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化學發(fā)光分析

BPCL在化學發(fā)光分析領(lǐng)域中的應(yīng)用 

      化學發(fā)光(Chemiluminescence,CL)是物質(zhì)在進行化學反應(yīng)過程中伴隨的一種光輻射現(xiàn)象,由于BPCL獨特的和先進的光探測技術(shù),利用此儀器可以測定超微弱發(fā)光。目前BPCL被廣泛用于有害氣體、農(nóng)藥殘留、抗生素、金屬離子、蛋白質(zhì)、DNA、藥物等物質(zhì)的化學發(fā)光測定,BPCL在化學發(fā)光分析中的應(yīng)用例子[1-12]:


[1]     Na N, Zhang S C, Wang S,Zhang X R. A catalytic nanomaterial-based optical chemo-sensor array. Journalof the American Chemical Society, 2006, 128(45): 14420-14421.

[2]     Zhang R K, Li G K, Hu Y F.Simple and Excellent Selective Chemiluminescence-Based CS2 On-LineDetection System for Rapid Analysis of Sulfur-Containing Compounds in ComplexSamples. Analytical Chemistry, 2015, 87(11): 5649-5655.

[3]     He Y, Xu B, Li W H, Yu H L.Silver nanoparticle-based chemiluminescent sensor array for pesticidediscrimination. Journal of Agricultural and Food Chemistry, 2015, 63(11):2930-2934.

[4]     Chen C, Li B X.Chemiluminescence resonance energy transfer biosensing platform forsite-specific determination of DNA methylation and assay of DNAmethyltransferase activity using exonuclease III-assisted target recyclingamplification. Biosensors and Bioelectronics, 2014, 54: 48-54.

[5]     Liu Y M, Liu Y Y, Zhou M,Huang K J, Cao J T, Wang H, Chen Y H. Chemiluminescence detection of protein incapillary electrophoresis using aptamer-functionalized gold nanoparticles asbiosensing platform. Journal of Chromatography A, 2014, 1340: 128-133.

[6]     Ren H, Long Z, Cui M C, ShaoK, Zhou K X, Ouyang J, Na N. Dual‐Functional Nanoparticles for In Situ Sequential Detectionand Imaging of ATP and H2O2, Small, 2016.

[7]     Chen H, Li H F, Lin J M.Determination of ammonia in water based on chemiluminescence resonance energytransfer between peroxymonocarbonate and branched NaYF4: Yb3+/Er3+ nanoparticles. Analytical Chemistry, 2012, 84(20): 8871-8879.

[8]     Bai S L, Chen Q S, Lu C, LinJ M. Automated high performance liquid chromatography with on-line reduction ofdisulfides and chemiluminescence detection for determination of thiols anddisulfides in biological fluids. Analytica Chimica Acta, 2013, 768: 96-101.

[9]     Pan F, Liu L, Dong S C, Lu C.A new approach for bisphenol A detection employing fluorosurfactant-capped goldnanoparticle-amplified chemiluminescence from cobalt (II) andperoxymonocarbonate. Spectrochimica Acta Part A: Molecular and BiomolecularSpectroscopy. 2014, 128: 393-397.

[10]   Li R B, Kameda T, Toriba A,Hayakawa K, Lin J M. Determination of benzo [a] pyrene-7, 10-quinone inairborne particulates by using a chemiluminescence reaction of hydrogenperoxide and hydrosulfite. Analytical Chemistry, 2012, 84(7): 3215-3221.

[11]   Yang P, Lau C W, Liu X, Lu JZ. Direct solid-support sample loading for fast cataluminescence determinationof acetone in human plasma. Analytical Chemistry, 2007, 79(22): 8476-8485.

[12]   Hanif S M, John P, Gao W Y,Saqib M, Qi L M, Xu G B. Chemiluminescence of creatinine/H 2O2/Co2+ and its application for selective creatinine detection. Biosensors andBioelectronics, 2016, 75: 347-351.







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