA – fundername: CONICET |
GroupedDBID | -~X .3N .GA 05W 0R~ 10A 1L6 1OC 33P 3SF 3WU 4.4 4ZD 50Y 50Z 51W 51X 52M 52N 52O 52P 52S 52T 52U 52W 52X 5GY 5VS 66C 702 77Q 7PT 8-0 8-1 8-3 8-4 8-5 8UM 930 A03 AAESR AAEVG AAHHS AAHQN AAMNL AANLZ AAONW AAXRX AAYCA AAZKR ABCQN ABCUV ABDBF ABEML ABIJN ABLJU ABPVW ACAHQ ACCFJ ACCZN ACNCT ACPOU ACSCC ACUHS ACXBN ACXQS ADBBV ADEOM ADIZJ ADKYN ADMGS ADOZA ADXAS ADZMN ADZOD AEEZP AEIGN AEIMD AENEX AEQDE AEUQT AEUYR AFBPY AFFPM AFGKR AFPWT AFWVQ AFZJQ AHBTC AITYG AIURR AIWBW AJBDE AJXKR ALMA_UNASSIGNED_HOLDINGS ALUQN ALVPJ AMBMR AMYDB ATUGU AUFTA AZBYB BAFTC BDRZF BFHJK BHBCM BMNLL BMXJE BROTX BRXPI BY8 CS3 D-E D-F DCZOG DPXWK DR2 DRFUL DRSTM DU5 EBS F00 F01 F04 F5P G-S G.N GNP GODZA HBH HGLYW HHY HHZ HZ~ IX1 JPC KQQ LATKE LAW LC2 LC3 LEEKS LH4 LITHE LOXES LP6 LP7 LUTES LYRES MEWTI MK4 MRFUL MRSTM MSFUL MSSTM MXFUL MXSTM N04 N05 N9A NNB O66 O9- OIG P2P P2W P2X P4D Q.N Q11 QB0 QRW R.K ROL RWI RX1 SUPJJ TN5 UB1 UPT V2E W8V W99 WBFHL WBKPD WH7 WIH WIK WJL WOHZO WQJ WRC WXSBR WYISQ XG1 XPP XV2 ZZTAW ~IA ~WT 1OB 7SR 7U5 8BQ 8FD AAMMB AEFGJ AEYWJ AGHNM AGXDD AGYGG AIDQK AIDYY JG9 L7M |
ID | FETCH-LOGICAL-p2336-599b5102e83d30724414a22ff5457a2210b8a7e20468daecf78d88269f58a1e23 |
IEDL.DBID | DR2 |
ISSN | 1434-1948 |
IngestDate | Wed Aug 13 10:58:18 EDT 2025 Wed Jan 22 16:15:22 EST 2025 |
IsPeerReviewed | true |
IsScholarly | true |
Issue | 2 |
Language | English |
LinkModel | DirectLink |
MergedId | FETCHMERGED-LOGICAL-p2336-599b5102e83d30724414a22ff5457a2210b8a7e20468daecf78d88269f58a1e23 |
Notes | These authors contributed equally to this work. ObjectType-Article-1 SourceType-Scholarly Journals-1 ObjectType-Feature-2 content type line 14 |
ORCID | 0000-0002-2722-5395 0000-0002-4402-5045 0000-0003-0471-2446 0000-0002-6194-2734 0000-0002-3859-5578 0000-0003-0666-5540 0000-0001-9984-3806 0000-0003-3376-830X |
PQID | 2913549532 |
PQPubID | 2030176 |
PageCount | 11 |
ParticipantIDs | proquest_journals_2913549532 wiley_primary_10_1002_ejic_202300576_EJIC202300576 |
PublicationCentury | 2000 |
PublicationDate | January 12, 2024 |
PublicationDateYYYYMMDD | 2024-01-12 |
PublicationDate_xml | – month: 01 year: 2024 text: January 12, 2024 day: 12 |
PublicationDecade | 2020 |
PublicationPlace | Weinheim |
PublicationPlace_xml | – name: Weinheim |
PublicationTitle | European journal of inorganic chemistry |
PublicationYear | 2024 |
Publisher | Wiley Subscription Services, Inc |
Publisher_xml | – name: Wiley Subscription Services, Inc |
References | 2021; 27 2018; 122 2019; 2019 2013; 3 2017; 1 2007; 107 2009; 42 2015; 226 2020; 120 2023; 8 2019; 12 2003; 14 2009; 113 2008; 5 1982; 104 1981; 85 2022; 28 2009; 48 1985; 24 2020; 407 2020; 5 2018; 8 2018; 3 2018; 2 2021; 31 2010; 26 2020; 3 2010; 1 2018; 5 2015; 137 2023; 26 2021; 39 2002; 106 2003; 48 2019; 119 2016; 116 2016; 81 2001; 17 2008; 20 2012; 24 2010; 2 2003; 125 2010; 5 2005; 78 2009; 15 2007; 603 2018; 140 2006; 51 2019; 2 2011; 40 2013; 42 2011; 83 2002; 535 2008 2006; 18 2003 2010; 160 2007; 607 1972; 238 2020; 309 2014; 43 2009; 139 2018; 24 2016; 55 2021; 57 2010; 49 2015; 27 2021 2007; 111 2018; 357 2019; 48 2016; 65 2010; 132 2022; 13 2013; 135 2020; 25 2020; 24 2014; 30 2018; 11 2012; 4 2005; 17 2016; 8 2008; 130 |
References_xml | – volume: 8 start-page: 24983 year: 2016 end-page: 24988 publication-title: ACS Appl. Mater. Interfaces – volume: 20 start-page: 35 year: 2008 end-page: 54 publication-title: Chem. Mater. – volume: 111 start-page: 3409 year: 2007 end-page: 3415 publication-title: J. Phys. Chem. A – volume: 113 start-page: 12645 year: 2009 end-page: 12652 publication-title: J. Phys. Chem. C – volume: 104 start-page: 4767 year: 1982 end-page: 4772 publication-title: J. Am. Chem. Soc. – volume: 48 start-page: 7494 year: 2009 publication-title: Chem. Commun. – volume: 24 start-page: 9154 year: 2020 end-page: 9196 publication-title: Chem. Soc. Rev. – volume: 132 start-page: 16017 year: 2010 end-page: 16029 publication-title: J. Am. Chem. Soc. – volume: 2 start-page: 510 year: 2018 end-page: 537 publication-title: Sustain. Energy Fuels – volume: 25 start-page: 585 year: 2020 end-page: 612 publication-title: Energy Storage Mater. – volume: 122 start-page: 13095 year: 2018 end-page: 13105 publication-title: J. Phys. Chem. C – volume: 106 start-page: 3612 year: 2002 end-page: 3621 publication-title: J. Phys. Chem. B – volume: 309 year: 2020 publication-title: Sens. Actuators B – volume: 1 start-page: 0003 year: 2017 publication-title: Nat. Chem. Rev. – volume: 27 start-page: 1303 year: 2015 end-page: 1340 publication-title: Electroanalysis – volume: 535 start-page: 113 year: 2002 end-page: 119 publication-title: J. Electroanal. Chem. – volume: 85 start-page: 1225 year: 1981 end-page: 1231 publication-title: J. Phys. Chem. – volume: 26 year: 2023 publication-title: Eur. J. Inorg. Chem. – volume: 24 start-page: 1837 year: 2012 end-page: 1845 publication-title: Chem. Mater. – volume: 1 start-page: 2655 year: 2010 end-page: 2661 publication-title: J. Phys. Chem. Lett. – volume: 607 start-page: 83 year: 2007 end-page: 89 publication-title: J. Electroanal. Chem. – volume: 42 start-page: 4098 year: 2013 publication-title: Chem. Soc. Rev. – volume: 2019 start-page: 2040 year: 2019 end-page: 2057 publication-title: Eur. J. Inorg. Chem. – volume: 2 start-page: 290 year: 2019 end-page: 310 publication-title: Batteries & Supercaps – volume: 3 start-page: 4 year: 2013 end-page: 6 publication-title: Nat. Clim. Change – volume: 135 start-page: 16977 year: 2013 end-page: 16987 publication-title: J. Am. Chem. Soc. – volume: 51 start-page: 6373 year: 2006 end-page: 6383 publication-title: Electrochim. Acta – volume: 55 start-page: 4301 year: 2016 end-page: 4307 publication-title: Inorg. Chem. – volume: 15 start-page: 6552 year: 2009 end-page: 6559 publication-title: Chem. Eur. J. – volume: 24 start-page: 4856 year: 2018 end-page: 4863 publication-title: Chem. Eur. J. – volume: 17 start-page: 7706 year: 2001 end-page: 7709 publication-title: Langmuir – volume: 48 start-page: 4811 year: 2019 end-page: 4822 publication-title: Dalton Trans. – volume: 407 year: 2020 publication-title: Coord. Chem. Rev. – year: 2008 – volume: 43 start-page: 7681 year: 2014 end-page: 7717 publication-title: Chem. Soc. Rev. – volume: 28 year: 2022 publication-title: Chem. Eur. J. – volume: 5 start-page: 438 year: 2018 end-page: 445 publication-title: Inorg. Chem. Front. – volume: 8 start-page: 6375 year: 2018 end-page: 6383 publication-title: Catal. Sci. Technol. – volume: 116 start-page: 14120 year: 2016 end-page: 14136 publication-title: Chem. Rev. – volume: 14 start-page: 2781 year: 2003 publication-title: Dalton Trans. – volume: 107 start-page: 2891 year: 2007 end-page: 2959 publication-title: Chem. Rev. – volume: 65 start-page: 800 year: 2016 end-page: 822 publication-title: Renewable Sustainable Energy Rev. – volume: 119 start-page: 3453 year: 2019 end-page: 3471 publication-title: Chem. Rev. – volume: 120 start-page: 919 year: 2020 end-page: 985 publication-title: Chem. Rev. – volume: 24 start-page: 4263 year: 1985 end-page: 4267 publication-title: Inorg. Chem. – volume: 42 start-page: 4036 year: 2013 end-page: 4053 publication-title: Chem. Soc. Rev. – volume: 2 start-page: 839 year: 2010 end-page: 845 publication-title: ChemCatChem – volume: 42 start-page: 1954 year: 2009 end-page: 1965 publication-title: Acc. Chem. Res. – volume: 18 start-page: 934 year: 2006 end-page: 938 publication-title: Adv. Mater. – volume: 357 start-page: 449 year: 2018 end-page: 456 publication-title: J. Hazard. Mater. – volume: 2 start-page: 2339 year: 2010 end-page: 2346 publication-title: ACS Appl. Mater. Interfaces – start-page: 195 year: 2021 end-page: 229 – volume: 603 start-page: 59 year: 2007 end-page: 66 publication-title: J. Electroanal. Chem. – volume: 48 start-page: 53 year: 2003 end-page: 229 publication-title: Surf. Sci. Rep. – volume: 140 start-page: 11286 year: 2018 end-page: 11292 publication-title: J. Am. Chem. Soc. – volume: 81 start-page: 708 year: 2016 end-page: 713 publication-title: ChemPlusChem – volume: 4 start-page: 2549 year: 2012 publication-title: Nanoscale – year: 2003 – volume: 130 start-page: 14329 year: 2008 end-page: 14338 publication-title: J. Am. Chem. Soc. – volume: 5 start-page: 2001 year: 2010 end-page: 2015 publication-title: Chem. Asian J. – volume: 5 start-page: 70 year: 2020 end-page: 71 publication-title: ACS Energy Lett. – volume: 17 start-page: 322 year: 2005 end-page: 331 publication-title: Chem. Mater. – volume: 3 start-page: 8448 year: 2020 end-page: 8456 publication-title: ACS Appl. Energ. Mater. – volume: 135 start-page: 13270 year: 2013 end-page: 13273 publication-title: J. Am. Chem. Soc. – volume: 226 start-page: 24 year: 2015 end-page: 36 publication-title: Adv. Colloid Interface Sci. – volume: 30 start-page: 10513 year: 2014 end-page: 10521 publication-title: Langmuir – volume: 12 start-page: 1103 year: 2019 publication-title: Materials – volume: 125 start-page: 9770 year: 2003 end-page: 9786 publication-title: J. Am. Chem. Soc. – volume: 3 start-page: 334 year: 2018 end-page: 340 publication-title: Nat. Energy – volume: 238 start-page: 37 year: 1972 end-page: 38 publication-title: Nature – volume: 26 start-page: 890 year: 2010 end-page: 893 publication-title: Biosens. Bioelectron. – volume: 49 start-page: 209 year: 2010 end-page: 215 publication-title: Inorg. Chem. – volume: 137 start-page: 4347 year: 2015 end-page: 4357 publication-title: J. Am. Chem. Soc. – volume: 42 start-page: 1890 year: 2009 end-page: 1898 publication-title: Acc. Chem. Res. – volume: 31 year: 2021 publication-title: Adv. Funct. Mater. – volume: 78 start-page: 661 year: 2005 end-page: 669 publication-title: Sol. Energy – volume: 8 start-page: 109 year: 2023 end-page: 122 publication-title: Nat. Rev. Mater. – volume: 83 start-page: 749 year: 2011 end-page: 768 publication-title: Pure Appl. Chem. – volume: 5 start-page: 272 year: 2008 end-page: 280 publication-title: Small – volume: 40 start-page: 563 year: 2011 end-page: 574 publication-title: Chem. Soc. Rev. – volume: 13 start-page: 4104 year: 2022 end-page: 4110 publication-title: J. Phys. Chem. Lett. – volume: 139 start-page: 244 year: 2009 end-page: 260 publication-title: Catal. Today – volume: 57 start-page: 6744 year: 2021 end-page: 6747 publication-title: Chem. Commun. – volume: 11 start-page: 2768 year: 2018 end-page: 2783 publication-title: Energy Environ. Sci. – volume: 39 start-page: 2347 year: 2021 end-page: 2353 publication-title: Chin. J. Chem. – volume: 27 start-page: 3638 year: 2021 end-page: 3649 publication-title: Chem. Eur. J. – volume: 160 start-page: 1234 year: 2010 end-page: 1240 publication-title: Synth. Met. |
SSID | ssj0003036 |
Score | 2.4290817 |
Snippet | The preparation of nanomaterials for energy applications such as intercalation batteries and materials that can act as substrates for water oxidation is a... |
SourceID | proquest wiley |
SourceType | Aggregation Database Publisher |
SubjectTerms | Coordination polymers Energy conversion mesoporous materials Nanocomposites Nanomaterials Oxidation Pigments Prussian Blue Analogues Substrates supported catalysts Thin films Titanium dioxide Transition metals water splitting |
Title | Electroactive Prussian Blue Analogues/TiO2 Nanocomposites Obtained through SILAR Assembly in Mesoporous Nanoarchitectures |
URI | https://onlinelibrary.wiley.com/doi/abs/10.1002%2Fejic.202300576 https://www.proquest.com/docview/2913549532 |
Volume | 27 |
hasFullText | 1 |
inHoldings | 1 |
isFullTextHit | |
isPrint | |
link | http://utb.summon.serialssolutions.com/2.0.0/link/0/eLvHCXMwpV07b8IwELYqlnbpuyotrTx0NRDn5YwUgQCVUlGQ2CI7sSVaCoiQgf763iU8O7abMzhK7LvzZ9_n7wh5UpGEZVUa5jtGMcfhMRMAnBnXth9LJ6qaCDO63VevNXQ6I3e0d4s_14fYHrihZ2TxGh1cqqSyEw3VH2OUIOSot-6j5jYSthAV9Xf6URifs-tFtsNgty42qo1VXjnsfoAv91Fqtsw0z4jcfGDOLvksp0tVjr5_aTf-5w_Oyekag9JabjQX5EhPL8lxfVP67YqsGnlxHJkFQ_q2SBO8a0mfJ6mmKGOC5z1JZTDucQrheYa8dCR_6YT2FJ416JiuCwDR9_ZLrU8xt_ylJis6ntKuTmaA-mdpknXeT2Uk12TYbAzqLbau0cDm3LY95gaBArfmWtgxhAsAC5YjOTcGkJkPDauqhPQ1h224iKWOjC9iAPVeYFwhLc3tG1KYzqb6llDhisiNg8AE8JoIdlKeCiwDhiQtE3uRXSSlzRyFa0dLQh5YtoscWV4kPBvscJ7LdIS5IDMPcZjD7TCHjU67vn26-0une3ICbSTvMIuXSGG5SPUDQJOleszM7wcBGdzu |
linkProvider | Wiley-Blackwell |
linkToHtml | http://utb.summon.serialssolutions.com/2.0.0/link/0/eLvHCXMwpV1LT8MwDI54HMaFN-JNDlyzrekrPcI0tI0N0NgkblXSJtJgbGhdD-PXY7frHhzh1lZK1Sa289mxPxNyqyIJ26o0zHeMYo7DYyYAODOubT-WTlQ1EZ7odp68Rt9pvblFNiHWwuT8EIuAG2pGZq9RwTEgXVmyhur3AXIQciRc971Nso1tvTOvqrtkkEILnRUY2Q4Df10UvI1VXlkfv4YwV3FqttE87BFVfGKeX_JRTqeqHH3_Ym_81z_sk905DKV3udwckA09OiSlWtH97YjM6nl_HJnZQ_oySRMst6T3w1RTZDLBkE9S6Q2eOQULPcbUdMz_0gl9Vhhu0DGd9wCir832XZfi8fKnGs7oYEQ7OhkD8B-nSTZ49TQjOSb9h3qv1mDzNg3si9u2x9wgUKDZXAs7BosBeMFyJOfGADjz4cKqKiF9zcETF7HUkfFFDLjeC4wrpKW5fUK2RuORPiVUuCJy4yAwAbwmAmfKU4FlQJakZWIvss_IZbFI4VzXkpAHlu1imiw_Izyb7fArZ-oIc05mHuI0h4tpDuutZm1xd_6XQTek1Oh12mG7-fR4QXbgOebyMItfkq3pJNVXgFSm6jqTxR_eouEJ |
linkToPdf | http://utb.summon.serialssolutions.com/2.0.0/link/0/eLvHCXMwpV1LT8MwDI5gSMCFN-IxIAeuYWv6So9jDzHe4iFxq5ImkQZjndb1AL8eu93G4Ai3tlKq1rGdz7HzmZBTlUhYVqVloWcV8zyumQDgzLhxQy29pG4TzOje3AYXz97li_8yd4q_5IeYbbihZRT-Gg18qG3tmzTUvPaQgpAj33oYLJIlL6gL1OvWwzeBFDro4nyR6zEI18WUtrHOaz_H_wCY8zC1WGc660ROv7AsL3k7y8fqLPn8Rd74n1_YIGsTEEobpdZskgUz2CIrzWnvt23y0S6748jCG9L7UZ7hYUt63s8NRR4T3PDJak-9O07BP6dYmI7VXyajdwo3G4ymkw5A9LF73XigmFx-V_0P2hvQG5OlAPvTPCsGz-cysh3y3Gk_NS_YpEkDG3LXDZgfRQrsmhvhavAXgBYcT3JuLUCzEC6cuhIyNBzicKGlSWwoNKD6ILK-kI7h7i6pDNKB2SNU-CLxdRTZCF6TQCgVqMixoEnSsTpI3H1Snc5RPLG0LOaR4_pYJMv3CS-EHQ9Lno64ZGTmMYo5nok5bl92m7O7g78MOiHL961OfN29vTokq_AYC3mYw6ukMh7l5ghgylgdF5r4BWs238E |
openUrl | ctx_ver=Z39.88-2004&ctx_enc=info%3Aofi%2Fenc%3AUTF-8&rfr_id=info%3Asid%2Fsummon.serialssolutions.com&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Ajournal&rft.genre=article&rft.atitle=Electroactive+Prussian+Blue+Analogues%2FTiO2+Nanocomposites+Obtained+through+SILAR+Assembly+in+Mesoporous+Nanoarchitectures&rft.jtitle=European+journal+of+inorganic+chemistry&rft.au=Vensaus%2C+Priscila&rft.au=Caraballo%2C+Rolando+M.&rft.au=Tritto%2C+Emiliano&rft.au=Fern%C3%A1ndez%2C+Cynthia+C.&rft.date=2024-01-12&rft.issn=1434-1948&rft.eissn=1099-0682&rft.volume=27&rft.issue=2&rft.epage=n%2Fa&rft_id=info:doi/10.1002%2Fejic.202300576&rft.externalDBID=10.1002%252Fejic.202300576&rft.externalDocID=EJIC202300576 |
thumbnail_l | http://covers-cdn.summon.serialssolutions.com/index.aspx?isbn=/lc.gif&issn=1434-1948&client=summon |
thumbnail_m | http://covers-cdn.summon.serialssolutions.com/index.aspx?isbn=/mc.gif&issn=1434-1948&client=summon |
thumbnail_s | http://covers-cdn.summon.serialssolutions.com/index.aspx?isbn=/sc.gif&issn=1434-1948&client=summon |