Colorimetric assay based on NiCo 2 S 4 @N,S-rGO nanozyme for sensitive detection of H 2 O 2 and glucose in serum and urine samples
Traditional bimetallic sulfide-based nanomaterials often have a small specific surface area (SSA), low dispersion, and poor conductivity, thereby limiting their wide applications in the nanozyme-catalytic field. To address the above issues, we herein integrated NiCo 2 S 4 with N,S-rGO to fabricate a...
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creator | Ye, Hanzhang Ding, Yongli Liu, Tingting Li, Jiani Wang, Qi Li, Yuhao Gu, Jingjing Zhang, Zhanen Wang, Xuedong |
description | Traditional bimetallic sulfide-based nanomaterials often have a small specific surface area (SSA), low dispersion, and poor conductivity, thereby limiting their wide applications in the nanozyme-catalytic field. To address the above issues, we herein integrated NiCo
2
S
4
with N,S-rGO to fabricate a nanocomposite (NiCo
2
S
4
@N,S-rGO), which showed a stronger peroxidase–mimetic activity than its pristine components. The SSA (155.8 m
2
g
−1
) of NiCo
2
S
4
@N,S-rGO increased by ∼2-fold compared to NiCo
2
S
4
with a pore size of 7–9 nm, thus providing more active sites and charge transfer channels. Based on the Michaelis–Menten equation, the affinity of this nanocomposite increased 40% and 1.1∼10.6-fold compared with NiCo
2
S
4
with N,S-rGO, respectively, highlighting the significant enhancement of the peroxidase-like activity. The enhanced activity of this nanocomposite is derived from the joint participation of ˙OH, ˙O
2
−
, and photogenerated holes (h
+
), and was dominated by h
+
. To sum up, N,S-codoping, rich S-vacancies, and multi-valence states for this nanocomposite facilitate electron transfer and accelerate reaction processes. The nanocomposite-based colorimetric sensor gave low detection limits for H
2
O
2
(12 μM) and glucose (0.3 μM). In comparison with the results detected by a common glucose meter, this sensor provided the relative recoveries across the range of 97.4–101.8%, demonstrating its high accuracy. Moreover, it exhibited excellent selectivity for glucose assay with little interference from common co-existing macromolecules/ions, as well as high reusability (>6 times). Collectively, the newly developed colorimetric sensor yields a promising methodology for practical applications in H
2
O
2
and glucose detection with advantages of highly visual resolution, simple operation, convenient use, and satisfactory sensitivity. |
doi_str_mv | 10.1039/D2RA03444A |
format | Article |
fullrecord | <record><control><sourceid>crossref</sourceid><recordid>TN_cdi_crossref_primary_10_1039_D2RA03444A</recordid><sourceformat>XML</sourceformat><sourcesystem>PC</sourcesystem><sourcerecordid>10_1039_D2RA03444A</sourcerecordid><originalsourceid>FETCH-LOGICAL-c76A-a4395c35c00181706b5a0578e32a38013c2c0ec7f2baacd32e9e2e662aee24423</originalsourceid><addsrcrecordid>eNpNUF1Lw0AQPETBUvviL9hnMXpfuTRvhqitUFqwfQ_Xy0ZOkrtylwj10V9u_ABdWHYYZhZmCLlk9IZRkd_e8-eCCillcUImnEqVcKry03_4nMxifKXjqJRxxSbko_StD7bDPlgDOkZ9hL2OWIN3sLalBw5bkHC3vt4mYbEBp51_P3YIjQ8Q0UXb2zeEGns0vR1NvoHlaNqMq10NL-1gfESwblSHofsmh2AdQtTdocV4Qc4a3Uac_d4p2T0-7MplstosnspilZhMFYmWIk-NSA2lbM4yqvappmk2R8G1mFMmDDcUTdbwvdamFhxz5KgU14hcSi6m5OrnrQk-xoBNdRhz63CsGK2--qv--hOfe9tgrQ</addsrcrecordid><sourcetype>Aggregation Database</sourcetype><iscdi>true</iscdi><recordtype>article</recordtype></control><display><type>article</type><title>Colorimetric assay based on NiCo 2 S 4 @N,S-rGO nanozyme for sensitive detection of H 2 O 2 and glucose in serum and urine samples</title><source>DOAJ Directory of Open Access Journals</source><source>PubMed Central Open Access</source><source>EZB-FREE-00999 freely available EZB journals</source><source>PubMed Central</source><creator>Ye, Hanzhang ; Ding, Yongli ; Liu, Tingting ; Li, Jiani ; Wang, Qi ; Li, Yuhao ; Gu, Jingjing ; Zhang, Zhanen ; Wang, Xuedong</creator><creatorcontrib>Ye, Hanzhang ; Ding, Yongli ; Liu, Tingting ; Li, Jiani ; Wang, Qi ; Li, Yuhao ; Gu, Jingjing ; Zhang, Zhanen ; Wang, Xuedong</creatorcontrib><description>Traditional bimetallic sulfide-based nanomaterials often have a small specific surface area (SSA), low dispersion, and poor conductivity, thereby limiting their wide applications in the nanozyme-catalytic field. To address the above issues, we herein integrated NiCo
2
S
4
with N,S-rGO to fabricate a nanocomposite (NiCo
2
S
4
@N,S-rGO), which showed a stronger peroxidase–mimetic activity than its pristine components. The SSA (155.8 m
2
g
−1
) of NiCo
2
S
4
@N,S-rGO increased by ∼2-fold compared to NiCo
2
S
4
with a pore size of 7–9 nm, thus providing more active sites and charge transfer channels. Based on the Michaelis–Menten equation, the affinity of this nanocomposite increased 40% and 1.1∼10.6-fold compared with NiCo
2
S
4
with N,S-rGO, respectively, highlighting the significant enhancement of the peroxidase-like activity. The enhanced activity of this nanocomposite is derived from the joint participation of ˙OH, ˙O
2
−
, and photogenerated holes (h
+
), and was dominated by h
+
. To sum up, N,S-codoping, rich S-vacancies, and multi-valence states for this nanocomposite facilitate electron transfer and accelerate reaction processes. The nanocomposite-based colorimetric sensor gave low detection limits for H
2
O
2
(12 μM) and glucose (0.3 μM). In comparison with the results detected by a common glucose meter, this sensor provided the relative recoveries across the range of 97.4–101.8%, demonstrating its high accuracy. Moreover, it exhibited excellent selectivity for glucose assay with little interference from common co-existing macromolecules/ions, as well as high reusability (>6 times). Collectively, the newly developed colorimetric sensor yields a promising methodology for practical applications in H
2
O
2
and glucose detection with advantages of highly visual resolution, simple operation, convenient use, and satisfactory sensitivity.</description><identifier>ISSN: 2046-2069</identifier><identifier>EISSN: 2046-2069</identifier><identifier>DOI: 10.1039/D2RA03444A</identifier><language>eng</language><ispartof>RSC advances, 2022-07, Vol.12 (32), p.20838-20849</ispartof><lds50>peer_reviewed</lds50><woscitedreferencessubscribed>false</woscitedreferencessubscribed><citedby>FETCH-LOGICAL-c76A-a4395c35c00181706b5a0578e32a38013c2c0ec7f2baacd32e9e2e662aee24423</citedby><cites>FETCH-LOGICAL-c76A-a4395c35c00181706b5a0578e32a38013c2c0ec7f2baacd32e9e2e662aee24423</cites><orcidid>0000-0001-7732-1695 ; 0000-0002-6287-1843</orcidid></display><links><openurl>$$Topenurl_article</openurl><openurlfulltext>$$Topenurlfull_article</openurlfulltext><thumbnail>$$Tsyndetics_thumb_exl</thumbnail><link.rule.ids>314,780,784,864,27924,27925</link.rule.ids></links><search><creatorcontrib>Ye, Hanzhang</creatorcontrib><creatorcontrib>Ding, Yongli</creatorcontrib><creatorcontrib>Liu, Tingting</creatorcontrib><creatorcontrib>Li, Jiani</creatorcontrib><creatorcontrib>Wang, Qi</creatorcontrib><creatorcontrib>Li, Yuhao</creatorcontrib><creatorcontrib>Gu, Jingjing</creatorcontrib><creatorcontrib>Zhang, Zhanen</creatorcontrib><creatorcontrib>Wang, Xuedong</creatorcontrib><title>Colorimetric assay based on NiCo 2 S 4 @N,S-rGO nanozyme for sensitive detection of H 2 O 2 and glucose in serum and urine samples</title><title>RSC advances</title><description>Traditional bimetallic sulfide-based nanomaterials often have a small specific surface area (SSA), low dispersion, and poor conductivity, thereby limiting their wide applications in the nanozyme-catalytic field. To address the above issues, we herein integrated NiCo
2
S
4
with N,S-rGO to fabricate a nanocomposite (NiCo
2
S
4
@N,S-rGO), which showed a stronger peroxidase–mimetic activity than its pristine components. The SSA (155.8 m
2
g
−1
) of NiCo
2
S
4
@N,S-rGO increased by ∼2-fold compared to NiCo
2
S
4
with a pore size of 7–9 nm, thus providing more active sites and charge transfer channels. Based on the Michaelis–Menten equation, the affinity of this nanocomposite increased 40% and 1.1∼10.6-fold compared with NiCo
2
S
4
with N,S-rGO, respectively, highlighting the significant enhancement of the peroxidase-like activity. The enhanced activity of this nanocomposite is derived from the joint participation of ˙OH, ˙O
2
−
, and photogenerated holes (h
+
), and was dominated by h
+
. To sum up, N,S-codoping, rich S-vacancies, and multi-valence states for this nanocomposite facilitate electron transfer and accelerate reaction processes. The nanocomposite-based colorimetric sensor gave low detection limits for H
2
O
2
(12 μM) and glucose (0.3 μM). In comparison with the results detected by a common glucose meter, this sensor provided the relative recoveries across the range of 97.4–101.8%, demonstrating its high accuracy. Moreover, it exhibited excellent selectivity for glucose assay with little interference from common co-existing macromolecules/ions, as well as high reusability (>6 times). Collectively, the newly developed colorimetric sensor yields a promising methodology for practical applications in H
2
O
2
and glucose detection with advantages of highly visual resolution, simple operation, convenient use, and satisfactory sensitivity.</description><issn>2046-2069</issn><issn>2046-2069</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2022</creationdate><recordtype>article</recordtype><recordid>eNpNUF1Lw0AQPETBUvviL9hnMXpfuTRvhqitUFqwfQ_Xy0ZOkrtylwj10V9u_ABdWHYYZhZmCLlk9IZRkd_e8-eCCillcUImnEqVcKry03_4nMxifKXjqJRxxSbko_StD7bDPlgDOkZ9hL2OWIN3sLalBw5bkHC3vt4mYbEBp51_P3YIjQ8Q0UXb2zeEGns0vR1NvoHlaNqMq10NL-1gfESwblSHofsmh2AdQtTdocV4Qc4a3Uac_d4p2T0-7MplstosnspilZhMFYmWIk-NSA2lbM4yqvappmk2R8G1mFMmDDcUTdbwvdamFhxz5KgU14hcSi6m5OrnrQk-xoBNdRhz63CsGK2--qv--hOfe9tgrQ</recordid><startdate>20220714</startdate><enddate>20220714</enddate><creator>Ye, Hanzhang</creator><creator>Ding, Yongli</creator><creator>Liu, Tingting</creator><creator>Li, Jiani</creator><creator>Wang, Qi</creator><creator>Li, Yuhao</creator><creator>Gu, Jingjing</creator><creator>Zhang, Zhanen</creator><creator>Wang, Xuedong</creator><scope>AAYXX</scope><scope>CITATION</scope><orcidid>https://orcid.org/0000-0001-7732-1695</orcidid><orcidid>https://orcid.org/0000-0002-6287-1843</orcidid></search><sort><creationdate>20220714</creationdate><title>Colorimetric assay based on NiCo 2 S 4 @N,S-rGO nanozyme for sensitive detection of H 2 O 2 and glucose in serum and urine samples</title><author>Ye, Hanzhang ; Ding, Yongli ; Liu, Tingting ; Li, Jiani ; Wang, Qi ; Li, Yuhao ; Gu, Jingjing ; Zhang, Zhanen ; Wang, Xuedong</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c76A-a4395c35c00181706b5a0578e32a38013c2c0ec7f2baacd32e9e2e662aee24423</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2022</creationdate><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Ye, Hanzhang</creatorcontrib><creatorcontrib>Ding, Yongli</creatorcontrib><creatorcontrib>Liu, Tingting</creatorcontrib><creatorcontrib>Li, Jiani</creatorcontrib><creatorcontrib>Wang, Qi</creatorcontrib><creatorcontrib>Li, Yuhao</creatorcontrib><creatorcontrib>Gu, Jingjing</creatorcontrib><creatorcontrib>Zhang, Zhanen</creatorcontrib><creatorcontrib>Wang, Xuedong</creatorcontrib><collection>CrossRef</collection><jtitle>RSC advances</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Ye, Hanzhang</au><au>Ding, Yongli</au><au>Liu, Tingting</au><au>Li, Jiani</au><au>Wang, Qi</au><au>Li, Yuhao</au><au>Gu, Jingjing</au><au>Zhang, Zhanen</au><au>Wang, Xuedong</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Colorimetric assay based on NiCo 2 S 4 @N,S-rGO nanozyme for sensitive detection of H 2 O 2 and glucose in serum and urine samples</atitle><jtitle>RSC advances</jtitle><date>2022-07-14</date><risdate>2022</risdate><volume>12</volume><issue>32</issue><spage>20838</spage><epage>20849</epage><pages>20838-20849</pages><issn>2046-2069</issn><eissn>2046-2069</eissn><abstract>Traditional bimetallic sulfide-based nanomaterials often have a small specific surface area (SSA), low dispersion, and poor conductivity, thereby limiting their wide applications in the nanozyme-catalytic field. To address the above issues, we herein integrated NiCo
2
S
4
with N,S-rGO to fabricate a nanocomposite (NiCo
2
S
4
@N,S-rGO), which showed a stronger peroxidase–mimetic activity than its pristine components. The SSA (155.8 m
2
g
−1
) of NiCo
2
S
4
@N,S-rGO increased by ∼2-fold compared to NiCo
2
S
4
with a pore size of 7–9 nm, thus providing more active sites and charge transfer channels. Based on the Michaelis–Menten equation, the affinity of this nanocomposite increased 40% and 1.1∼10.6-fold compared with NiCo
2
S
4
with N,S-rGO, respectively, highlighting the significant enhancement of the peroxidase-like activity. The enhanced activity of this nanocomposite is derived from the joint participation of ˙OH, ˙O
2
−
, and photogenerated holes (h
+
), and was dominated by h
+
. To sum up, N,S-codoping, rich S-vacancies, and multi-valence states for this nanocomposite facilitate electron transfer and accelerate reaction processes. The nanocomposite-based colorimetric sensor gave low detection limits for H
2
O
2
(12 μM) and glucose (0.3 μM). In comparison with the results detected by a common glucose meter, this sensor provided the relative recoveries across the range of 97.4–101.8%, demonstrating its high accuracy. Moreover, it exhibited excellent selectivity for glucose assay with little interference from common co-existing macromolecules/ions, as well as high reusability (>6 times). Collectively, the newly developed colorimetric sensor yields a promising methodology for practical applications in H
2
O
2
and glucose detection with advantages of highly visual resolution, simple operation, convenient use, and satisfactory sensitivity.</abstract><doi>10.1039/D2RA03444A</doi><tpages>12</tpages><orcidid>https://orcid.org/0000-0001-7732-1695</orcidid><orcidid>https://orcid.org/0000-0002-6287-1843</orcidid></addata></record> |
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source | DOAJ Directory of Open Access Journals; PubMed Central Open Access; EZB-FREE-00999 freely available EZB journals; PubMed Central |
title | Colorimetric assay based on NiCo 2 S 4 @N,S-rGO nanozyme for sensitive detection of H 2 O 2 and glucose in serum and urine samples |
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