Page 120 - 《精细化工》2023年第9期
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·1968·                            精细化工   FINE CHEMICALS                                 第 40 卷

                 microwave frequencies[J]. Journal of Applied Physics, 1949, 20(4):   112551-112559.
                 352-362.                                      [18]  WANG  Y B, LIU Z, LI  D Y,  et al. The polymeric nanofilm of
            [2]   ZEE A, MASSEY R. Advantage of non-etching adhesion promoter   triazinedithiolsilane fabricated by self-assembled technique on
                 on high frequency signal loss[C]. 2010 5th International Microsystems   copper surface. Part 1:  Design route and corrosion resistance[J].
                 Packaging Assembly and Circuits Technology Conference, 2010: 1-4.   Corrosion Science, 2015, 98: 382-390.
            [3]   NOTHDURFT P, RIESS G, KERN W. Copper/epoxy joints in printed   [19]  DENAYER J, DELHALLE J, MEKHALIF Z. Aminealkylthiol and
                 circuit boards: Manufacturing and interfacial failure mechanisms[J].   dithiol self-assembly as adhesion promoter between copper substrate
                 Materials, 2019, 12(3): 550-568.                  and epoxy resin[J]. Applied Surface Science, 2011, 257(24):
            [4]   FATEH A, ALIOFKHAZRAEI M, REZVANIAN A  R.  Review of   10686-10691.
                 corrosive environments for copper and its corrosion inhibitors[J].   [20]  MIHAJLOVIC M B, RADOVANOVIC  M  B, TASIC Z  Z, et al.
                 Arabian Journal of Chemistry, 2020, 13(1): 481-544.   Imidazole based compounds as copper corrosion inhibitors  in
            [5]   GLADKIKH N, MAKARYCHEV Y,  CHIRKUNOV  A,  et al.   seawater[J]. Journal of Molecular Liquids, 2017, 225: 127-136.
                 Formation of polymer-like anticorrosive films based on   [21]  MASMOUDI  M, ABDELMOULEH M,  ABDELHEDI R.  Infrared
                 organosilanes with  benzotriazole, carboxylic and  phosphonic acids.   characterization and electrochemical study of methacryloxypropyl-
                 Protection of copper and steel  against atmospheric corrosion[J].   trimethoxysilane grafted in to surface  of copper[J]. Spectrochimica
                 Progress in Organic Coatings, 2020, 141: 1-10.    Acta Part A: Molecular and Biomolecular Spectroscopy, 2014, 118:
            [6]   KUZNETSOV Y I. Triazoles as a class of multifunctional corrosion   643-650.
                 inhibitors: A review. Part I. 1,2,3-Benzotriazole and its derivatives.   [22]  UETSUJI Y, YAGI T, NAKAMURA Y. Interfacial adhesive strength
                 Copper, zinc and their alloys[J]. International Journal of Corrosion   of a silane coupling agent with metals: A first principles study[J].
                 and Scale Inhibition, 2018, 7(3): 271-307.        Materials Today Communication, 2020, 25: 101397-101401.
            [7]   SHEVTSOV D,  KOZADEROV O, SHIKHALIEV  K,  et al.   [23]  WU L B  (吴连斌), CHEN Q (陈遒),  BIAN G F (边高峰),  et al.
                 3-Sulphinyl-5-amino-1H-1,2,4-triazoles as inhibitors of copper   Synthesis of poly  γ-(2-thiazole-ureido)propyltriethoxysilane metal
                 corrosion[J]. Applied Science, 2019, 9(22): 4882-4895.   complexes and its  magnetic properties[J]. Chemical Journal of
            [8]   XU T, ZHAO Y, ZHOU J,  et al. Composite nanocontainers   Chinese Universities (高等学校化学学报), 2010, 31(5): 1056-1059.
                 synthesized by  in-situ growth of metal organic frameworks on   [24]  GHOSH A, SCHIRALDI D  A. Improving  interfacial adhesion
                 layered double hydroxides having both passive and active protecting   between thermoplastic polyurethane and copper foil  using amino
                 capabilities[J]. Progress  in Organic Coatings, 2022, 164: 106695-   carboxylic acids[J]. Journal of Applied Polymer Science, 2009,
                 106703.                                           112(3): 1738-1744.
            [9]   LUO L, ZHANG S  T,  QIANG Y  J, et al. Improving  interfacial   [25]  BECCARIA  A  M, BERTOLOTTO C. Inhibitory action of
                 adhesion between copper foil and resin using amino acid in printed   3-trimethoxysilylpropanethiol-1 on copper corrosion in NaCl
                 circuit board industry[J]. Journal  of Adhesion Science  and   solutions[J]. Electrochimica Acta, 1997, 42(9): 1361-1371.
                 Technology, 2018, 32(13): 1452-1470.          [26]  PALANIVEL V,  ZHU D Q, OOIJ W J. Nanoparticle-filled silane
            [10]  WANG C, XIANG L, CHEN Y M, et al. Study on brown oxidation   films as chromate replacements for aluminum alloys[J]. Progress in
                 process with imidazole group, mercapto group and heterocyclic   Organic Coatings, 2003, 47(3/4): 384-392.
                 compounds in printed circuit board industry[J]. Journal of Adhesion   [27]  ZHANG C, DUAN H B, ZHAO J M. Synergistic inhibition effect of
                 Science and Technology, 2015, 29(12): 1178-1189.   imidazoline derivative and 1-cysteine on carbon steel corrosion in a
            [11]  WANG C, WEN N, ZHOU G Y, et al. Incorporation of tin on copper   CO 2-saturated  brine solution[J]. Corrosion Science, 2016, 112:
                 clad laminate to increase the interface adhesion for signal loss   160-169.
                 reduction of high-frequency  PCB  lamination[J]. Applied  Surface   [28]  LUO L, ZHANG S T,  QIANG Y  J,  et al. Study on 1-allyl-3-
                 Science, 2017, 422: 738-744.                      butylimidazalium bromine as corrosion inhibitor for X65 steel in
            [12]  ZHOU G Y, TAO Y P, HE W, et al. Whisker inhibited Sn-Bi alloy   0.5 M  H 2SO 4 solution[J]. International Journal of Electrochemical
                 coating on copper surface to increase copper bonding strength   Science, 2016, 11: 8177-8192.
                 forsignal loss reduction of PCB in high-frequency[J]. Applied   [29]  LIU L (刘雷), YANG J J (杨建军), WU Q  Y (吴庆云),  et al.
                 Surface Science, 2020, 513: 145718-145741.        Preparation of octadecylamine  modified nano SiO 2 and its
            [13]  CHEN Y M, GAO Y L, JIN X F, et al. Effect of surface finishing on   application in waterborne epoxy anticorrosive coatings[J]. Fine
                 signal transmission loss of microstrip copper lines for high-speed   Chemicals (精细化工), 2021, 38(6): 1271-1278.
                 PCB[J]. Journal of Materials Science: Materials in Electronics, 2019,   [30]  ARKLES B.  Tailoring surfaces with silanes[J]. Chemtech, 1977,
                 30: 16226-16233.                                  7(12): 766-778.
            [14]  FAN H Q, SHI D  D,  DING M M,  et al. Preparation of   [31]  JI X B (吉祥波), XIAN X B (鲜晓斌), TANG X C (唐贤臣), et al.
                 (3-mercaptopropyl)trimethoxylsilane film on brass and its corrosion   Influence of KH550 silane coupling agents on adhesive properties of
                 resistance in natural seawater[J]. Progress in Organic Coatings, 2020,   parylene C film to aluminum substrates[J]. Polymer  Materials
                 138: 105392-105400.                               Science and Engineering (高分子材料科学与工程), 2012, 28(3):
            [15]  ADHAMI S, ATAPOUR M,  ALLAFCHIAN  A R. Corrosion   57-59.
                 protection of copper by silane sol-gel coatings[J]. Journal of Sol-Gel   [32]  SAUBESTRE E B, DURNEY L J, HAJDU J, et al. The adhesion of
                 Science and Technology, 2015, 74: 800-809.        electrodeposits to plastics[J]. Plating, 1965, 52(10): 983-1000.
            [16]  WU  L K,  ZHANG J  T, HU J M,  et al. Improved corrosion   [33]  SYKES J M, HOAR T P. Role of polymer oxidation in the adhesion
                 performance of electrophoretic coatings by silane addition[J].   of polyethylene to metals[J]. Journal of Polymer Science Part A-1:
                 Corrosion Science, 2012, 56: 58-66.               Polymer Chemistry, 1969, 7(6): 1385-1391.
            [17]  BALAJI J, ROH S, EDISON T N, et al. Sol-gel based hybrid silane   [34]  SPAGGIARI  A, DRAGONI E. Effect of mechanical surface
                 coatings for enhanced  corrosion protection of copper in aqueous   treatment on the static strength of adhesive lap joints[J]. The Journal
                 sodium chloride[J]. Journal of Molecular Liquids, 2020, 302:   of Adhesion, 2013, 89(9): 677-696.
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