Page 164 - 《精细化工》2021年第1期
P. 164
·154· 精细化工 FINE CHEMICALS 第 38 卷
[3] SHA C H, LU B, MAO H Y, et al. 3D ternary nanocomposites of in preparation methods and applications of polyaniline composites
molybdenum disulfide/polyaniline/reduced graphene oxide aerogel [J]. Chemistry Bulletin (化学通报), 2016, 8(79): 707-711.
for high performance supercapacitor[J]. Carbon, 2016, 99: 26-34. [14] SHAN Y (单毅). Surface modification of UF membrane by polyaniline
[4] SENGUPTA P, GLORIA J, PARKER M, et al. A polyaniline-based nanofiber[D]. Tianjin: Tianjin University (天津大学), 2008.
sensor of nucleic acids[J]. Journal of Visualized Experiments, 2016, [15] TANG L Q (汤龙其), ZHANG G L (张国亮), WANG S H (王士华),
117: e54590. et al. Preparation of low resistivity polypyrrole-carbon fiber
[5] LIU T Q (刘天晴), LIANG Y P (梁燕萍), BAI X X (白晓霞), et al. paper-based composites[J]. Fine Chemicals ( 精细 化工 ), 2019,
Photoelectrocatalytic performance of polyaniline modified activated 36(11): 2292-2295.
carbonarticle electrode[J]. Fine Chemicals (精细化工), 2019, 36(1): [16] Beijing General Administration of Quality Supervision, Inspection
142-148. and Quarantine of the People's Republic of China. Peper and board-
[6] TALO A, PASSINIEMI P, FORSEN O, et al. Polyaniline epoxy determination of tensile properties (Constant rate loading methods):
coatings with good anti-corrosion properties[J]. Synth Met, 1997, GB/T 453—2002[S]. Beijing: China Standard Press (中国标准出版
8(5): 1333-1334. 社), 2003: 1-5.
[7] LI Y F (李玉峰), LI J Y (李继玉). LI H Y (李怀阳), et al. [17] Beijing General Administration of Quality Supervision, Inspection
Preparation and corrosion resistance of sulfonated polyaniline/ and Quarantine of the People's Republic of China. Peper and
silicone resin coatings[J]. Fine Chemicals (精细化工), 2019, 36(6): boarddetermination of tearingresistance: GB/T 455—2002[S].
1049-1055. Beijing: China Standard Press (中国标准出版社), 2003: 1-4.
[8] SATHIYANARAYANAN S, MUTHUKRISHNAN S, VENKATACHARI [18] ZHAO Y Y (赵云琰), ZHANG Z M (张志明), YU L M (于良民), et
G, et al. Corrosion protection steel by polyaniline (PANI) pigmented al. Anticorrosion properties of conducting chitosan-graft-polyaniline
paint coating[J]. Progress in Organic Coatings, 2006, 53(4): 297-301. coatings[J]. Polymer Materials Science and Engineering (高分子材
[9] SAINI P, ARORA M, GUPTAN G, et al. High permittivity polyaniline- 料科学与工程), 2019, 4(35): 69-71.
barium titanatenanocomposites with excellent electromagnetic [19] HONG J H ( 洪剑寒 ). Preparation and properties research of
interference shielding response[J]. Nanoscale, 2013, 5 (10), 4330- conductive UHMWPE/PANI composite fibers[D]. Zhenjiang:
4336. Jiangsu University (江苏大学), 2014.
[10] KE G Z (柯贵珍), CHOWDHURY M, ZHANG M Z (张明卓), et al. [20] ZHOU Y (周洋). Improvement of flame retardancy of polyaniline
Preparation and conductive property of polyaniline composited and polypyrrole deposited conductive phytic acid doping[D]. Harbin:
cotton fabric[J]. Cotton Textile Technology (棉纺织技术), 2019, Northeast Forestry University (东北林业大学), 2014.
4(47): 14-17. [21] ZHANG Y (张悦), WANG G J (汪广进), PAN M (潘牧). Fast
[11] YU J (俞俭), PANG Z Y (逄增媛), WEI Q F (魏取福). Conductivity electro-polymerization of polyaniline nanofibers on carbon paper[J].
of wool fabrics finished by polyaniline[J]. Journal of Materials Chemical Journal of Chinese Universities (高等学校化学学报),
Science & Engineering (材料科学与工程学报), 2018, 36(3): 336-339. 2014, 35(10): 2234-2238.
[12] VANIAS D. Polyaniline-CuO hybrid nanocomposite with enhance [22] WANG K L (王开丽). Conductivity and mechanical properties of
electrical conductivity[J].Journal of Molecular Structure, 2018, 1153: polyaniline modified 3-dimensional carbon-based conductive filler/
20-27. epoxy resin composite[D]. Tianjin: Tianjin Polytechnic University
[13] WANG X Y (王心怡), YANG X G (杨小刚), LI B (李斌). Progress (天津工业大学), 2018.
(上接第 117 页) using palladium catalysts[J]. Journal of Molecular Catalysis A: Chemical,
2005, 239: 215-221.
参考文献: [11] BERGADÀ O, SALAGRE P, CESTEROS Y, et al. Control of the
basicity in Ni-MgO systems: Influence in the hydrogenation of
[1] BERGADÀO, SALAGRE P, CESTEROS Y, et al. High-selective styrene oxide[J]. Catalysis Letters, 2008, 122: 259-266.
Ni-MgO catalysts for a clean obtention of 2-phenylethanol[J]. Applied [12] KIKUCHI R, MIZUKAMI F, NIWA S I, et al. Hydrogenation of
Catalysis A General, 2004, 272: 125-132. ethyl phenylacetate to 2-phenylethanol by ruthenium/tin/alumina
[2] ISHII K, MIZUKAMI F, SHU I N, et al. Selective hydrogenation of catalysts elimination of need for high temperature activation of the
ethyl phenylacetate to 2-phenylethanol: A convenient catalyst preparation catalysts with hydrogen; optimum oxidation state of tin[J]. Applied
method[J]. Catalysis Letters, 1994, 30: 297-304. Catalysis A General, 1997, 165: 309-317.
[3] KANOJIYA S K, SHUKLA G, SHARMA S, et al. Hydrogenation of [13] POONDI D, VANNICE M A. The influence of MSI (metal-support
styrene oxide to 2-phenylethanol over nanocrystalline Ni prepared by interactions) on phenylacetaldehyde hydrogenation over Pt catalysts[J].
ethylene glycol reductionmethod[J]. International Journal of Chemical Journal of Molecular Catalysis A:Chemical, 1997, 124: 79-89.
Engineering, 2014: 406939. [14] LYU S J (吕绍洁), QIU F L (邱发礼). The preparation of β-phenylethanol
[4] SASUA, DRAGOI B, UNGUREANUA, et al. Selective conversion by catalytic hydregenation of styrene oxide[J]. Chinese Journal of
of styrene oxide to 2-phenylethanol in cascade reactions over non-noble Synthetic Chemistry (合成化学), 2001, 9(5): 445-448.
metal catalysts[J]. Catalysis Science & Technology, 2016, 6: 468-478. [15] MITSUI S, IMAIZUI S, HISASHIGE M, et al. The deoxygenation in
[5] SHI Y H (石英华). Synthesis and purification of -phenylethanol the catalytic hyrogenolysis of styrene oxides[J]. Tetrahedron, 1973,
from ethylene oxide[J]. Anhui Chemical Industry(安徽化工), 1994, 29: 4093-4097.
20(4): 11-14. [16] HIROSHI F, SHINICHI S, EIICHI M, et al. Catalytic hydrogenation
[6] ZHU H J (朱红军), WANG J T (王锦堂). Study on isomerization of of styene oxied with cationic rhodium complexes[J]. Journal of
styrene oxide to phenylacetaldehyde[J]. Journal of Nanjing Tech Organic Chem, 1981, 46:2287-2290.
University: Natural Science Edition (南京工业大学学报: 自科版), [17] CHEN M (陈梅), LI G F (李国峰), SUN Y D (孙昱东). Preparation
2000, 22(3): 55-57. of Pt-Sn/γ-Al 2O 3 catalyst by impregnation method and its catalytic
[7] ZACCHERIA F, PSARO R, RAVASIO N, et al. Mono and performance[J]. Industrial Catalysis (工业催化), 2020, 28(1): 32-35.
bifunctional catalysts for styrene oxide isomerization or hydrogenation[J]. [18] LEVYP J, PRIMETM. States of hydrogen adsorption on platinum-
Catalysis Letters, 2011, 141: 587-591. alumina and platinum-ceria catalysts: A temperature-programmed
[8] DABBAWALA A A, SUDHEESH N, BAJAJ H C. Palladium desorption study[J]. Applied Catalysis, 1991, 70: 263-276.
supported on chitosan as a recyclable and selective catalyst for the [19] MILLER J T, MEYERS B L, BARR M K, et al. Hydrogen
synthesis of 2-phenyl ethanol[J]. Dalton Trans, 2012, 41: 2910-2917. temperature-programmed desorption in platinum catalysts:
[9] KIRM I, MEDINA F, SUEIRAS J E, et al. Hydrogenation of styrene Decomposition and isotopic exchange by spillover hydrogen of
oxide in the presence of supported platinum catalysts to produce chemisorbed ammonia[J]. Journal of Catalysis, 1996, 159(1): 41-49.
2-phenylethanol[J]. Journal of Molecular Catalysis A: Chemical, [20] FONTAINE M, DEMONCEAUA A, MESSEREA R, et al. Selective
2007, 261: 98-103. reductive dimerization of phenylacetaldehyde to 2,4-diphenylbutanal
[10] KIRM I, MEDINA F, RODRÍGUEZ X, et al. Preparation of catalysed by novel dirhodium complexes[J]. Journal of Molecular
2-phenylethanol by catalytic selective hydrogenation of styrene oxide Catalysis A: Chemical, 1995, 96: 107-110.