[1] 舒杰明,高云玲,姚克俭,等.香豆素类荧光传感器检测金属离子的研究进展[J].化工进展,2014,33(12):3144-3156. [2] 马文辉,彭孝军,徐群,等.香豆素类荧光传感器[J].化学进展,2007,19(9):1258-1266. [3] 程晓红,王松.脱硫化反应在汞离子传感器中的应用进展[J].化工进展,2015,34(8):2925-2931. [4] CHO D G,SESSLER J L.Modern reaction-based indicator systems[J].Chemical Society Reviews,2009,38(6):1647-1662. [5] MIEUN Jun,BASAB Roy,KYO Han Ahn. "Turn-on" fluorescent sensing with "reactive" probes[J].Chemical Communications,2011,47(27):7583-7601. [6] CHAN J,DODANI S C,CHANG C J.Reaction-based small-molecule fluorescent probes for chemoselective bioimaging[J].Nature Chemistry,2012,4(12):973-984. [7] YAN M,HONG M,LIU A,et al.Highly selective and sensitive detection of Hg (Ⅱ) from HgCl2 by a simple rhodamine-based fluorescent sensor.[J].Journal of Fluorescence,2015,25(3):1-7. [8] CHEN Y,YANG C,YU Z,et al.A highly sensitive hemicyanine-based fluorescent chemodosimeter for mercury ions in aqueous solution and living cells[J].RSC Advances,2015,5:82531-82534. [9] WANG F H,CHENG C W,DUAN L C,et al.Highly selective fluorescent sensor for Hg2+ ion based on a novel rhodamine B derivative[J].Sensors&Actuators B Chemical,2015,206:679-683. [10] SUMIYA S,SUGⅡ T,SHIRAISHI Y,et al.A benzoxadiazole-thiourea conjugate as a fluorescent chemodosimeter for Hg (Ⅱ) in aqueous media[J].Journal of Photochemistry&Photobiology A Chemistry,2011,219(1):154-158. [11] JIANG H,LUO W,JIANG J,et al.A resumable two-photon fluorescent chemodosimeter for Hg2+ in aqueous solution[J].Sensors&Actuators B Chemical,2014,204:68-73. [12] LEE H,KIM H J.Ratiometric fluorescence chemodosimeter for mercuric ions through the Hg (Ⅱ)-mediated propargyl amide to oxazole transformation[J].Tetrahedron Letters,2011,52(37):4775-4778. [13] HAN Y,YANG C,WU K,et al.A facile naphthalene-based fluorescent chemodosimeter for mercury ions in aqueous solution[J].RSC Advances,2015,5(22):16723-16726. [14] XI,PInxian,DOU Jianyan,HUANG Liang,et al.A selective turn-on fluorescent sensor for Cu (Ⅱ) and its application in imaging in living cells[J].Sensors&Actuators B Chemical,2010,148(1):337-341. [15] HAO Z,FAN J,JING L,et al.Optical Cu2+ probe bearing an 8-hydroxyquinoline subunit:high sensitivity and large fluorescence enhancement.[J].Talanta,2012,93(2):55-61. [16] FAN J,LIU X,HU M,et al.Development of an oxidative dehydrogenation-based fluorescent probe for Cu2+ and its biological imaging in living cells[J].Analytica Chimica Acta,2012,735(14):107-113. [17] ELENA S,LUIS M,CARMEN R,et al.Squaramide-based reagent for selective chromogenic sensing of Cu (Ⅱ) through a zwitterion radical.[J].Organic Letters,2010,12(17):3840-3843. [18] LI Meng,LV Hong-shui,LUO Ji-Zhuang,et al.An effective "turn-on" rodamine-based fluorescent chemosensor for Cu (Ⅱ) in living cells[J].Sensors&Actuators B Chemical,2013,188:1235-1240. [19] WANG J,ZONG Q.A new turn-on fluorescent probe for the detection of copper ion in neat aqueous solution[J].Sensors&Actuators B Chemical,2015,216:572-577. [20] NARENDRA REDDY C,SATHIAH T,ASITBARAN M.A highly selective and efficient single molecular FRET based sensor for ratiometric detection of Fe3+ ions[J].Analyst,2013,138(5):1334-1337. [21] BORDINI J,CALANDRELI I,SILVA G O,et al.A rhodamine-B-based turn-on fluorescent sensor for biological iron (Ⅲ)[J].Inorganic Chemistry Communications,2013,35(5):255-259. [22] DU Y,MIN C,ZHANG Y,et al.Determination of iron (Ⅲ) based on the fluorescence quenching of rhodamine B derivative.[J].Talanta,2013,106(6):261-265. [23] LUXAMI V,RENUKAMAL,PAUL K,et al.A dual-responsive chromo-fluorescent probe for detection of Zn2+ and Fe3+ via two different approaches[J].RSC Advances,2013,3(24):9189-9192. [24] LONG L,ZHOU L,LIN W,et al.A ratiometric fluorescent probe for iron (Ⅲ) and its application for detection of iron (Ⅲ) in human blood serum[J].Analytica Chimica Acta,2014,812(812):145-151. [25] Hou J T,Li K,Yu K K,et al.Novel triazole-based fluorescent probes for Pd2+ in aqueous solutions:design,theoretical calculations and imaging[J].Analyst,2013,138(21):6632-6638. [26] BO Q,SHIGUO S,NA J,et al.A ratiometric fluorescent probe for determining Pd2+ ions based on coordination[J].Dalton Transactions,2014,43(12):4626-4630. [27] SUN S G,QIAO B,JIANG N,et al.Naphthylamine-rhodamine-based ratiometric fluorescent probe for the determination of Pd2+ ions[J].Chemical Communications,2014,16(4):1132-1135. [28] CHRISTINE E.GARRETT,PRASAD K.The art of meeting palladium specifications in active pharmaceutical ingredients produced by Pd-catalyzed reactions[J].Advanced Synthesis&Catalysis,2004,346(8):889-900. [29] HUANG Q,ZHOU Y,ZHANG Q,et al.A new "off-on" fluorescent probe for Pd2+ in aqueous solution and live-cell based on spirolactam ring-opening reaction[J].Sensors&Actuators B Chemical,2015,208(208):22-29. [30] XIANG K,LIU Y,LI C,et al.A colorimetric and ratiometric fluorescent probe for detection of palladium in the red light region[J].RSC Advances,2015,5(65):52516-52521. [31] CAO Jian,ZHAO Chunchang,WANG Xuzhe,et al.Target-triggered deprotonation of 6-hydroxyindole-based BODIPY:specially switch on NIR fluorescence upon selectively binding to Zn2+[J].Chemical Communications,2012,48(79):9897-9899. [32] SHEN R,LIU D,HOU C,et al.New fluorescent probe for Zn2+ imaging in living cells and plants[J].Anal Methods,2016,8:83-88. [33] HAN Z X,ZHANG X B,LI Z,et al.Efficient fluorescence resonance energy transfer-based ratiometric fluorescent cellular imaging probe for Zn2+ using a rhodamine spirolactam as a trigger[J].Analytical Chemistry,2010,82(8):3108-3113. [34] RAI A,KUMARI N,NAIR R,et al.A new rhodamine derivative as a single optical probe for the recognition of Cu2+ and Zn2+ ions[J].RSC Advances,2015,5(19):14382-14388. [35] ZHU J F,YUAN H,CHAN WH,et al.A colorimetric and fluorescent turn-on chemosensor operative in aqueous media for Zn2+based on a multifunctionalized spirobenzopyran derivative[J].Organic&Biomolecular Chemistry,2010,8(17):3957-3964. [36] ZHU J F,CHAN W H,LEE A W M.Both visual and ratiomenic fluorescent sensor for Zn2+ based on spirobenzopyran platform[J].Tetrahedron Letters,2012,53(15):2001-2004. [37] LIU Z,LI Y,DING Y,et al.Water-soluble and highly selective fluorescent sensor from naphthol aldehyde-tris derivate for aluminium ion detection[J].Sensors&Actuators B Chemical,2014,197(3):200-205. [38] KIM H,RAO B A,JEONG J W,et al.A highly selective dual-channel Cu2+ and Al3+ chemodosimeter in aqueous systems:sensing in living cells and microfluidic flows[J].Sensors&Actuators B Chemical,2015,210:173-182. [39] JEONG Jong Woo,RAO Boddu Ananda,SON Young-A.Rhodamine-chloronicotinaldehyde-based "OFF-ON" chemosensor for the colorimetric and fluorescent determination of Al3+ ions[J].Sensors&Actuators B Chemical,2015,208:75-84. [40] JEONG Jong Woo,RAO Boddu Ananda,LEE Jae-Young,et al.An ‘OFF-ON’ fluorescent chemosensor based on rhodamine 6G-2-chloronicotinaldehyde for the detection of Al3+ ions:Part Ⅱ[J].Sensors&Actuators B Chemical,2016,227:227-241. [41] FAN L,QIN J C,LI T R,et al.A novel rhodamine chromone-based "Off-On" chemosensor for the differential detection of Al (Ⅲ) and Zn (Ⅱ) in aqueous solutions[J].Sensors&Actuators B Chemical,2014,203:550-556. |