Page 103 - 《精细化工》2023年第9期
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第 9 期 邵 琦,等: 可逆型荧光探针的合成及对 Cu 和 Pd 的双重检测 ·1951·
3 结论 manifestations of palladium allergy[J]. Contact Dermatitis, 2011,
64(4): 185-195.
[14] GOOSSENS A, SWERDT A D, CONINCK K D, et al. Allergic
本文设计合成了一种可逆型荧光探针 PHM,实 contact granuloma due to palladium following ear piercing[J].
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现了对 Cu 和 Pd 的双重检测,在 V(DMSO)∶ Contact Dermatitis, 2006, 55(6): 338-341.
[15] KIELHORN J, MELBER C, KELLER D, et al. Palladium-A review of
V(H 2 O)=9∶1(pH=7.4,HEPES 缓冲液 0.2 mmol/L) exposure and effects to human health[J]. International Journal of
Hygiene and Environmental Health, 2002, 205(6): 417-432.
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中对 Cu 和 Pd 具有高灵敏度、特异性的荧光猝灭 [16] BAKER M S, PHILLIPS S T. A two-component small molecule
效应,肉眼可见由无色到黄色的颜色变化。同时, system for activity-based detection and signal amplification:
Application to the visual detection of threshold levels of Pd(Ⅱ)[J].
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探针 PHM 与 Cu 以物质的量比为 1∶1 形成了配合 Journal of American Chemical Society, 2011, 133(14): 5170-5173.
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物,PHM-Cu 配合物可有效识别 EDTA 而不受其他 [17] KATLEEN V M, SMEKENS A, BEHETS M, et al. Determination of
platinum, palladium, and rhodium in automotive catalysts using
文中所列阴离子的干扰,添加 EDTA 后被猝灭的荧 high-energy secondary target X ray fluorescence spectrometry[J].
光得到恢复,证实了 PHM 具有开-关-开的可逆荧光 Analytical Chemistry, 2007, 79(16): 6383-6389.
[18] CASTILLO M L A, TORRES A G, ALONSO E V, et al. Multi-
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特性。通过 Job's 曲线、DFT 计算以及 HNMR 核磁 element determination of Pt, Pd and Ir traces in environmental
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滴定实验验证了 PHM 与 Cu 和 Pd 可能的络合机 samples by ICP-MS after pre-concentration[J]. Talanta, 2012, 99:
853-858.
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制。PHM 探针已成功地应用于环境样品中 Cu 和 [19] PIROGOV A V, HAVEL J. Determination of platinum, palladium,
osmium, iridium, rhodium and gold as chloro complexes by capillary
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Pd 的实际检测,并且开发出检测 Pd 和 Cu 的固 zone electrophoresis[J]. Journal of Chromatography A, 1997, 772(1):
态试纸条,具有良好的应用前景。 347-355.
[20] HAMACEK J, HAVEL J. Determination of platinum (Ⅱ, Ⅳ) and
palladium( Ⅱ ) as thiocyanate complexes by capillary zone
参考文献: electrophoresis: Analysis of carboplatin and similar drugs[J]. Journal
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[1] KRAMER R. Fluorescent chemosensors for Cu ions: Fast, of Chromatography A, 1999, 834(1): 321-327.
selective, and highly sensitive[J]. Angewandte Chemie International [21] LI H L, FAN J L, PENG X J. Colourimetric and fluorescent probes
Edition, 1998, 37(6): 772-773. for the optical detection of palladium ions[J]. Chemical Society of
[2] KIM I B, BUNZ U H F. Modulating the sensory response of a Reviews, 2013, 42(19): 7943-7962.
conjugated polymer by proteins: An agglutination assay for mercury [22] QUANG D T, KIM J S. Fluoro- and chromogenic chemodosimeters
ions in water[J]. Journal of American Chemical Society, 2006, for heavy metal ion detection in solution and biospecimens[J].
128(9): 2818-2819. Chemical Reviews, 2010, 110(10): 6280-6301.
[3] HUANG C C, YANG Z, LEE K H, et al. Synthesis of highly [23] DUKE R M, VEALE E B, PFEFFER F M, et al. Colorimetric and
fluorescent gold nanoparticles for sensing mercury( Ⅱ )[J]. fluorescent anion sensors: An overview of recent developments in the
Angewandte Chemie, 2007, 119(36): 6948-6952. use of 1,8-naphthalimide-based chemosensors[J]. Chemical Society
[4] ZHAO Y, ZHANG X B, HAN Z X, et al. Highly sensitive and Reviews, 2010, 39(10): 3936-3953.
2+
selective colorimetric and off-on fluorescent chemosensor for Cu in [24] JUN M E, ROY B, AHN K H. "Turn-on" fluorescent sensing with
"reactive" probes[J]. Chemical Communications, 2011, 47(27): 7583-7601.
aqueous solution and living cells[J]. Analytical Chemistry, 2009,
81(16): 7022-7030. [25] XU H Y, CHEN W, ZHANG W X, et al. A selective purine-based
[5] TAPIERO H, TOWNSEND D M, TEW K D. Trace elements in fluorescent chemosensor for the "naked-eye" detection of zinc ions
2+
human physiology and pathology. Copper[J]. Biomedicine & (Zn ): Applications in live cell imaging and test strips[J]. New
Journal of Chemistry, 2020, 44(35): 15195-15201.
Pharmacotherapy, 2003, 57(9): 386-398.
[6] DING B, SI Y, WANG X F, et al. Label-free ultrasensitive [26] XU H Y, CHEN W, JU L X, et al. A purine based fluorescent
3+
chemosensor for the selective and sole detection of Al and its
colorimetric detection of copper( Ⅱ ) ions utilizing polyaniline/ practical applications in test strips and bio-imaging[J].
polyamide-6 nano-fiber/net sensor strips[J]. Journal of Materials Spectrochimica Acta Part A: Molecular and Biomolecular
Chemistry, 2011, 21(35): 13345-13353. Spectroscopy, 2021, 247: 119074.
[7] YANG Y T, HUO F J, YIN C X, et al. Combined spectral experiment [27] XIE H F, YU C J, HUANG Y L, et al. A turn-off fluorescent probe
and theoretical calculation to study the chemosensors of copper and for the detection of Cu based on a tetraphenylethylene-
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their applications in anion bioimaging[J]. Sensors and Actuators B: functionalized salicylaldehyde Schiff-base[J]. Materials Chemistry
Chemical, 2013, 177: 1189-1197. Frontiers, 2020, 4(5): 1500-1506.
[8] LIN Z J, LUO F Q, DONG T Q, et al. Recyclable fluorescent gold [28] MOHANASUNDARAM D, BHASKAR R, LENIN N, K. et al. A
nanocluster membrane for visual sensing of copper(Ⅱ) ion in simple triphenylamine based turn-off fluorescent sensor for copper
aqueous solution[J]. Analyst, 2012, 137(10): 2394-2399. ( Ⅱ ) ion detection in semi-aqueous solutions[J]. Journal of
[9] YU T, YIN G X, YIN P, et al. A novel long-wavelength fluorescent Photochemistry and Photobiology A: Chemistry, 2022, 427: 113850.
probe for discrimination of different palladium species based on [29] LIU K, HU Z J. A novel conjugated polymer consists of
Pd-catalyzed reactions[J]. RSC Advances, 2017, 7(40): 24822-24827. benzimidazole and benzothiadiazole: Synthesis, photophysics
[10] LYONS T W, SANFORD M S. Palladium-catalyzed ligand-directed properties, and sensing properties for Pd [J]. Journal of Polymer
2+
C—H functionalization reactions[J]. Chemical Reviews, 2010, Science, 2020, 58(6): 831-842.
110(2): 1147-1169. [30] JIN X X, CHEN H L, ZHANG W X, et al. A novel purine
[11] JANA R, PATHAK T P, SIGMAN M S. Advances in transition metal derivative-based colorimetric chemosensor for sequential detection
(Pd, Ni, Fe)-catalyzed cross-coupling reactions using alkyl- of copper ion and sulfide anion[J]. Applied Organometallic
organometallics as reaction partners[J]. Chemical Reviews, 2011, Chemistry, 2018, 32(12): e4577.
111(3): 1417-1492. [31] WU G W, WANG Z Y, ZHANG W X, et al. A novel Rhodamine B
[12] ZEREINI F, WISEMAN C L S, PUTTMANN W. In vitro and purine derivative-based fluorescent chemosensor for detection of
investigations of platinum, palladium, and rhodium mobility in urban palladium (Ⅱ) ion[J]. Inorganic Chemistry Communcation, 2019,
airborne particulate matter (PM10, PM2.5, and PM1) using simulated 102: 233-239.
lung fluids[J]. Environmental Science & Technology, 2012, 46(18): [32] DONG Z, CHEN W, LI H L, et al. A dual-functional colorimetric
10326-10333. and "on-off" fluorescent probe based on purine derivative for
[13] FAURSCHOU A, MENNE T, JOHANSEN J D, et al. Metal allergen detecting Pd and Cu : Application as test strips[J]. Inorganic
2+
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of the 21st century-A review on exposure, epidemiology and clinical Chemistry Communcations, 2020, 116: 107915.