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化学进展  2015 

碳量子点的合成与应用

DOI: 10.7536/PC150403, PP. 1604-1614

Keywords: 碳量子点,合成方法,应用

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Abstract:

近年来,由于碳纳米材料具有高的催化活性以及好的稳定性等优点,其在科学、工程以及商业领域都得到了广泛的应用。其中新型"零维"碳纳米材料--碳量子点(carbondots,CDs)具有荧光信号稳定、无光闪烁、激发波长和发射波长可调控等独特的光学性质,以及生物毒性小和生物相容性好等优势,逐渐成为碳纳米材料的研究热点,广泛应用于生物成像、生物细胞标记、传感器、光催化、太阳能电池以及发光元件等领域。本文主要综述了CDs的不同合成方法(包括自上而下法和自下而上法)及其应用。

References

[1]  Shinde D B, Pillai V K. Chem. Eur. J., 2012, 18:12522.
[2]  Zhao Q L, Zhang Z L, Huang B H, Peng J, Zhang M, Pang D W. Chem. Commun., 2008, 41:5116.
[3]  Bao L, Zhang Z L, Tian Z Q, Zhang L, Liu C, Lin Y, Qi B P, Pang D W. Adv. Mater., 2011, 23:5801.
[4]  Tan D, Yamada Y, Zhou S, Shimotsuma Y, Miura K, Qiu J. Carbon, 2014, 69:638.
[5]  Hu S, Niu K, Sun J, Yang J, Zhao N, Du X. J. Mater. Chem., 2009, 19:484.
[6]  Sun Y P, Zhou B, Lin Y, Wang W, Fernando K A S, Pathak P, Meziani M J, Harruff B A, Wang X, Wang H, Luo P G, Yang H, Kose M E, Chen B, L. Veca M, Xie S Y. J. Am. Chem. Soc.,2006, 128(24):7756.
[7]  Liu J, Zhu W, Yu S, Yan X. Carbon, 2014, 79:369.
[8]  张金水(Zhang J S), 王博(Wang B), 王心晨(Wang X C). 化学进展(Progress in Chemistry), 2013, 26(01):19.
[9]  Ming H, Ma Z, Liu Y, Pan K, Yu H, Wang F, Kang Z. Dalton Trans., 2012, 41(31):9526.
[10]  Zhang X, Wang F, Huang H, Li H, Han X, Liu Y, Kang Z. Nanoscale, 2013, 5(6):2274.
[11]  Yu H, Zhang H, Huang H, Liu Y, Li H, Ming H, Kang Z. New J. Chem., 2012, 36(4):1031.
[12]  Liu J, Liu Y, Liu N, Han Y, Zhang X, Huang H, Lifshitz Y, Lee S T, Zhong J, Kang Z. Science, 2015, 347(6225):970.
[13]  Zhang H, Ming H, Lian S, Huang H, Li H, Zhang L, Liu Y, Kang Z, Lee S T. Dalton Trans., 2011, 40(41):10822.
[14]  Zhang H, Huang H, Ming H, Li H, Zhang L, Liu Y, Kang Z. J. Mater. Chem., 2012, 22(21):10501.
[15]  Li H, Liu R, Liu Y, Huang H, Yu H, Ming H, Lian S, Lee S T, Kang Z. J. Mater. Chem., 2012, 22(34):17470.
[16]  Mirtchev P, Henderson E J, Soheilnia N, Yip C M, Ozin G A. J. Mater. Chem., 2012, 22:1265.
[17]  Zhang Y Q, Ma D K, Zhang Y G, Chen W, Huang S M. Nano Energy, 2013 2:545.
[18]  Xiong H, Zhang X, Dong B, Lu H, Zhao L, Wan L, Dai G, Wang S. Electrochim. Acta, 2013, 88:100.
[19]  Wang F, Chen Y, Liu C, Ma D. Chem. Commun., 2011, 47:3502.
[20]  Shen C, Wang J, Cao Y, Lu Y. J. Mater. Chem. C, 2015, DOI:10.1039/C5TC01156F.
[21]  廖建国(Liao J G), 李艳群(Li Y Q), 段星泽(Duan X Z)朱伶俐(Zhu L L), 化学进展(Progress in Chemistry), 2015, 27(2/3):220.
[22]  Lim S Y, Shen W, Gao Z. Chem. Soc. Rev., 2015, 44(1):362.
[23]  Yin P T, Shah S, Chhowalla M, Lee K B. Chem. Rev., 2015, 115(7):2483.
[24]  Li S X, Lin X, Zheng F Y, Liang W, Zhong Y, Cai J. Anal. Chem., 2014, 86(14):7079.
[25]  张茜(Zhang Q), 朱艳红(Zhu Y H), 徐辉碧(Xu H B), 杨祥良(Yang X L). 化学进展(Progress in Chemistry), 2015, 27(2/3):275.
[26]  Li H, Kang Z, Liu Y, Lee S T. J. Mater. Chem., 2012, 22:24230.
[27]  林丽萍(Lin L P). 漳州师范学院硕士论文(Mater Dissertation of Zhangzhou Normal University), 2012.
[28]  Miao P, Han K, Tang Y, Wang B, Lin T, Cheng W. Nanoscale, 2015, 7:1586.
[29]  Lim S Y, Shen W, Gao Z Q. Chem. Soc. Rev., 2015, 44:362.
[30]  颜范勇(Yan F Y), 邹宇(Zou Y), 王猛(Wang M), 代林枫(Dai L F), 周旭光(Zhou X G), 陈莉(Chen L). 化学进展(Progress in Chemistry), 2014, 26:61.
[31]  Xu X, Ray R, Gu Y, Ploehn H J, Gearheart L, Raker K, Scrivens W A. J. Am. Chem. Soc., 2004, 126:12736.
[32]  Zhou J, Booker C, Li R, Zhou X, Sham T, Sun X, Ding Z. J. Am. Chem. Soc., 2007, 129:744.
[33]  Lu J, Yang J, Wang J, Lim A, Wang S, Loh K P. ACS Nano, 2009, 3:2367.
[34]  Li H, He X, Kang Z, Huang H, Liu Y, Liu J, Lian S, Tsang C H A. Yang X, Lee S T. Angew. Chem. Int. Ed., 2010, 49:4430.
[35]  Bourlinos A B, Stassinopoulos A, Anglos D, Zboril R, Georgakilas V, Giannelis E P. Chem. Mater., 2008, 20(14):4539.
[36]  Liu R, Wu D, Liu S, Koynov K, Knoll W, Li Q. Angew. Chem., 2009, 121:4668.
[37]  Liu Y, Xiao N, Gong N, Wang H, Shi X, Gu W, Ye L. Carbon, 2014, 68:258.
[38]  Zhu H, Wang X L, Li Y, Wang Z J, Yang F, Yang X R. Chem. Commun., 2009, 5118.
[39]  Wang J, Cheng C, Yuan H, Zheng B, Yuan H, Bo L, Zheng M W, Yang S Y, Guo Y, Xiao D. J. Mater. Chem. C, 2014, 2:5028.
[40]  Li H, He X, Liu Y, Huang H, Lian S, Lee S, Kang Z. Carbon, 2011, 49:605.
[41]  Ma Z, Ming H, Huang H, Liu Y, Kang Z. New J. Chem., 2012, 36:861.
[42]  Chen B, Li F, Li S, Weng W, Guo H, Guo T, Zhang X, Chen Y, Huang T, Hong X, You S, Lin Y, Zeng K, Chen S. Nanoscale, 2013, 5(5):1967.
[43]  Bourlinos A B, Stassinopoulos A, Anglos D, Zboril R, Karakassides M, Giannelis E P. Small, 2008,4(4):455.
[44]  Nie H, Li M, Li Q, Liang S, Tan Y, Sheng L, Shi W, Zhang S X A. Chem. Mater., 2014, 26:3104.
[45]  Liu H, Ye T, Mao C. Angew. Chem. Int. Ed., 2007, 46:6473.
[46]  Peng H,Travas-Sejdic J. Chem. Mater., 2009, 21(23):5563.
[47]  Wu Z L, Zhang P, Gao M X, Liu C F, Wang W, Leng F, Huang C Z. J. Mater. Chem. B, 2013, 1:2868.
[48]  Zhu S, Meng Q, Wang L, Zhang J, Song Y, Jin H, Zhang K, Sun H, Wang H, Yang B. Angew. Chem., 2013, 125:4045.
[49]  Fan R J, Sun Q, Zhang L, Zhang Y, Lu A H. Carbon, 2014, 71:87.
[50]  Li C L, Ou C M, Huang C C, Wu W C, Chen Y P, Lin T E, Ho L C, Wang C W, Shih C C, Zhou H C, Lee Y C, Tzeng W F, Chiou T J, Chu S T, Cang J, Chang H T. J. Mater. Chem. B, 2014, 2:4564.
[51]  Yang S, Cao L, Luo P G, Lu F, Wang X, Wang H, Meziani M J, Liu Y, Qi G, Sun Y. J. Am. Chem. Soc., 2009, 131:11308.
[52]  Cao L, Wang X, Mezsiani M J, Lu F, Wang H, Luo P G, Lin Y, Harruff B A, Veca L M. Murray D, Xie S Y, Sun Y P. J. Am. Chem. Soc., 2007, 129:11318.
[53]  Xu Z Q, Yang L Y, Fan X Y, Jin J C, Mei J, Peng W, Jiang F L, Xiao Q, Liu Y. Carbon, 2014, 66:351.
[54]  Zhang H, Huang Y, Hu S, Huang Q, Wei C, Zhang W, Kang L, Huang Z, Hao A. J. Mater. Chem. C, 2015, 3(9):2093.
[55]  Choi C K K, Li J, Wei K, Xu Y J, Ho L W C, Zhu M, To K K W, Choi C H J, Bian L. J. Am. Chem. Soc., 2015, 137:7337.
[56]  Zhang L, Huang Q, Lin C, Lin X, Huang Y, Liu J, Ma X. J. Lumin., 2014, 156:124.
[57]  景晓彤(Jing X T), 于法标(Yu F B), 陈令新(Chen L X). 化学进展(Progress in Chemistry), 2014, 26(05):866.
[58]  Liu J M, Lin L, Wang X X, Jiao L, Cui M L, Jiang S L, Cai W L, Zhang L H, Zheng Z Y. Analyst, 2013, 138(1):278.
[59]  Liu J M, Lin L P, Wang X X, Lin S Q, Cai W L, Zhang L H, Zheng Z Y. Analyst, 2012, 137:2637.
[60]  Dong Y, Wang R, Li G, Chen C, Chi Y, Chen G. Anal. Chem., 2012, 84(14):6220.
[61]  Bai W J, Zheng H Z, Long Y J, Mao X J, Gao M, Zhang L Y. Anal. Sci., 2011, 27(3):243.
[62]  Qu K G, Wang J S, Ren J S, Qu X G. Chem. Eur. J., 2013, 19(22):7243.
[63]  Zhang Y, Wang L, Zhang H, Liu Y, Wang H, Kang Z, Lee S T. RSC Adv., 2013, 3(11):3733.
[64]  Lu W, Qin X, Liu S, Chang G, Zhang Y, Luo Y, Asiri A M, Al-Youbi A O, Sun X. Anal. Chem., 2012, 84(12):5351.
[65]  Goncalves H, Duarte A J, Davis F, Higson S P J, Esteves da S J C G. Anal. Chim. Acta, 2012, 735(20):90.
[66]  Li H, Zhai J, Sun X. Langmuir, 2011, 27(8):4305.
[67]  Yin B, Deng J, Peng X, Long Q, Zhao J, Lu Q, Chen Q, Li H, Tang H, Zhang Y, Yao S. Analyst, 2013, 138(21):6551.
[68]  Dong Y, Wang R, Tian W, Chi Y, Chen G. RSC Adv., 2014, 4(8):3701.
[69]  Qin X, Lu W, Asiri A M, Al-Youbi A O, Sun X. Catal. Sci. Technol., 2013, 3(4):1027.
[70]  Shen P, Xia Y. Analy. Chem., 2014, 86(11):5323.
[71]  Wang C I, Periasamy A P, Chang H T. Anal. Chem., 2013, 85(6):3263.
[72]  Xu B, Zhao C, Wei W, Ren J, Miyoshi D, Sugimoto N, Qu X. Analyst, 2012, 137(23):5483.
[73]  Liu J, Li J, Jiang Y, Yang S, Tan W, Yang R. Chem. Commun., 2011, 47(40):11321.
[74]  Zhou L, Lin Y, Huang Z, Ren J, Qu X. Chem. Commun., 2012, 48(8):1147.
[75]  Liu J, Wagan S, Dávila-Morris M, Taylor J, White R J. Anal. Chem., 2014, 86(22):11417.
[76]  Zhang H, Huang Q, Huang Y, Li F, Zhang W, Wei C, Chen J, Dai P, Huang L, Huang Z, Kang L, Hu S, Hao A. Electrochim. Acta, 2014, 142:125.
[77]  Liu J, Morris M D, Macazo F C, Schoukroun-Barnes L R, White R J. J. Electrochem. Soc., 2014, 161:H301.
[78]  方莉(Fang L), 贺进禄(He J L). 化学进展(Progress in Chemistry), 2015, 27(05):585.
[79]  Huang Q, Hu S, Zhang H, Chen J, He Y, Li F, Weng W, Ni J, Bao X, Lin Y. Analyst, 2013, 138(18):5417.
[80]  Huang Q, Zhang H, Hu S, Li F, Weng W, Chen J, Wang Q, He Y, Zhang W, Bao X. Biosens. Bioelectron., 2014, 52:277.
[81]  Huang Q, Lin X, Lin C, Zhang Y, Hu S, Wei C. RSC Adv., 2015, 5:54102.
[82]  Hu S, Huang Q, Lin Y, Wei C, Zhang H, Zhang W, Guo Z, Bao X, Shi J, Hao A. Electrochim. Acta, 2014, 130:805.
[83]  Wei C, Huang Q, Hu S, Zhang H, Zhang W, Wang Z, Zhu M, Dai P, Huang L. Electrochim. Acta, 2014, 149:237.
[84]  Dai H, Xu G, Gong L, Yang C, Lin Y, Tong Y, Chen J, Chen G. Electrochim. Acta, 2012, 80:362.
[85]  Sheng M, Gao Y, Sun J, Gao F. Biosens. Bioelectron., 2014, 58:351.
[86]  Shao X, Gu H, Wang Z, Chai X, Tian Y, Shi G. Anal. Chem., 2013, 85(1):418.
[87]  Jiang G, Jiang T, Zhou H, Yao J, Kong X. RSC Adv., 2015, 5:9064.
[88]  Li Q, Xu Z, Tang W, Wu Y. Anal. Lett., 2015, 48(13):2040.
[89]  Zhang H, Dai P, Huang L, Huang Y, Huang Q, Zhang W, Wei C, Hu S. Anal. Methods, 2014, 6:2687.
[90]  Li Y, Zhong Y, Zhang Y, Weng W, Li S. Sensor. Actuat. B:Chem., 2015, 206:735.
[91]  Zhang L, Han Y, Zhu J, Zhai Y, Dong S. Anal. Chem., 2015, 87:2033.
[92]  杨帆(Yang F), 王伶俐(Wang L L), 郭志慧(Guo Z H). 化学学报(Acta Chimica Sinica), 2012, 70(11):1283.
[93]  Wu L, Wang J, Ren J, Li W, Qu X. Chem. Commun., 2013, 49(50):5675.
[94]  Zhang M, Liu H, Chen L, Yan M, Ge L, Ge S, Yu J. Biosens. Bioelectron., 2013, 49:79.
[95]  周丽(Zhou L), 邓慧萍(Deng H P), 张为(Zhang W). 化学进展(Progress in Chemistry), 2015, 27(4):349.
[96]  Lin X, Chen Y, Li S. Anal. Methods, 2013, 5(22):6480.
[97]  Jiang K, Sun S, Zhang L, Lu Y, Wu A, Cai C, Lin H. Angew. Chem. Int. Ed., 2015, 54:5360.
[98]  Wei W, Chen W. J. Power Sources, 2012, 204:85.
[99]  Wang Q, Huang X, Long Y, Wang X, Zhang H, Zhu R, Liang L, Teng P, Zheng, H. Carbon, 2013, 59:192.
[100]  Pandey S, Thakur M, Mewada A, Anjarlekar D, Mishra N, Sharon M. J. Mater. Chem. B, 2013, 1(38):4972.
[101]  Hu S, Trinchi A, Atkin P, Cole I. Angew. Chem. Int. Ed., 2015, 54:2970.

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