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·2540· 精细化工 FINE CHEMICALS 第 39 卷
for the treatment of cancer[J]. Journal of Medicinal Chemistry, 2010, [20] SHELDRICK G M. Crystal structure refinement with SHELXL[J]. Acta
53(3): 1086-1097. Crystallographica Section C: Structural Chemistry, 2015, 71: 3-8.
[12] XI Y N, LIU S M, BETTAIEB A, et al. Pancreatic T cell protein- [21] PATEL N B, PUROHIT A C, RAJANI D P, et al. New 2-benzylsulfanyl-
tyrosine phosphatase deficiency affects beta cell function in mice[J]. nicotinic acid based 1,3,4-oxadiazoles: Their synthesis and biological
Diabetologia, 2015, 58(1): 122-131. evaluation[J]. European Journal of Medicinal Chemistry, 2013, 62:
[13] RAKSHAMBIKAI R, MANOHARAN M, GNANAVEL M, et al. 677-687.
Typical and atypical domain combinations in human protein kinases: [22] ZHAO D D, LI L, XU F, et al. Bovine serum albumin-catalyzed
Functions, disease causing, mutations and conservation in other one-pot synthesis of 2-aminothiophenes via gewald reaction[J]. Journal
primates [J]. RSC Advances, 2015, 5(32): 25132-25148. of Molecular Catalysis B: Enzymatic, 2013, 95: 29-35.
[14] YIN X E (尹秀娥), JIAO D (焦娣), SUN B (孙冰), et al. Synthesis [23] TAYEBEE R, JAVADI F, ARGI G. Easy single-step preparation of
and antiproliferative activity of 7-(4-hydrocarbonoxyphenyl)-4-(4- ZnO nano-particles by sedimentation method and studying their
arylpiperazin-1-yl)-5,6,7,8-tetrahydrobenzo[4,5]thieno[2,3-d]pyrimid catalytic performance in the synthesis of 2-aminothiophenes via
ine derivatives[J]. Journal of Shenyang Pharmaceutical University gewald reaction[J]. Journal of Molecular Catalysis A: Chemical,
(沈阳药科大学学报), 2020, 37(2): 118-125. 2013, 368: 16-23.
[15] PAN Z P, LI X, WANG Y J, et al. Discovery of thieno[2,3-d] [24] SONG X J, YANG P, GAO H, et al. Facile synthesis and antitumor
pyrimidine-based hydroxamic acid derivatives as bromodomain- activity of novel 2-trifluoromethylthieno[2,3-d]pyrimidine derivatives[J].
containing protein 4/histone deacetylase dual inhibitors induce Chinese Chemical Letters, 2014, 25(7): 1006-1010.
autophagic cell death in colorectal carcinoma cells[J]. Journal of [25] FEROCI M, CHIAROTTO I, ROSSI L, et al. Activation of elemental
Medicinal Chemistry, 2020, 63(7): 3678-3700. sulfur by electrogenerated cyanomethyl anion: Synthesis of substituted
[16] ZHANG L (张磊), WANG Z Y (王子云), DING Y J (丁永杰). 2-aminothiophenes by the gewald reaction[J]. Advanced Synthesis &
Synthesis and antitumor activity of fluorinated thieno[2,3-d]pyrimidine Catalysis, 2008, 350(17): 2740-2746.
derivatives containing 1,3,4-thiadiazole[J]. Fine Chemicals (精细化 [26] KASSAB A E, GEDAWY E M. Synthesis and anticancer activity of
工), 2015, 32(6): 611-615. novel 2-pyridylhexahyro-cyclooctathieno[2,3-d]pyrimidine derivatives[J].
[17] PURSER S, MOORE P R, SWALLOW S, et al. Fluorine in medicinal European Journal of Medicinal Chemistry, 2013, 63: 224-230.
chemistry[J]. Chemical Society Reviews, 2008, 37(2): 320-330. [27] SONG X J, YANG P, WANG D F, et al. Synthesis and biological
[18] WANG J (王江), LIU H (柳红). Application of fluorine in drug activity of new fluorinated thieno[2,3-d]pyrimidinylhydrazone derivatives
design[J]. Chinese Journal of Organic Chemistry (有机化学), 2011, [J]. Letters in Organic Chemistry, 2014, 11(5): 380-385.
31(11): 1785-1798. [28] MENG Y Q (孟艳秋), NIE H H (聂慧慧), WANG X C (王晓晨),
[19] SHELDRICK G M. SHELXT-integrated space-group and crystal- et al. Synthesis and anti-tumor activity of oleanolic acid
structure determination[J]. Acta Crystallographica Section A: Foundations derivatives[J]. Acta Pharmaceutica Sinica (药学学报), 2011, 46(10):
and Advances, 2015, 71: 3-8. 1215-1220.
(上接第 2513 页) composite fibers for effective removal of emerging organic
contaminants[J]. ACS Applied Materials & Interfaces, 2020, 13(1):
755-764.
[33] CHERNYKH M, MIKHEEVA N, ZAIKOVSKII V, et al.
Room-temperature nitrophenol reduction over Ag-CeO 2 catalysts: [42] DAI B C, ZHOU G L, GE S B, et al. CO 2 reverse water-gas shift
The role of catalyst preparation method[J]. Catalysts, 2020, 10(5): reaction on mesoporous M-CeO 2 catalysts[J]. The Canadian Journal
580-592. of Chemical Engineering, 2017, 95(4): 634-642.
[34] WANG J, PAN M W, YUAN J F, et al. Hollow mesoporous silica [43] ZHAN Y Z, ZHOU X, FU B, et al. Catalytic wet peroxide oxidation
with a hierarchical shell from in situ synergistic soft-hard double of azo dye (direct blue 15) using solvothermally synthesized copper
templates[J]. Nanoscale, 2020, 12(19): 10863-10871. hydroxide nitrate as catalyst[J]. Journal of Hazardous Materials,
[35] RAYMUNDO-PINERO E, CAZORLA-AMORÓS D, LINARES- 2011, 187(1/2/3): 348-354.
SOLANO A, et al. Structural characterization of N-containing activated [44] YADAV B, SRIVASTAVA V C. Catalytic peroxidation of recalcitrant
carbon fibers prepared from a low softening point petroleum pitch and quinoline by ceria impregnated granular activated carbon[J]. Clean
a melamine resin[J]. Carbon, 2002, 40(4): 597-608. Technologies and Environmental Policy, 2017, 19(5): 1547-1555.
[36] LU Z, ZENG L, SONG W L, et al. In situ synthesis of [45] ZHAO G Z (赵国峥), LI C B (李长波), ZHANG H L (张洪林).
C-TiO 2/g-C 3N 4 heterojunction nanocomposite as highly visible light Preparation of Ag/AgCl/CeO 2 with ordered mesoporous and its
active photocatalyst originated from effective interfacial charge catalytic performance in photo-CWPO system[J]. Fine Chemicals (精
transfer[J]. Applied Catalysis B: Environmental, 2017, 202: 489-499. 细化工), 2020, 37(7): 1400-1407.
[37] XIAO S Q, TAKAI O. Formation and evaluation of CeN thin [46] HUA J (华洁), WANG M (王敏), LIN S T (林舒婷), et al.
films[J]. Thin Solid Films, 1998, 317(1/2): 137-139. Fe 3O 4/FeS 2 activated H 2O 2 degradation of typical phenylarsonic acid
[38] KESARLA M K, FUENTEZ-TORRES M O, ALCUDIA-RAMOS M pollutants[J]. China Environmental Science (中国环境科学), 2021,
A, et al. Synthesis of g-C 3N 4/N-doped CeO 2 composite for 41(6): 2646-2656.
photocatalytic degradation of an herbicide[J]. Journal of Materials [47] XIE H M, ZENG J, ZHOU G L. CeCu composite oxide for
Research and Technology, 2019, 8(2): 1628-1635. chlorophenol effective removal by heterogeneous catalytic wet
[39] SOREN S, HOTA I, DEBNATH A K, et al. Oxygen reduction peroxide oxidation[J]. Environmental Science and Pollution Research,
reaction activity of microwave mediated solvothermal synthesized 2020, 27(1): 846-860.
CeO 2/g-C 3N 4 nanocomposite[J]. Frontiers in Chemistry, 2019, 7: 403. [48] STUCHY G D, HUO Q S, FIROUZI A, et al. Directed synthesis of
[40] MA C J, FU J L, CHEN J X, et al. Improving the surface properties organic/inorganic composite structures[J]. Studies in Surface Science &
3+
of CeO 2 by dissolution of Ce to enhance the performance for Catalysis, 1997, 105: 3-28.
catalytic wet air oxidation of phenol[J]. Industrial & Engineering [49] MOHAMED A B, JOSÉ M C, MAGNUS O. Influence of synthesis
Chemistry Research, 2017, 56(32): 9090-9097. temperature on morphology of SBA-16 mesoporous materials with a
[41] ZHAO R, SHI X Y, MA T T, et al. Constructing mesoporous three-dimensional pore system[J].Microporous and Mesoporous
adsorption channels and MOF-polymer interfaces in electrospun Materials, 2010, 129(1/2): 106-111.