Citation: CHEN Yi-Feng, ZHANG Yu, JIAO Lei, YAN Hong-Ye, GU Wen-Ling, ZHU Cheng-Zhou. Research Progress of Carbon-based Nanozymes for Biosensing[J]. Chinese Journal of Analytical Chemistry, 2021, 49(6): 907-921. doi: 10.19756/j.issn.0253-3820.211258
碳基纳米酶在生物传感中的应用研究进展
English
Research Progress of Carbon-based Nanozymes for Biosensing
-
Key words:
- Nanozymes
- / Carbon nanomaterials
- / Heteroatom doping
- / Single atom catalysts
- / Biosensing
- / Review
-
-
-
[1]
GARCIAV M, GAO J L, KARPLUS M, TRUHLAR D G. Science, 2004, 303(5655): 186-195.
-
[2]
ZHAN Y J, YANG S T, LUO F, GUO L H, ZENG Y B, QIU B, LIN Z Y. ACS Appl. Mater. Interfaces, 2020, 12(27): 30085-30094.
-
[3]
SUN D, PANG X, CHENG Y, MING J, XIANG S J, ZHANG C, LV P, CHU C C, CHEN X L, LIU G, ZHENG N F. ACS Nano, 2020, 14(2): 2063-2076.
-
[4]
WANG Y M, LIU J W, ADKINS G B, SHEN W, TRINH M P, DUAN L Y, JIANG J H, ZHONG W W. Anal. Chem., 2017, 89(22): 12327-12333.
-
[5]
QIN L, WANG X Y, LIU Y F, WEI H. Anal. Chem., 2018, 90(16): 9983-9989.
-
[6]
CAO F F, ZHANG L, WANG H, YOU Y W, WANG Y, GAO N, REN J S, QU X G. Angew. Chem., Int. Ed., 2019, 58(45): 16236-16242.
-
[7]
GAO L Z, ZHUANG J, NIE L, ZHANG J B, ZHANG Y, GU N, WANG T H, FENG J, YANG D L, PERRETT S, YAN X Y. Nat. Nanotechnol., 2007, 2(9): 577-583.
-
[8]
KANG S, GIL Y G, MIN D H, JANG H. ACS Nano, 2020, 14(4): 4383-4394.
-
[9]
DENG H H, LUO B Y, HE S B, CHENR T, LIN Z, PENG H P, XIA X H, CHEN W. Anal. Chem., 2019, 91(6): 4039-4046.
-
[10]
ZHU Y Y, WU J J X, HAN L J, WANG X Y, LI W, GUO H C, WEI H. Anal. Chem., 2020, 92(11): 7444-7452.
-
[11]
DING H, HU B, ZHANG B, ZHANG H, YAN X Y, NIE G H, LIANG M M. Nano Res., 2020, 14: 570-583.
-
[12]
KIM M S, CHO S, JOO S H, LEE J, KWAK S K, KIM M I, LEE J. ACS Nano, 2019, 13(4): 4312-4321.
-
[13]
WU Y, JIAO L, LUO X, XU W Q, WEI X Q, WANG H J, YAN H Y, GU W L, XU B Z, DU D, LIN Y H, ZHU C Z. Small, 2019, 15(43): e1903108.
-
[14]
YANG J, LI K, LI C Z, GU J L. Angew. Chem., Int. Ed., 2020, 59(51): 22952-22956.
-
[15]
LI M H, CHEN J X, WU W W, FANG Y X, DONG S J. J. Am. Chem. Soc., 2020, 142(36): 15569-15574.
-
[16]
SUN H J, REN J S, QU X G. Springer Singapore: Singapore, 2020: 171-193.
-
[17]
DUGAN L L, GABRIELSEN J K, SHAN P Y, LIN T S, CHOI D W. Neurobiol.Dis., 1996, 3(2): 129-135.
-
[18]
XIA Y K, LIU M M, WANG L L, YAN A, HE W H, CHEN M, LAN J M, XU J X, GUAN L H, CHEN J H. Biosens. Bioelectron., 2017, 92: 8-15.
-
[19]
ZHANG Q Z, ZHAO B, YAN J, SONG S P, MIN R, FAN C H. Anal. Chem., 2011, 83(23): 9191-9196.
-
[20]
NIRALA N R, KHANDELWAL G, KUMAR B, VINIT A, PRAKASH R, KUMAR V. Talanta, 2017, 173: 36-43.
-
[21]
SUN H J, ZHAO A D, GAO N, LI K, REN J S, QU X G. Angew. Chem., Int. Ed., 2015, 54(24): 7176-7180.
-
[22]
MU X Y, HE H, WANG J Y, LONG W, LI Q F, LIU H L, GAO Y L, OUYANG L F, REN Q J, SUN S, WANG J Y, YANG J, LIU Q, SUNY M, LIUC L, ZHANG X D, HU W P. Nano Lett., 2019, 19(7): 4527-4534.
-
[23]
FAN Y F, ZHANG W C, LIU Y M, ZENG Z X, QUAN X, ZHAO H M. ACS Appl. Mater. Interfaces, 2019, 11(19): 17467-17474.
-
[24]
SONG Y J, WANG X H, ZHAO C, QU K H, REN J S, QU X G. Chem.-Eur. J., 2010, 16(12): 3617-3621.
-
[25]
SONG Y J, QU K G, ZHAO C, REN J S, QU X G. Adv. Mater., 2010, 22(19): 2206-2210.
-
[26]
HUANG Y Y, LIU C Q, PU F, LIU Z, REN J S, QU X G. Chem. Commun., 2017, 53(21): 3082-3085.
-
[27]
FAN K L, XI J Q, FAN L, WANG P X, ZHU C H, TANG Y, XU X D, LIANG M M, JIANG B, YAN X Y, GAO L Z. Nat. Commun., 2018, 9(1): 1440.
-
[28]
WU Y, WU J B, JIAO L, XU W Q, WANG H J, WEI X Q, GU W L, REN G X, ZHANG N, ZHANG Q H, HUANG L, GU L, ZHU C Z. Anal. Chem., 2020, 92(4): 3373-3379.
-
[29]
WU W W, HUANG L, WANG E K, DONG S J. Chem. Sci., 2020, 11(36): 9741-9756.
-
[30]
HUANG L, CHEN J X, GAN L F, WANG J, DONG S J. Sci. Adv., 2019, 5(5): eaav5490.
-
[31]
LOU Z, ZHAO S, WANG Q, WEI H. Anal. Chem., 2019, 91(23): 15267-15274.
-
[32]
CHEN Y F, JIAO L, YAN H Y, XU W Q, WU Y, WANG H J, GU W L, ZHU C Z. Anal. Chem., 2020, 92(19): 13518-13524.
-
[33]
LIANG Q, XI J, GAO X J J, ZHANG R F, YANG Y L, GAO X F, YAN X Y, GAO L Z, FAN K L. Nano Today, 2020, 35: 100935.
-
[34]
DUGAN L L, TURETSKY D M, DU C, LOBNER D, WHEELER M, ALMLI C R, SHEN C K F, LUH T Y, CHOI D W, LIN T S. Proc. Natl. Acad. Sci. U. S.A., 1997, 94(17): 9434-9439.
-
[35]
SONG Y J, WANG X H, ZHAO C, QU K G, REN J S, QU X G. Chem.-Eur. J., 2010, 16(12): 3617-3621.
-
[36]
CUI R J, HAN Z D, ZHU J J. Chem.-Eur. J., 2011, 17(34): 9377-9384.
-
[37]
GAYATHRI P, KUMAR A S. Chem.-Eur. J., 2013, 19(50): 17103-17112.
-
[38]
SHI W B, WANG Q L, LONG Y J, CHENG Z L, CHEN S H, ZHENG H Z, HUANG Y M. Chem. Commun., 2011, 47(23): 6695-6697.
-
[39]
MIAO P, HAN K, TANG Y G, WANG B D, LIN T, CHENG W B. Nanoscale, 2015, 7(5): 1586-1595.
-
[40]
GARG B, BISHT T. Molecules, 2016, 21(12): 1653.
-
[41]
LI F, LI T Y, SUN C X, XIA J H, JIAO Y, Xu H P. Angew. Chem., Int. Ed., 2017, 56(33): 9910-9914.
-
[42]
YAN D F, LI Y X, HUO J, CHEN R, DAI L M, WANG S Y. Adv. Mater., 2017, 29(48): 1606459.
-
[43]
GAO K, WANG B, TAO L, CUNNING B V, ZHANG Z P, WANG S Y, RUOFF R S, QU L T. Adv. Mater., 2019, 31(13): e1805121.
-
[44]
LI S, ZHAO X T, GANG R T, CAO B Q, WANG H. Anal. Chem., 2020, 92(7): 5152-5157.
-
[45]
YAN H Y, WANG L Z, CHEN Y F, JIAO L, WU Y, XU W Q, GU W L, SONG W Y, DU D, ZHU C Z. Research, 2020, 2020: 1-11.
-
[46]
TRIPATHI K M, AHN H T, CHUNG M, LE X A, SAINI D, BHATI A, SONKAR S K, KIM M I, KIM T Y. ACS Biomater. Sci. Eng., 2020, 6(10): 5527-5537.
-
[47]
SONG H Y, MA C L, WANG L, ZHU Z G. Nanoscale, 2020, 12: 19284-19292.
-
[48]
AHMED S R, TAKEMEURA K, LI T C, KITAMOTO N, TANAKA T, SUZUKI T, PARK E Y. Biosens. Bioelectron., 2017, 87: 558-565.
-
[49]
ZHANG S T, ZHANG D X, ZHANG X H, SHANG D H, XUE Z H, SHAN D L, LU X Q. Anal. Chem., 2017, 89(6): 3538-3544.
-
[50]
ZHAN L, LI C M, WU W B, HUANG C Z. Chem. Commun., 2014, 50(78): 11526-11528.
-
[51]
DARABDHARA G, SHARMA B, DAS M R, BOUKHERROB R, SZUNERITS S. Sens. Actuators, B, 2017, 238: 842-851.
-
[52]
ZUO X L, PENG C, HUANG Q, SONG S P, WANG L H, LI D, FAN C H. Nano Res., 2009, 2(8): 617-623.
-
[53]
TAN H L, MA C J, GAO L, LI Q, SONG Y H, XU F G, WANG T, WANG L. Chem.-Eur. J., 2014, 20(49): 16377-16383.
-
[54]
LIN X Q, DENG H H, WU G W, PENG H P, LIU A L, LIN X H, XIA X H, CHEN W. Analyst, 2015, 140(15): 5251-5256.
-
[55]
TAO Y, LIN Y H, HUANG Z Z, REN J S, QU X G. Adv.Mater., 2013, 25(18): 2594-2599.
-
[56]
YUAN F, ZHAO H M, ZANG H M, YE F, QUAN X. ACS Appl. Mater. Interfaces, 2016, 8(15): 9855-9864.
-
[57]
JIAO L, YAN H Y, WU Y, GU W L, ZHU C Z, DU D, LIN Y H. Angew. Chem., Int. Ed., 2020, 59(7): 2565-2576.
-
[58]
CHENG N, LI J C, LIU, LIN Y H, DU D. Small, 2019, 15(48): e1901485.
-
[59]
JIANG Z L, SUN W M, SHANG H S, CHEN W X, SUN T T, LI H J, DONG J C, ZHOU J, LI Z, WANG Y, CAO R, SARANGI R, YANG Z K, WANG D S, ZHANG J T, LI Y D. Energy Environ. Sci., 2019, 12(12): 3508-3514.
-
[60]
GUO Y J, DENG L, LI J, GUO S J, WANG E K, DONG S J. ACS Nano, 2011, 5(2): 1282-1290.
-
[61]
JIAO L, XU W Q, YAN H Y, WU Y, LIU C R, DU D, LIN Y H, ZHU C Z. Anal. Chem., 2019, 91(18): 11994-11999.
-
[62]
JIAO L, WU J B, ZHONG H, ZHANG Y, XU W Q, WU Y, CHEN Y F, YAN H Y, ZHANG Q H, GU W L, GU L, BECKMAN S P, HUANG L, ZHU C Z. ACS Catal., 2020, 10(11): 6422-6429.
-
[63]
WANG Y, JIA G R, CUI X Q, ZHAO X, ZHANG Q H, GU L, ZHENG L R, LI LH, WU Q, SINGH D J, MATSUMURA D, TSUJI T, CUI Y T, ZHAO J X, ZHENG W T. Chem., 2021, 7(2): 436-449.
-
[64]
JIAO L, XU W Q, ZHANG Y, WU Y, GU W L, GE X X, CHEN B B, ZHU C Z, GUO S J. Nano Today, 2020, 35: 100971.
-
[65]
SUN H J, GAO N, DONG K, REN J S, QU X G. ACS Nano, 2014, 8(6): 6202-6210.
-
[66]
HU Y H, GAO X J J, ZHU Y Y, MUHAMMAD F, TAN S H, CAO W, LIN S C, JIN Z, GAO X F, WEI H. Chem. Mater., 2018, 30(18): 6431-6439.
-
[67]
ZHAO R S, ZHAO X, GAO X F. Chem.-Eur. J., 2015, 21(3): 960-964.
-
[68]
WANG D, SONG X L, LI P, GAO X J, GAO X F. J. Mater. Chem. B, 2020, 8(39): 9028-9034.
-
[69]
ZHENG A X, CONG Z X, WANG J R, LI J, YANG H H, CHEN G N. Biosens. Bioelectron., 2013, 49: 519-524.
-
[70]
WANG Z B, LV X C, WENG J. Carbon, 2013, 62: 51-60.
-
[71]
LIN L P, SONG X H, CHEN Y Y, RONG M C, ZHAO T T, WANG Y R, JIANG Y Q, CHEN X. Anal. Chim. Acta, 2015, 869: 89-95.
-
[72]
QIAO F M, Qi Q Q, WANG Z Z, XU K, AI S Y. Sens. Actuators, B, 2016, 229: 379-386.
-
[73]
CHEN J, CHEN Q, CHEN J Y, QIU H D. Microchim. Acta, 2016, 183(12): 3191-3199.
-
[74]
DONG Y L, ZHANG H G, RAHMAN Z U, SU L, CHEN X J, HU J, CHEN X G. Nanoscale, 2012, 4(13): 3969-3976.
-
[75]
WANG H, LI S, SI Y M, SUN Z Z, LI S Y, LIN Y H. J. Mater. Chem. B, 2014, 2(28): 4442-4448.
-
[76]
ZHENG X J, ZHU Q, SONG H Q, ZHAO X R, YI T, CHEN H L, CHEN X G. ACS Appl. Mater. Interfaces, 2015, 7(6): 3480-3491.
-
[77]
LU N, ZHANG M, DING L, ZHENG J, ZENG C X, WEN Y L, LIU G, ALDALBAHI A, SHI J Y, SONG S P, ZUO X L, WANG L H. Nanoscale, 2017, 9(13): 4508-4515.
-
[78]
XIE J X, CAO H Y, JIANG H, CHEN Y J, SHI W B, ZHENG H Z, HUANG Y M. Anal. Chim. Acta, 2013, 796: 92-100.
-
[79]
ZHANG L, HAI X, XIA C, CHEN X W, WANG J H. Sens. Actuators, B, 2017, 248: 374-384.
-
[80]
TIAN X K, WANG X, DAI C, LI Y, YANG C, ZHOU Z X, WANG Y X. Sens. Actuators, B, 2017, 245: 221-229.
-
[81]
PENG J, WENG J. Biosens. Bioelectron., 2017, 89: 652-658.
-
[82]
CHEN X M, SU B Y, CAI Z X, CHEN X, OYAMA M. Sens. Actuators, B, 2014, 201: 286-292.
-
[83]
ZHANG X H, WU G H, CAI Z X, CHEN X. Talanta, 2015, 134: 132-135.
-
[84]
GUO Y J, LI J, DONG S J. Sens. Actuators, B, 2011, 160(1): 295-300.
-
[85]
ZHANG R Z, HE S J, ZHANG C M, CHEN W. J. Mater. Chem. B, 2015, 3(20): 4146-4154.
-
[86]
KIM M S, LEE J, KIM H S, CHO A, SHIM K H, LE T N, AN S S A, HAN J W, KIM M, LEE J. Adv. Funct. Mater., 2019, 30(1): 1905410.
-
[87]
SONG Y J, QU K F, ZHAO C, REN J S, QU X G. Adv. Mater., 2010, 22(19): 2206-2210.
-
[88]
WANG B, CHEN Y F, WU Y Y, WENG B, LIU Y S, LI C M. Microchim. Acta, 2016, 183(9): 2491-2500.
-
[89]
SHAMSIPUR M, SAFAVI A, MOHMMADPOUR Z. Sens. Actuators, B, 2014, 199: 463-469.
-
[90]
MA Y, ZHAO M G, CAI B, WANG W, YE Z Z, HUANG J Y. Chem. Commun., 2014, 50(76): 11135-11138.
-
[91]
KIM M, KIM M S, WOO M A, YE Y J, KANG K S, LEE J, PARK H G. Nanoscale, 2014, 6(3): 1529-1536.
-
[92]
JIA H M, YANG D F, HAN X G, CAI J H, LIU H Y, HE W W. Nanoscale, 2016, 8(11): 5938-5945.
-
[93]
QIAN J, YANG X W, JIANG L, ZHU C D, MAO H P, WANG K. Sens. Actuators, B, 2014, 201: 160-166.
-
[94]
QIAN J, YANG X W, YANG Z T, ZHU G B, MAO H P, WANG K. J. Mater. Chem. B, 2015, 3(8): 1624-1632.
-
[95]
NIRALA N R, ABRAHAM S, KUMAR V, BANSAL A, SRIVASTAVA A, SAXENA P S. Sens. Actuators, B, 2015, 218: 42-50.
-
[96]
HAYAT A, HAIDER W, RAZA Y, MARTY J L. Talanta, 2015, 143: 157-161.
-
[97]
HE Y F, NIU X H, SHI L B, ZHAO H L, LI X, ZHANG W C, PAN J M, ZHANG X F, YAN Y S, LAN M B. Microchim. Acta, 2017, 184(7): 2181-2189.
-
[98]
LIU W D, CHU L, ZHANG C H, NI P J, JIANG Y Y, WANG B, LU Y Z, CHEN C X. Chem.-Eng. J., 2021, 415: 128876.
-
[99]
LYU Z Y, DING S C, ZHANG N, ZHOU Y, CHENG N, WANG M Y, XU M J, FENG Z X, NIU X H, CHENG Y, ZHANG C, DU D, LIN Y H. Research, 2020, 2020: 4724505.
-
[100]
YANG W Q, HUANG T T, ZHAO M M, LUO F, WENG W, WEI Q H, LIN Z Y, CHEN G N. Talanta, 2017, 164: 1-6.
-
[101]
RUAN X F, LIU D, NIU X H, WANG Y J, SIMPSON C D, CHENG N, DU D, LIN Y H. Anal. Chem., 2019, 91(21): 13847-13854.
-
[102]
KIM M, YE Y J, WOO M A, LEE J, PARK H G. Adv. Health. Mater., 2014, 3(1): 36-41.
-
[103]
ZHANG L N, DENG H H, LIN FL, XU X W, WENG S H, LIU A L, LIN X H, XIA X H, CHEN W. Anal. Chem., 2014, 86(5): 2711-2718.
-
[104]
MAJI S K, MANDAL A K, NGUYEN K T, BORAH P, ZHAO Y L. ACS Appl. Mater. Interfaces, 2015, 7(18): 9807-9816.
-
[105]
SONG Y J, CHEN Y, FENG L Y, REN J S, QU X G. Chem. Commun., 2011, 47(15): 4436-4438.
-
[106]
LIU J, CUI M R, NIU L, ZHOU H, ZHANG S S. Chem.-Eur. J., 2016, 22(50): 17873-17873.
-
[1]
-
扫一扫看文章
计量
- PDF下载量: 32
- 文章访问数: 1595
- HTML全文浏览量: 324

下载: