Page 195 - 《精细化工》2021年第12期
P. 195
第 12 期 何 洋,等: NIT-Ph-p-BEN 氮氧自由基的制备及其催化降解性能 ·2557·
899(1): 28-43. new Ln( Ⅲ )-nitronyl nitroxide radical molecular magnetic
[17] QIN X Y, DING G R, WANG X W, et al. Synthesis, characterisation, materials[D]. Shijiazhuang:Hebei Normal University (河北师范大
cytotoxicity and radioprotective effect of novel chiral nitronyl 学), 2019.
nitroxyl radicals[J]. Journal of Chemical Research, 2009, 2009(8): [26] RODRÍGUEZ-CABO B, RODRÍGUEZ-PALMEIRO I, CORCHERO
511-514. R, et al. Photocatalytic degradation of methyl orange, methylene blue
[18] GOLUBEVV A, ROZANTSEV É G, NEIMANM B. Some reactions and rhodamine B with AgCl nanocatalyst synthesised from its bulk
of free iminoxyl radicals with the participation of the unpaired material in the ionic liquid [P 6 6 6 14]Cl[J]. Water Science and
electron[J].Russian Chemical Bulletin, 1965, 14(11): 1898-1904. Technology, 2017, 75(1): 128-140.
[19] MEI T (梅涛), LI J W (李建微), LI X M (李晓梅). Research [27] YU J X, CHI R A, HE Z Y, et al. Combination of biosorption and
progress of selective oxidation of alcohols catalyzed by nitroxyl photodegradation to remove methyl orange from aqueous solutions[J].
radical catalyst system[J]. Yunnan Chemical Technology (云南化工), Engineering in Life Sciences, 2011, 11(3): 309-315.
2019, 46(3): 1-8. [28] PETER A, MIHALY-COZMUTA A, NICULA C, et al. UV light-
[20] SUN T T, LIANG H Z, LIU S J, et al. Magnetic nanoparticles assisted degradation of methyl orange, methylene blue, phenol,
modified by polyamidoamine-immobilized TEMPO for catalytic salicylic acid, and rhodamine B: Photolysis versus photocatalyis[J].
oxidation of monomethoxy poly(ethylene glycol)[J]. Journal of Water Air & Soil Pollution, 2017, 228(1): 1-12.
Nanoparticle Research, 2020, 22(6): 1-11. [29] KHODEIR M, ERNOUID B, BRASSINNE J, et al. Synthesis and
[21] JIA L (贾璐). TEMPO catalyzed oxidation of C—H bonds and the characterisation of redox hydrogels based on stable nitroxide
investigations of related mechanism[D].Hangzhou: Zhejiang University radicals[J]. Soft Matter, 2019, 15(31): 6418-6426.
(浙江大学), 2015. [30] SHI T Y, ZHAO D Q, WANG H B, et al. A new chiral pyrrolyl
[22] XUE S S (薛姗姗), QIN X Y (秦向阳), SUN X L (孙晓亮), et al. α-nitronylnitroxide radical attenuates β-amyloid deposition and
Study on synthesis and scavenging activity of DPPH free radical by rescues memory deficits in a mouse model of alzheimer disease[J].
imidazole nitronyl nitroxide radicals[J]. Progress in Modern Neurotherapeutics, 2013, 10(2): 340-353.
Biomedicine (现代生物医学进展), 2016, 16(14): 2612-2617. [31] SEMMELHACK M F, CHOU C S, CORTES D A. Nitroxyl-
[23] SCHATZSCHNEIDER U, RENTSCHLER E. Electronic and mediated electrooxidation of alcohols to aldehydes and ketones[J].
conformational influences on the spin density distribution in Journal of the American Chemical Society, 1983, 105(13): 4492-4494.
substituted tert-butyl phenyl nitroxides[J]. Journal of Molecular [32] SHAKIR A J, MADALAN A M, IONITA G, et al. A comparison
Structure: Theochem, 2003, 638(1/2/3): 163-168. between nitroxide and hydrazyl free radicals in selective alcohols
[24] LIANG J (梁晶), LI X L (李晓丽), QIN X Y (秦向阳), et al. oxidation[J]. Chemical Physics, 2017, 490: 7-11.
Research progress of biological activities of nitroxide radical [33] MAO H L (毛会玲), WANG C (王晨), YAN M (晏秘), et al.
compounds[J]. Chemical Reagents (化学试剂), 2020, 42(12): 1430- TEMPO radical functionalized conjugated microporous polymer as
1437. an efficient catalyst for alcohol oxidation[J]. Fine Chemicals (精细化
[25] ZHANG Z (张震). Synthesis, structure and magnetic properties of 工), 2020, 37(5): 976-981.
(上接第 2551 页) [14] WYNBERG H. The mechanism of the Reimer-Tiemann reaction[J].
[4] LIAO Z F (廖正芳), ZHANG W (张伟), MENG X Q (孟小琪), et al. Journal of the American Chemical Society, 1954, 76: 4998-4999.
Preparation of sprayable superhydrophobic materials based on tannic [15] CAI L, LIU X S, WANG J, et al. Enantioselective and regioselective
acid[J]. Fine Chemicals (精细化工), 2020, 37(5): 893-897, 918. aza-Friedel-Crafts reaction of electron-rich phenols with isatin-derived
[5] GAO J (高晶), LI J (李靖), LIAO X P (廖学品), et al. Combination ketimines[J]. Chemical Communications, 2020, 56(71): 10361-10364.
tannage of vegetable tannin extract and epoxy resin[J]. China Leather [16] GUO L X, QIANG T T, MA Y M, et al. Purification and characterization
(中国皮革), 2012, 41(3): 8-12. of hydrolysable tannins extracted from Coriaria nepalensis bark using
[6] SHI B (石碧), DI Y (狄莹). Plant polyphenol[M]. Beijing: Science macroporous resin and their application in gallic acid production[J].
Press (科学出版社), 2000. Industrial Crops & Products, 2021, 162: 113302.
[7] CHEN W Y (陈武勇), WANG Y H (王应红), CHAN J P (陈继平). [17] GRAJDA M, WIERZBICKI M, CMOCH P, et al. Inherently chiral
Preparation and application of chrome-valonia tannin retanning iminoresorcinarenes through regioselective unidirectional
agent[J]. China Leather (中国皮革), 2005, 34(17): 20-22, 29. tautomerization[J]. The Journal of Organic Chemistry, 2013, 78(22):
[8] TAMBI L, FREDIANI P, FREDIANI M, et al. Hide tanning with 11597-11601.
modified natural tannins[J]. Journal of Applied Polymer Science, [18] YU J G, CHANG P R, MA X F. The preparation and properties of
2008, 108(3): 1797-1809. dialdehyde starch and thermoplastic dialdehyde starch[J]. Carbohydrate
[9] GE H W, LIU G Q, YIN R H, et al. An aldimine condensation reaction Polymers, 2010, 79(2): 296-300.
based fluorescence enhancement probe for detection of gaseous [19] GRIMBLAT N, SAROTTI A M, KAUFMAN T S, et al. A theoretical
formaldehyde[J]. Microchemical Journal, 2020, 156: 104793. study of the Duff reaction: Insights into its selectivity[J]. Organic &
[10] JU X C, SUN S T, ZHANG Q, et al. Efficient and mild reductive Biomolecular Chemistry, 2016, 14(44): 10496-10501.
amination of carbonyl compounds catalyzed by dual-function palladium [20] KAUR N, KISHORE D. An insight into hexamethylenetetramine: A
nanoparticles[J]. ACS Sustainable Chemistry & Engineering, 2020, versatile reagent in organic synthesis[J]. Journal of the Iranian
8(3): 1618-1626. Chemical Society, 2013, 10(6): 1193-1228.
[11] WANTULOK J, SZALA M, QUINTO A, et al. Synthesis, [21] GUO L X, QIANG T T, MA Y M, et al. Optimisation of tannin extraction
electrochemical and spectroscopic characterization of selected from Coriaria nepalensis bark as a renewable resource for use in
quinolinecarbaldehydes and their Schiff base derivatives[J]. tanning[J]. Industrial Crops & Products, 2020, 149: 112360.
Molecules, 2020, 25(9): 2053. [22] YU Q Y (俞秋燕), ZHANG T (张涛), WANG J J (王家俊).
[12] KUMAR S, LEE H Y, LIOU J P. Total synthesis of two glycosylated Construction and properties of UV-shielding and transparent coatings
stilbenes, oxyresveratrol 2-O-β-D-glucopyranoside and 2,3,5,4′- on poly(lactic acid) films[J]. Packaging Engineering (包装工程),
tetrahydroxystilbene 2-O-β-D-glucopyranoside[J]. Journal of Natural 2018, 39(13): 15-20.
Products, 2017, 80(5): 1294-1301. [23] LUO J X, FENG Y J, SHAN Z H. Complex combination tannage with
[13] KUMAR A S, NAGARAJAN R. Synthesis of α-carbolines via Pd- phosphonium compounds, vegetable tannins and aluminum tanning
catalyzed amidation and Vilsmeier-Haack reaction of 3-acetyl-2- agent[J]. Journal of the Society of Leather Technologists and Chemists,
chloroindoles[J]. Organic Letters, 2011, 13(6): 1398-1401. 2011, 95(5): 215-220.