[1] |
Zheng J(郑洁). Synthesis on acetylpyrazine and study on its production techniques[D]. Zhejiang: University of Tech-nology, 2011.
|
[2] |
Bai Y J(白亚军), Liu Y F(刘毅锋), Zhang J(张娟), Dang W J(党文娟), Jiao J P(焦军平). A study of 3-N,N-dimethylamino-1-heteroaryl-2-propen-1-one[J]. J. Northwest Univ. (Nat. Sci. Ed)(西北大学学报(自然科学版)), 2007, 37(2): 231-234.
|
[3] |
Liu Y F, Wang C L, Bai Y J, Han N, Jiao J P, Qi X L. A facile total synthesis of imatinib base and its analogues[J]. Org. Process Res. Dev., 2008, 12(3): 490-495.
doi: 10.1021/op700270n
URL
|
[4] |
Opletalová V, Hartl J, Patel A, Palat K, Buchta V. Ring substituted 3-phenyl-(2-pyrazinyl)-2-propen-1-ones as po-tential photosynthesis-inhibiting, antifungal and antimycobacterial agents[J]. Farmaco, 2002, 57(2): 135-144.
pmid: 11902656
|
[5] |
Srinivas A, Nagaraj A, Reddy C S. Synthesis and in vitro study of a new class of methylene-bis-4,6-diarylbenzo[d]isoxazoles as potential antifungal agents[J]. J. Heterocycl. Chem., 2009, 46(3): 497-502.
doi: 10.1002/jhet.100
URL
|
[6] |
Dolezel J, Hirsova P, Opletalova V, Dohnal J, Marcela V, Kunes J, Jampilek J. Rhodanineacetic acid derivatives as potential drugs: Preparation, hydrophobic properties and antifungal activity of (5-Arylalkylidene-4-oxo-2-thioxo-1,3-thiazolidin-3-yl)acetic acids[J]. Molecules, 2009, 14(10): 4197-4212.
doi: 10.3390/molecules14104197
pmid: 19924058
|
[7] |
Satoh A, Nagatomi Y, Hirata Y, Ito S, Suzuki G, Kimura T, Maehara S, Hikichi H, Satow A, Hata M, Ohta H, Kawamoto H. Discovery and in vitro and in vivo profiles of 4-fluoro-N-[4-[6-(isopropylamino)pyrimidin-4-yl]-1, 3-thiazol-2-yl]-N-methylbenzamide as novel class of an orally active metabotropic glutamate receptor 1(mGluR1) antagonist[J]. Bioorg. Med. Chem. Lett., 2009, 19(18): 5464-5468.
doi: 10.1016/j.bmcl.2009.07.097
URL
|
[8] |
Feng D X, Chen R Y, Huang Y, Song H B. A new convenient way to synthesize 1-hydroxyphosphonates from heterocyclic aldehydes and ketones under microwave irradiation[J]. Heteroatom Chem., 2007, 18(4): 347-353.
doi: 10.1002/hc.20304
URL
|
[9] |
Liu J B, Yi W, Wan Y Q, Ma L, Song H C. 1-(1-Arylethy-lidene)thiosemicarbazide derivatives: A new class of tyro-sinase inhibitors[J]. Bioorg. Med. Chem., 2008, 16(3): 1096-1102.
doi: 10.1016/j.bmc.2007.10.102
URL
|
[10] |
Minisci F, Bernardi R, Bertini F, Galli R, Perchinummo M. Nucleophilic character of alkyl radicals-VI: A new convenient selective alkylation of heteroaromatic bases[J]. Tetrahedron, 1971, 27(15): 3575-3579.
doi: 10.1016/S0040-4020(01)97768-3
URL
|
[11] |
Jin J, Macmillan D W C. Alcohols as alkylating agents in heteroarene C-H functionalization[J]. Nature, 2015, 525(7567): 87-90.
doi: 10.1038/nature14885
URL
|
[12] |
Wang X Z, Zeng C C. Iron-catalyzed minisci acylation of N-heteroarenes with a-keto acids[J]. Tetrahedron, 2019, 75(10): 1425-1430.
doi: 10.1016/j.tet.2019.01.060
URL
|
[13] |
Zhu J, Hii K K M, Hellgardt K. Toward a green generation of oxidant on demand: Practical electrosynthesis of ammonium persulfate[J]. ACS Sustain. Chem. Eng., 2016, 4(4): 2027-2036.
doi: 10.1021/acssuschemeng.5b01372
URL
|
[14] |
Tsitonaki A, Petri B, Crimi M, Mosbaek H, Siegrist R L, Bjerg P L. In situ chemical oxidation of contaminated soil and groundwater using persulfate: A review[J]. Crit. Rev. Environ. Sci. Technol., 2010, 40(1): 55-91.
doi: 10.1080/10643380802039303
URL
|
[15] |
Du X Z(杜肖哲). Degradation of p-chloroaniline in aqueous solution with advanced oxidation technology based on heat-assisted persulfate[D]. Canton: South China University of Technology, 2012.
|
[16] |
Devi L G, Kumar S G, Reddy K M. Photo fenton like pro-cess Fe3+/(NH4)2S2O8/UV for the degradation of Diazo dye congo red using low iron concentration[J]. Cent. Eur. J. Chem, 2009, 7(3): 468-477.
|
[17] |
Song H R(宋浩然). Research on cogeneration of hydrogen peroxide cathodic and ammonium persulfate anodic[D]. Shenzhen: Harbin Institute of Technology, 2014.
|
[18] |
Luo H J, Li C L, Sun X, Ding B B. Cathodic indirect oxidation of organic pollutant paired to anodic persulfate production[J]. J. Electroanal. Chem., 2017, 792: 110-116.
doi: 10.1016/j.jelechem.2017.03.040
URL
|
[19] |
Davis J R, Baygents J C, Farrell J. Effect of current density and sulfuric acid concentration on persulfuric acid generation by boron-doped diamond film anodes[J]. J. Appl. Electrochem., 2014, 44(7): 841-848.
doi: 10.1007/s10800-014-0692-0
URL
|
[20] |
Wang Y(王颖), Xiong Y Q(熊源泉), Zhang J P(张晋萍). Experimental study on electrosynthesis of ammonium persulfate using ammonium sulfate solutions from wet simultaneous desulfurization and denitrification[J]. J. Southeast Univ. (Nat. Sci. Ed.)(东南大学学报(自然科学版)), 2015, 45(4): 738-744.
|
[21] |
Si F(司凡). Degradation of nitroimidazoles by in-situ generated persulfate activation[D]. Canton: South China University of Technology, 2020.
|
[22] |
Zhao J H(赵建宏), Sun P Y(孙培勇), Wang L C(王留成), Song C Y(宋成盈), Xu H S(徐海升), Wang F A(王福安). Study on the process for electrosynthesis of ammonium persulfate[J]. J. Zhengzhou Univ. ( Eng. Sci.)(郑州大学学报(工学版)), 2006, 27(1): 109-112.
|
[23] |
Wang Y(王颖). Experimental investigation on simultaneous desulfurization and denitrfication by wet scrubbing and preparation of ammonium persulfate using the absorption solution[D]. Nanjing: Southeast University, 2015.
|
[24] |
Santos J E L, Antonio Quiroz M, Cerro-Lopez M, Chianca de Moura D, Martinez-Huitle C A. Evidence for the electrochemical production of persulfate at TiO2 nano-tubes decorated with PbO2[J]. New J. Chem., 2018, 42(7): 5523-5531.
doi: 10.1039/C7NJ02604H
URL
|
[25] |
Feng H(冯浩), Xiong Y Q(熊源泉), Wu B(吴波). Electrochemical production of ammonium persulfate using absorption solution from ammonia-based wet desulfurization and denitrification[J]. CIESC J. (化工学报), 2017, 68(12): 4691-4701.
|
[26] |
Wang X H(王勋华), Zhang T M(张铁明), Tong S P(童少平), Ma C A(马淳安). Preparation and application of Ti/CeO2-F-PbO2 electrode in electrochemical degradation of organics[J]. J. Electrochem.(电化学), 2010, 16(2): 172-176.
|