军事科学院系统工程研究院,天津 300171
李 钒,博士,高级工程师,研究方向:碳纳米材料研究,E-mail:vanadium_1981@163.com
纸质出版日期:2024-01-15,
收稿日期:2023-08-02,
修回日期:2023-10-25,
扫 描 看 全 文
侯可心,丁晟,杨焜等.荧光纳米探针的合成及其应用研究进展[J].分析测试学报,2024,43(01):1-18.
HOU Ke-xin,DING Sheng,YANG Kun,et al.Research Progress of Design,Synthesis and Application of Fluorescent Nanoprobe[J].Journal of Instrumental Analysis,2024,43(01):1-18.
侯可心,丁晟,杨焜等.荧光纳米探针的合成及其应用研究进展[J].分析测试学报,2024,43(01):1-18. DOI: 10.12452/j.fxcsxb.23080203.
HOU Ke-xin,DING Sheng,YANG Kun,et al.Research Progress of Design,Synthesis and Application of Fluorescent Nanoprobe[J].Journal of Instrumental Analysis,2024,43(01):1-18. DOI: 10.12452/j.fxcsxb.23080203.
近年来涌现的荧光纳米探针独特的尺寸及结构赋予其优异的光稳定性、较高的荧光量子产率、可调的激发发射波长等众多优势,引起科研工作者的广泛关注。荧光纳米探针作为一类重要的光响应性纳米材料在小分子及生物大分子检测、细胞成像、活体诊断等领域具有广阔的应用前景,有望成为传统有机荧光染料的理想替代物。该文针对目前研究较多的量子点、金属纳米簇及金属-有机框架及其他纳米荧光探针,介绍了其结构组成、物理化学性质等基本性质,并着重阐述其主要合成方法以及在化学传感、生物医学等领域的应用及研究进展,最后对目前该领域的发展前景做出总结及展望。
In recent years the unique size and structure of fluorescent nanoprobe would give it excellent performances including good photo stability,high fluorescence quantum yield and the adjustable length of the excitation and emission wavelengths,and these advantages attract wide attention of researchers. Fluorescent nanoprobe as an important kind of photo-responsive nanomaterial is considered promising in many fields such as small molecules detection,biomacromolecules detection,cellular imaging and real-time in vivo diagnosis,and is expected to become an ideal substitute for traditional organic fluorescent dyes. The aim of this review is to provide a survey on the research progress of the main materials such as quantum dots,metal nanoclusters and metal organic frameworks,including structure and physicochemical property,especially the synthetic method and the application in chemical sensing and biomedical fields,while finally make summary and prospect.
荧光纳米探针光响应性量子点金属纳米簇金属-有机框架
fluorescent nanoprobephoto-responsequantum dotsmetal nanoclustersmetal organic frameworks
Bissell R A,Silva A P,Nimal G H Q,Mark L P L,Maguire G E M,Samankumara S K R A. Chem. Soc. Rev.,1992,21:187-195.
Yin J,Kwon Y,Kim D,Lee D,Kim G,Hu Y,Ryu J H,Yoon J. Nat. Protoc.,2015,10(11):1742-1754.
Wen L X. High-efficiency Detection of Endotoxin Based on Composite Nano-fluorescence Probes. Chongqing:Chongqing University(温路新. 基于复合纳米荧光探针的内毒素高效检测方法研究. 重庆:重庆大学),2018.
Sun H Y. Research and Application of Nano Fluorescence Probe. Taiyuan:Shanxi University(孙海云. 纳米荧光探针的研究与应用. 太原:山西大学),2017.
Chen J L,Zhu C Q. Anal. Chim. Acta,2005,546(2):147-153.
Guo L,Wang M,Cao D. Small,2018,14(17):1703822.
Song W,Liang R P,Wang Y,Zhang L,Qiu J D. Sens. Actuators,2016,226:144-150.
Garcia A F P,Talapin D V,Klimov V I,Arakawa Y,Bayer M,Sargent E H. Science,2021,373(6555):eaaz8541.
Rossetti R,Nakahaha S,Brus L E. J. Chem. Phys.,1983,79:1086.
Colvin V L,Schlamp M C,Alivisatos A P. Nature,1994,370(6488):354-357.
Bruchez M,Moronne M,Gin P,Weiss S,Alivisatos A P. Science,1998,281(5385):2013-2016.
Chan W C W,Nie S M. Science,1998,281(5385):2016-2018.
Park J,Lee J,Kwag J,Baek Y,Kim B,Yoon C J,Bok S,Cho S H,Kim K H,Ahn G O,Kim S. ACS Nano,2015,9(6):6511-6521.
Sang L J,Yang M D,Zhou H P,Huang X N,Yu C. RSC Adv.,2016,6(86):83110-83116.
Zhao M X,Zhang Z Q,Qiao L L. Chem. Res.(赵美霞,张志强,乔路路. 化学研究),2018,29(4):422-428.
Jaiswal J K,Mattoussi H,Mauro J M,Simon S M. Nat. Biotechnol.,2003,21(1):47-51.
Zrazhevskiy P,Sena M,Gao X H. Chem. Soc. Rev.,2010,39(11):4326-4354.
Zrazhevskiy P,Gao X H. Nano Today,2009,4(5):414-428.
Dubertret B,Skourides P,Norris D J,Noireaux V,Brivalou A H,Libchaber A. Science,2002,298(5599):1759-1762.
Zhang D N,Li D Y,Sun Q Z,Fu S S,Huang C B. J. Bohai Univ.(张丹宁,李定云,孙启壮,付莎莎,黄朝表. 渤海大学学报),2010,31(2):104-111.
Murray C B,Norris D J,Bawendi M G. J. Am. Chem. Soc.,1993,115:8706-8715.
Talapin D V,Haubold S,Rogach A L,Kornowski A,Haase M,Weller H. J. Phys. Chem. B,2001,105(12):2260-2263.
Peng Z A,Peng X G. J. Am. Chem. Soc.,2001,123:183-184.
Li C Y,Zhang H,Gong X F,Li Q,Zhao X L. Colloid Surface B,2019,174:476-482.
Hildebrandt N,Spillmann C M,Algar W R,Pons T,Stewart M H,Oh E,Susumu K,Diaz S A,Delehanty J B,Medintz I L. Chem. Rev.,2017,117(2):536-711.
Medintz I L,Uyeda H T,Goldman E R,Mattoussi H. Nat. Mater.,2005,4(6):435-446.
Liu W H,Howarth M,Greytak A B,Zheng Y,Nocera D G,Ting A Y,Bawendi M G. J. Am. Chem. Soc.,2008,130(4):1274-1284.
Mattoussi H,Palui G,Na H B. Adv. Drug Deliver. Rev.,2012,64(2):138-166.
Rosenthal S J,Chang J C,Kovtun O,McBride J R,Tomlinson I D. Chem. Biol. Rev.,2011,18(1):10-24.
Gao X H,Cui Y Y,Levenson R M,Chung L W K,Nie S M. Nat. Biotechnol.,2004,22(1):969-976.
Ostermann J,Merkl J P,Flessau S,Wolter C,Kornowksi A,Schmidtke C,Pietsch A,Kloust H,Feld A,Weller H. ACS Nano,2013,7(10):9156-9167.
Kango S,Kalia S,Celli A,Njuguna J,Habibi Y,Kumar R. Prog. Polym. Sci.,2013,38(8):1232-1261.
Peng W N,Rupich S M,Shafiq N,Gartstein Y N,Malko A V,Chabal Y J. Chem. Rev.,2015,115(23):12764-12796.
Zhang Y B. Synthesis of High Quality In P Quantum Dots and Their Biological Applications as Fluorescent Probes. Zhengzhou:Henan University(张彦斌. 高质量In P量子点的制备及作为荧光探针的生物应用研究. 郑州:河南大学),2022.
Spanhel L,Haase M,Weller H,Henglein A. J. Am. Chem. Soc.,1987,109(19):5649-5655.
Rajh T,Micic O I,Nozik A J. J. Phys. Chem.,1993,97:11999-12003.
Rogach A L,Kornowski A,Gao M Y,Eychmüller A,Weller H. J. Phys. Chem.,1999,103(16):3065-3069.
Liu S Y,Shi F P,Chen L,Su X G. Microchim. Acta,2013,181(34):339-345.
Zhou W H,Jiao J,Zhao Y,Cheng X Y,Kou D X,Zhou Z J,Wu S X. RSC Adv.,2014,4(15):7617-7622.
Dong Y Q,Jin G R,Ji C C,He R Y,Lin M,Zhao X,Li A,Lu T J,Xu F. Acta Biomater.,2017,55:410-419.
Gao X,Liu Z P,Lin Z H,Su X G. Analyst,2014,139(4):831-836.
Pisanic T R,Zhang Y,Wang T H. Analyst,2014,139(12):2968-2981.
Wu W T,Zhou T,Berliner A,Banerjee P,Zhou S Q. Angew. Chem. Int. Ed.,2010,49:1-6.
Wang C W,Yang X S,Gu B,Gu B,Liu H F,Zhou Z H,Shi L L,Cheng X D,Wang S Q. Anal. Chem.,2020,92(23):15542-15549.
Wang C W,Yang X S,Zheng S,Cheng X D,Xiao R,Li Q J,Wang W Q,Liu X X,Wang S Q. Sens. Actuators B,2021,345:30372.
He Y,Zhong Y L,Su Y Y,Lu Y M,Jiang Z Y,Peng F,Xu T T,Su S,Huang Q,Fan C H,Lee S T. Angew. Chem. Int. Ed.,2011,50:5695-5698.
Lian W,Tu D T,Hu P,Song X R,Gong Z L,Chen T,Song J B,Chen Z,Chen X Y. Nano Today,2020,35:100943.
Morselli G,Villa M,Fermi A,Critchley K,Ceroni P. Nanoscale Horiz.,2021,6(9):676-695.
Lu F,Ju W W,Zhao N,Zhao T,Zhan C,Wang Q,Fan Q L,Huang W. Biochem. Bioph. Res. Commun.,2020,529(4):930-935.
Kuo W S,Shen X C,Chang C Y,Kao H F,Lin S H,Wang J Y,Wang J Y. ACS Nano,2020,14(9):11502-11509.
Hua X W,Bao Y W,Chen Z,Wu F G. Nanoscale,2017,9(30):10948-10960.
Geng X,Sun Y Q,Li Z H,Yang R,Zhao Y M,Guo Y F,Xu J J,Li F T,Wang Y,Lu S Y,Qu L B. Small,2019,15(48):1901517.
Gao J,Xu B. Nano Today,2009,4(1):37-51.
Liu H F,Sun Y Q,Li Z H,Yang J,Aryee A A,Qu L B,Du D,Lin Y H. Nanoscale,2019,11(17):8458-8463.
Su Y,Xue T T,Liu Y X,Qi J X,Jin R C,Lin Z K. Nano Res.,2019,12(6):1251-1265.
Lin Z K,Goswami N,Xue T T,Chai O J H,Xu H J,Liu Y X,Su Y,Xie J P. Adv. Funct. Mater.,2021,31(51):2105662.
Tian S B,Li Y Z,Li M B,Yuan J Y,Yang J L,Wu Z K,Jin R C. Nat. Commun.,2015,6:8667-8674.
Yuan X,Luo Z T,Yu Y,Yao Q F,Xie J P. Chem.-Asian J.,2013,8(5):858-871.
Abbas M A,Kamat P V,Bang J H. ACS Energy Lett.,2018,3(4):840-854.
Zhou T,Su Z,Wang X Y,Luo M C,Tu Y F,Yan J L. Spectrochim. Acta A,2021,244:118881.
Chen X L,Ren X J,Gao X Y. Chin. J. Chem.,2022,40(2):267-274.
Yang L,Yao C,Li F,Dong Y H,Zhang Z K,Yang D Y. Small,2018,14:1800185.
Rajamanikandan R,Ilanchelian M. Sens. Actuators B,2017,244:380-386.
Zhou C,Long M,Qin Y P,Sun X K,Zheng J. Angew. Chem. Int. Ed.,2011,50(14):3168-3172.
Paau M C,Lo C K,Yang X P,Choi M M F. J. Phys. Chem. C,2010,114(38):15995-16003.
Shang L,Xu J,Nienhaus G U. Nano Today,2019,28(9):100767.
Wang J X,Lin X F,Shu T,Su L,Liang F,Zhang X J. Int. J. Mol. Sci.,2019,20(8):1891.
Ao H,Feng H,Pan S F,Bao Z Y,Li Z H,Chen J R,Qian Z S. ACS Appl. Nano Mater.,2018,1(10):5673-5681.
El-Said W A,Cho H Y,Yea C H,Choi J W. Adv. Mater.,2014,26(6):910-918.
Qi D Y. Optimization of Luminescence Properties and Application of Glutathione-protected Metal Nanoclusters. Changchun:Jilin University(祁德燕. 谷胱甘肽保护的金属纳米簇的发光性能优化及其应用研究. 长春:吉林大学),2022.
Goncalves M S T. Chem. Rev.,2009,109(1):190-212.
Hardman R. Environ,Health Persp.,2006,114(2):165-172.
Tang Y,Xiong X L,Zheng B Z. Appl. Chem. Ind.(唐艳,熊小莉,郑保战. 应用化工),2013,42(11):2052-2055.
Zhang L Y. Studies on Application of Glutathione Stablized Fluorescent Noble Metal Nanoclusters and Their Photo-reduction Synthesis. Kunming:Yunnan University(张玲艳.谷胱甘肽-贵金属荧光纳米簇的应用及光还原合成方法研究. 昆明:云南大学),2016.
González B S,Rodríguez M J,Blanco C,Rivas J,López-Quintela M A,Martinho J M G. Nano Lett.,2010,10:4217-4221.
Li J J,Zhu J J,Xu K. TrAC-Trend Anal. Chem.,2014,58:90-98.
Shang L,Azadfar N,Stockmar F,Send W,Trouillet V,Bruns M,Gerthsen D,Nienhaus G U. Small,2011,7(18):2614-2620.
Zheng J,Petty J T,Dickson R M. J. Am. Chem. Soc.,2003,125(26):7780-7781.
Xie J P,Zheng Y,Ying J Y. J. Am. Chem. Soc.,2009,131(3):888-889.
Liu J W. TrAC-Trend Anal. Chem.,2014,58:99-111.
Ding J. Preparation of Metal Nanoclusters-based Fluorescent Composites and Its Applications in Environmental Detection. Changchun:Changchun University of Technology (丁娟. 金属纳米簇基荧光复合材料的制备及在环境检测中的应用.长春:长春工业大学),2021.
Wang C X,Cheng H,Sun Y Q,Lin Q,Zhang C. ChemNanoMat,2015,1(1):27-31.
Liu Z H,Wu Z N,Yao Q F,Cao Y T,Chai O J H,Xie J P. Nano Today,2021,36(9):101053.
Huang T. Controllable Synthesis and Electrocatalytic Oxygen Reduction Performance of Gold Nanoclusters. Hefei:University of Science and Technology of China(黄婷. 金纳米团簇的可控制备及电催化氧还原性能研究.合肥:中国科学技术大学),2017.
Deng H H,Li K L,Zhuang Q Q,Peng H P,Liu A L,Xia X H,Chen W. Nanoscale,2018,10(14):6467-6473.
Guével X L,Trouillet V,Spies C,Jung G,Schneider M. J. Phys. Chem. C,2012,116(10):6047-6051.
Bhamore J R,Gul A R,Chae W S,Kim K W,Lee J S,Park H,Kailasa S K,Park T J. Sens. Actuators B,2020,322:128603.
Cang J S,Wang C W,Chen P C,Lin Y J,Li Y C,Chang H T. Anal. Methods,2017,9(36):5254-5259.
Li W Y,Wen X P,Zhao H M,Yan W J,Trant J F,Li Y Q. ACS Appl. Nano Mater.,2020,3(12):11838-11849.
Wang J X,Lin X F,SuL,Yin J F,Shu T,Zhang X J. Nanoscale,2019,11(1):294-300.
Zhai Q F,Xing H H,Fan D Q,Zhang X W,Li J. Sens. Actuators B,2018,273:1827-1832.
Triulzi R C,Micic M,Giordani S,Serry M,Chioue W A,Leblanc R M. Chem. Commun.,2006,48:5068-5070.
Liu R,Bao L J,Zhang S H,Wu Z Y,Zhou J,Liu C H,Yu R Q. J. Mater. Chem. B,2020,8(48):11001-11009.
Bonis-O'Donnell J T D,Vong D,Pennathur S,Fygenson D K. Nanoscale,2016,8:14489-14496.
Wu X,He X X,Wang K M,Xie C,Zhou B,Qing Z H. Nanoscale,2010,2(10):2244-2249.
Pan Y T,Li Q Z,Zhou Q,Zhang W,Yue P,Xu C Z,Qin X M,Yu H Z,Zhu M Z. Talanta,2018,188:259-265.
Zhu Q L,Xu Q. Chem. Soc. Rev.,2014,43(16):5468-5512.
Yaghi O M,Li G M,Li H L. Nature,1995,378(6558):703-706.
Qu D H,Wang Q C,Zhang Q W,Ma X,Tian H. Chem. Rev.,2015,115(15):7543-7588.
Coudert F X. Chem. Mater.,2015,27(6):1905-1916.
Chen K F,Singh R,Guo J N,Zavabeti A,Gu Q F,Snurr R Q,Webley P A,Li G K. ACS Appl. Mater. Int.,2022,14(11):13904-13913.
Liu W C,Pan Y,Xiao W W,Xu H J,Liu D,Ren F,Peng X S,Liu J Q. Med. Chem. Commun.,2019,10(12):2038-2051.
Sun H D,Du B B,Wu Y Z,Wang H L,Zhang X Y,Wang J,Zhang S M,Wei S S,Yu T J. Cent. South Univ.,2021,28(12):3907-3934.
Zhang S M,Ba Z Y,Li T H,Mao Q N,Huang R J,Liu G Q,Yu T. Chin. J. Lumin.(张思敏,巴泽英,李天豪,毛倩楠,黄荣娟,刘国权,于涛. 发光学报),2023,44(2):227-239.
Dryza V,Bieske E J. J. Phys. Chem. C,2015,119(25):14076-14084.
Bandara H M D,Burdette S C. Chem. Soc. Rev.,2012,41(5):1809-1825.
Irie M,Fukaminato T,Matsuda K,Kobatake S. Chem. Rev.,2014,114(24):12174-12277.
Zhang F Y,Li E Z,Wang X,Cheng H G,Cheng F Q. Inorg. Chem. Ind.(张飞宇,李恩泽,王鑫,成怀刚,程芳琴. 无机盐工业),2022,54(10):68-78.
Feringa B L,Browne W R. Molecular Switches. Hoboken:John Wiley & Sons,2001:37-80.
Fleming C L,Li S M,Grøtli M,Andréasson J. J. Am. Chem. Soc.,2018,140(43):14069-14072.
Liu Y,Chen Y L,Guo Y M,Wang X P,Ding S S,Sun X,Wang H T,Zhu Y,Jiang L. ACS Nano,2022,16(10):16343-16352.
Orlikowska H,Sobolewska A,Bartkiewicz S. J. Mol. Liq.,2020,316:113842.
Eom T,Khan A. Dyes Pigm.,2021,188:109197.
Kanj A B,Müller K,Heinke L. Macromol. Rapid Commun.,2018,39(1):1700239.
Hu C H,Ma N N,Li F,Fang Y,Liu Y,Zhao L L,Qiao S P,Li X M,Jiang X J,Li T Z,Shen F Z,Huang Y B,Luo Q,Liu J Q. ACS Appl. Mater. Int.,2018,10(5):4603-4613.
Wang Y. Synthesis and Properties of a Novel Photochromic Diarylethene with 4-Cyanophenyl Groups. Xi’an:Xi’an University of Technology(王云. 新型含氰基二芳基乙烯的合成和性质研究. 西安:西安理工大学),2014.
Guo N. Study on Photochemical Reaction Mechanism of Diarylethylene and Spiropyran Compounds. Xi’an:Shaanxi Normal University(郭妮. 二芳基乙烯和螺吡喃化合物的光化学反应机理研究. 西安:陕西师范大学),2018.
Kawata S,Kawata Y. Chem. Rev.,2000,100(5):1777-1788.
Tang Y Y,Zeng Y L,Xiong R G. J. Am. Chem. Soc.,2022,144(19):8633-8640.
Li S,Chen Z,Tan L,Wu Q,Ren X,Fu C,Niu M,Li H,Meng X. Biomaterials,2022,283:121472.
Fang W Q,Zhang L,Feng H R,Meng J X,Zhang Z P,Liu Z B. Microchem. J.,2023,185:108265.
Yang J,Ni W,Ruan B,Tsai L C,Ma N,Shi D,Jiang T,Tsai F C. ECS J. Solid State Sci. Technol.,2021,10:056003.
Hao J,Liu F F,Liu N,Zeng M L,Song Y H,Wang L. Sens. Actuators B,2017,245:641-647.
Wu S Y,Min H,Shi W,Cheng P. Adv. Mater.,2020,32:1805871.
Zhang Y Q,Wu X H,Mao S,Tao W Q,Li Z. Talanta,2019,204:344-352.
Wang Y M,Yang Z R,Xiao L H,Yin X B. Anal. Chem.,2018,90(9):5758-5763.
Cornelio J,Zhou T Y,Alkaş A,Telfer S G. J. Am. Chem. Soc.,2018,140(45):15470-15476.
Ye Y X,Zhao L W,Hu S G,Liang A,Li Y S,Zhuang Q X,Tao G R,Gu J L. Dalton Trans.,2019,48:2617-2625.
Zhang Z N,Wei Z H,Meng F Y,Su J L,Chen D S,Guo Z F,Xing H Z. Chem. Eur. J.,2020,26:1661-1667.
Lu Z X,Wu M J,Wu S,Yang S X,Li Y,Liu X L,Zheng L Y,Cao Q,Ding Z T. Nanoscale,2016,8:17489.
Tripathi K M,Tran T S,Kim Y J,Kim T Y. ACS Sustain. Chem. Eng.,2017,5(5):3982-3992.
Wang Y Y,He J,Zheng M D,Qin M D,Wei W. Talanta,2019,191:519-525.
Qin S J,Yan B. Sens. Actuators B,2018,272:510-517.
Chen J Y,Jiang S,Wang M K,Xie X L,Su X G. Sens. Actuators B,2021,339:129910.
Zhang D W,Xu Y,Liu Q L,Xia Z G. Inorg. Chem.,2018,57:4613-4619.
Xia M F,Sui Y C,Guo Y,Zhang Y D. Analyst,2021,146:904-910.
Hu X,Liu X D,Zhang X D,Chai H X,Huang Y M. Biosens. Bioelectron.,2018,105(15):65-70.
Xie Y,Sun G T,Mandl G A,Maurizio S L,Chen J B,Capobianco J A,Sun L N. Angew. Chem. Int. Ed.,2023,62(17):e202216269.
Liu W,Jiao T,Li Y,Liu Q,Tan M,Wang H,Wang L. J. Am. Chem. Soc.,2004,126(8):2280-2281.
Zhang X,Fang L Q,Jiang K,He H J,Yang Y,Cui Y J,Li B,Qian G D. Biosens. Bioelectron.,2019,130:65-72.
Li H J,He X L,Zhang M F,Li X,Wang R X,Xu Z Q,Li F F. Inorg. Chem.,2021,60:2590-2597.
Wang X Z,Mao X Y,Zhang Z Q,Guo R,Zhang Y Y,Zhu N J,Wang K,Sun P P,Huo J Z,Wang X R,Ding B. Inorg. Chem.,2020,59:2910-2922.
Chen M M,Chen L,Li H X,Brammer L,Lang J P. Inorg. Chem. Front.,2016,3(10):1297-1305.
Wang H,Wang X,Liang M,Chen G,Kong R M,Xia L,Qu F. Anal. Chem.,2020,92(4):3366-3372.
Huang Q,Wang J,Wang Q,Li G. Supramol. Chem.,2016,29:193-204.
Wang X K,Wang Y T,Wang X,Lu K B,Jiang W F,Cui P P,Hao H G,Dai F N. Dalton Trans.,2020,49:15473.
Zhang Y,Wang Q,Lu J N,Wang Q,Cong Y Q. Chemosphere,2016,162:55-63.
Yao Z Q,Li G Y,Xu J,Hu T L,Bu X H. Chem. Eur J.,2018,24(13):3192-3198.
Li J,Yuan S,Qin J S,Pang J,Zhang P,Zhang Y,Huang Y,Drake H F,Liu W R,Zhou H C. Angew. Chem.,2020,59:9319-9323.
Yang Z R,Wang M M,Wang X S,Yin X B. Anal. Chem.,2017,89(3):1930-1936.
Yang J,Dai Y,Zhu X Y,Wang Z,Li Y S,Zhuang Q X,Shi J L,Gu J L. J. Mater. Chem. A,2015,3(14):7445-7452.
Chen B L,Yang Y,Zapata F,Lin G N,Qian G D,Lobkovsky E B. Adv. Mater.,2007,19(13):1693-1696.
Du P Y,Niu Q X,Chen J,Chen Y,Zhao J,Lu X Q. Anal. Chem.,2020,92(11):7980-7986.
Hao J N,Yan B. Adv. Funct. Mater.,2017,27:1603856.
Hu Z C,Lustig W P,Zhang J M,Zheng C,Wang H,Teat S J,Gong Q H,Rudd N D,Li J. J. Am. Chem. Soc.,2015,137(51):16209-16215.
Dong X Y,Si Y B,Yang J S,Zhang C,Han Z,Luo P,Wang Z Y,Zang S Q,Mak T C W. Nat. Commun.,2020,11:3678.
Mandl G A,Cooper D R,Hirsch T,Seuntjens J,Capobian J A. Methods Appl. Fluores.,2019,7(1):012004.
Zhu X J,Su Q Q,Feng W,Li F Y. Chem. Soc. Rev.,2017,46(4):1025-1039.
Ma Q,Wang J,Li Z,Lv X,Liang L,Yuan Q. Small,2019,15:1804969–1804990.
Guo Z X,Ming J,Zhang F. Sci. Chin. Chim.(郭芷秀,明江,张凡. 中国科学:化学), 2022,52(9):1513-1523.
Zhang J. One-step Synthesis and Analytical Application of Carbon Quantum Dot Fluorescent Probes. Yan’an:Yan’an University(张洁. 碳量子点荧光探针的一步合成及分析应用. 延安:延安大学),2022.
0
浏览量
92
下载量
0
CSCD
关联资源
相关文章
相关作者
相关机构