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·2140· 精细化工 FINE CHEMICALS 第 39 卷
University of Science and Technology (陕西科技大学), 2020. calcium chloride aggravated fracturing fluid[D]. Beijing: China
[9] ZHANG Y (张悦). Research on high-density brine fracturing fluid University of Geosciences (Beijing) 〔中国地质大学(北京)〕, 2020.
[D]. Qingdao: China University of Petroleum (East China) 〔中国石 [16] LIU Y, LIU J, LI Y Z, et al. Development and field application of a
油大学(华东)〕, 2018. new ultralow guar gum concentration weighted fracturing fluid in
[10] ZENG Y J (曾义金), LIU J L (刘建立). Current situation and HPHT reservoirs[J]. Journal of Chemistry, 2020, 2020: 1-10.
development trend of deep and ultra-deep well drilling technology [17] DAI X L (戴秀兰), LIU T Y (刘通义), WEI J (魏俊), etal. Synthesis
[J]. Petroleum Drilling Technology (石油钻探技术), 2005,(5): 4-8. and properties of polymer thickeners for weighted fracturing fluids
[11] BAI Y (白杨). Study on performance control principle of deep well [J]. Drilling and Completion Fluids (钻井液与完井液), 2019, 36(6):
high temperature and high density water-based drilling fluid[D]. 766-770.
Chengdu: Southwest Petroleum University (西南石油大学), 2014. [18] CHEN S L (陈世兰), ZHOU S Y (周述勇), ZHANG P (张鹏), et
[12] JI B Y (计秉玉). Progress and prospect of enhanced oil recovery al. Preparation of temperature-resistant and salt-resistant acrylamide
technology in domestic and foreign oil fields[J]. Oil & Gas Geology polymer by inverse emulsion polymerization[J]. Applied Chemical
(石油与天然气地质), 2012, 33(1): 111-117. Industry (应用化工), 2017, 46(8): 1521-1525.
[13] YANG X J, MAO J C, ZHANG W L, et al. Tertiary cross-linked and [19] LOVELL P A, SCHORK F J. Fundamentals of emulsion polymerization
weighted fracturing fluid enables fracture stimulations in ultra high [J]. Biomacromolecules, 2020, 21(11): 4396-4441.
pressure and temperature reservoir[J]. Fuel, 2020, 268(C): [20] GAO J H, ZHANG G H, WANG L, et al. Rheological properties of
117222-117222. an ultra-high salt hydrophobic associated polymer as a fracturing
[14] WANG F H, TAN X C, WANG R H, et al. High temperature and high fluid system[J]. RSC Advances, 2019, 9(27): 15246–15256.
pressure rheological properties of high-density water-based drilling fluids [21] ZHAO H C (赵洪池), LI Q (李琦), WEI C Q (魏朝巧), et al.
for deep wells[J]. Petroleum Science, 2012, 9(3): 354-362. Synthesis and properties of polyacrylamide[J]. Synthetic Resins and
[15] MIAO J X (苗锦翔). Indoor experiment and performance study of Plastics (合成树脂及塑料), 2010, 27(6): 25-29.
(上接第 2050 页) preparation of a ladder polymer containing phenazine rings[J].
Journal of Electroanalytical Chemistry, 1987, 219(1/2): 117-124.
[12] SUN Y, ZHAO X, ZHU G Q, et al. Twisted ladder-like donor- [23] GUO X, ORTIZ R, ZHANG Y J. Thieno[3,4-c]pyrrole-4,
acceptor polymers as electrode materials for flexible electrochromic 6-dione-based polymer semiconductors: Toward high-performance,
supercapacitors[J]. Electrochimica Acta, 2020, 333: 135495. air-stable organic thin-film transistors[J]. Journal of American
[13] MUSLIM A (阿孜古丽·木尔赛力木), WUXUR Y (亚合亚·吾守 Chemical Society, 2011, 133: 13685-13697.
尔), SU Z (粟智). Effect of initiator dosage on structure and [24] WONG Y T, LIN P C, TSENG C W. Biaxially-extended side-chain
properties of polybenzidine[J]. Fine Chemicals (精细化工), 2011, engineering of benzodithiophene-based conjugated polymers and
28(10): 954-958. their applications in polymer solar cells [J]. Organic Electronics,
[14] ZHAO Z, MUSLIM A, ABDUNAZAR A, et al. The morphologic 2020, 79: 105630.
controlled biphenylamine submicrorod was prepared by using poly [25] TSAI J H, TU W R, LIU C L, et al. Synthesis and properties of new
(ethylene oxide-b-polystyrene) as template and its electrochemical small band gap conjugated polymers: Methine bridged poly(3,4-
properties[J]. Journal of Macromolecular Science Part A-Pure and ethylenedioxypyrrole)[J]. Polymer Journal, 2009, 41(5): 363-369.
Applied Chemistry, 2017, 54: 727-734. [26] BHANVADIA V, MACHHI H. Design and development of
[15] MUSLIM A (阿孜古丽·木尔赛力木), AWUT T (吐尼莎古丽·阿 dithienopyrrolobenzothiadiazole (DTPBT)-based rigid conjugated
吾提), JAMAL R (如仙古丽·加玛力), et al. Polybenzidine and its polymers with improved hole mobilities[J]. Polymer, 2020, 211:
derivatives were synthesized by interfacial polymerization[J]. Journal 123089.
of Xinjiang University (National Science Edition) (新疆大学学报: [27] QI Z J (祁争健), WEI B (韦斌), WANG X M (王雪梅). Synthesis
自然科学版), 2005, 22(4): 383-388. and optical and electrochemical properties of D-A-D type organic
[16] KAYKHA Y, RAFIZADEH M. A template for the synthesis of conjugated molecules based on 3,4-dialkoxy thiophene[J]. Acta
fibrillary polyaniline complexes using a degradable polyelectrolyte[J]. Physico-Chimica Sinica (物理化学学报), 2010, 26(12): 3310-3316.
Materials Chemistry and Physics, 2019, 229: 98-105. [28] XIE Z Y (谢子益), SHAN T (单通), WEI Q Y (卫青云). Post
[17] GHARAHCHESHMEH M H, GLAEASON K K. Texture and nano modification and photoelectric properties of polythiophene[J].
structural engineering of conjugated conducting and semiconducting Journal of Functional Polymers (功能高分子学报), 2021, 34(5):
polymers[J]. Materials Today Advances, 2020, 81: 00086. 425-433.
[18] ZHAO X H (赵祥华), LI X S (黎小胜), SHI N N (史南南). Design, [29] LU T T (陆婷婷), CHANG S J (常驷驹), LIU Y Y (刘园园). Design,
synthesis, characterization and photoelectric properties of a steric synthesis and properties of trapezoidal indene fluorenyl red green
functionalized aniline intermediate of 9-phenylfluorene[J]. blue polymer laser gain material[J]. Acta Polymerica Sinica (高分子
Spectroscopy and Spectral Analysis (光谱学与光谱分析), 2016, 学报), 2018, 2: 304-314.
36(4): 1085-1089. [30] WANG L (王琳), ZHANG Y H (张艳慧), MUSLIM A (阿孜古
[19] WANG X C (王学川), WANG L H (王利红), ZHANG S X (张思 丽·木 尔赛 力木 ). The morphology, size and electrochemical
肖), et al. Preparation and properties of wood adhesive crosslinked properties of polyaniline were induced by PS-b-P2VP as template[J].
by polyurethane modified industrial gelatin[J]. Polymeric Materials Chemical Journal of Chinese Universities (高等学校化学学报),
Science and Engineering (高分子材料科学与工程), 2020, 36(2): 2019, 140(8): 1748-1756.
20-26. [31] KAJRIZ P K, HEIDARI A A, EHSANI A, et al. Superior rate
[20] YAN M (颜梅), CHEN X (陈欣), TAN Y X (谭永霞). Study on capability and cyclic stability of polyorthoaminophenol nanocomposite
spectral properties of conjugated polymers containing alkynyl film in the presence of benzidine functionalized graphene oxide[J].
organosilicon[J]. Spectroscopy and Spectral Analysis (光谱学与光谱 Journal of the Chinese Chemical Society, 2021, 68(9): 1789-1798.
分析), 2009, 29(6): 1665-1667. [32] SHOWN I, GANGULY A, CHEN L C, et al. Conducting polymer-
[21] ZHANG G R (张贵荣), ZHANG A J (张爱健), WANG H (王欢). based flexible supercapacitor[J]. Energy Science & Engineering,
Study on electropolymerization of aniline by in situ UV-Vis 2015, 3(1): 2-26.
spectroelectrochemistry[J]. Acta Polymerica Sinica (高分子学报), [33] LI Y L, ZHENG Y Y. Preparation and electrochemical properties of
2001, 1: 41-47. polyaniline/reduced graphene oxide composites[J]. Journal of
[22] CHIBA K, OHSAKA T, OHUNUKI Y, et al. Electrochemical Applied Polymer Science, 2018, 135(16): 46103.