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第 7 期                          方   倩,等:  温度响应的酶催化核交联胶束                                  ·1333·


                 by horseradish peroxidase for metal adsorption studies[J]. Industrial   16(12): 3731-3739.
                 & Engineering Chemistry Research, 2009, 48(9): 4440-4444.     [23]  Kuo  S  W,  Huang  C  F,  Lu  C  H,  et al.  Syntheses  and  specific
            [15]  Kawakita H, Nakano S, Hamamoto K, et al. Copper-ion adsorption   interactions of poly(ɛ-caprolactone)-block-poly(vinyl phenol) copolymers
                 and  gold-ion  reduction  by  polyphenols  prepared  by  the  enzymatic   obtained via a combination of ring-opening and atom-transfer radical
                 reaction  of  horseradish  peroxidase[J].  Journal  of  Applied  Polymer   polymerizations[J].  Macromolecular  Chemistry  and  Physics,  2006,
                 Science, 2010, 118(1): 247-252.                   207(21): 2006-2016.
            [16]  Sakai S, Nakahata M. Horseradish peroxidase catalyzed hydrogelation   [24]  Khan  H,  Chen  S,  Zhou  H,  et al.  Synthesis  of  multicompartment
                 for  biomedical,  biopharmaceutical,  and  biofabrication  applications   nanoparticles  of  ABC  triblock  copolymers  through  intramolecular
                 [J]. Chemistry-An Asian Journal, 2017, 12(24): 3098-3109.     interactions  of  two  solvophilic  blocks[J].  Macromolecules,  2017,
            [17]  Lee  F,  Bae  K  H,  Kurisawa  M.  Injectable  hydrogel  systems   50(7): 2794-2802.
                 crosslinked  by  horseradish  peroxidase[J].  Biomedical  Materials,   [25]  Cauët  S  I,  Wooley  K  L.  Kinetic  investigation  of  the  RAFT
                 2015, 11(1): 014101.                              polymerization  of  p-acetoxystyrene[J].  Journal  of  Polymer  Science
            [18]  Kim  B  Y,  Park  K  M,  Joung  Y  K,  et al.  Preparation  and   Part A: Polymer Chemistry, 2010, 48(12): 2517-2524.
                 characterizations  of  in  situ  shell  cross-linked  4-arm-poly(propylene   [26]  Chen L, Peng Z, Zeng Z, et al. Hairy polymeric nanocapsules with
                 oxide)–poly(ethylene oxide) micelles via enzyme-mediated reaction   pH-responsive shell and thermoresponsive brushes: Tunable permeability
                 for controlled drug delivery[J]. Journal of Bioactive and Compatible   for controlled release of water-soluble drugs[J]. Journal of Polymer
                 Polymers, 2012, 27(3): 185-197.                   Science Part A: Polymer Chemistry, 2014, 52(15): 2202-2216.
            [19]  Zeng Z, She Y, Peng, Z, et al. Enzyme-mediated in situ formation of   [27]  Astafieva  I,  Zhong  X  F,  Eisenberg  A.  Critical  micellization
                 pH-sensitive nanogels for proteins delivery[J]. RSC Advances, 2016,   phenomena  in  block  polyelectrolyte  solutions[J].  Macromolecules,
                 6(10): 8032-8042.                                 1993, 26(26): 7339-7352.
            [20]  Cho  H,  Kim  J,  Patil  P,  et al.  Synthesis  of  succinylated  poly   [28]  Peng  Zhiping  (彭志平), Liu Xinxing  (刘新星),  Tong  Zhen  (童真).
                 (4-hydroxystyrene) and its application for negative-tone photoresist   Effect of hydrophobic blocks on the aggregate behavior of amphiphilic
                 [J]. Journal of Applied Polymer Science, 2007, 103(6): 3560-3566.     triblock copolymers in aqueous solution[J]. Acta Polymerica Sinica
            [21]  Štěpánek  M,  Hajduová  J,  Procházka  K,  et al.  Association  of   (高分子学报), 2009, (9): 936-941.
                 poly(4-hydroxystyrene)-block-poly(ethylene  oxide)  in  aqueous   [29]  Choi  B  C,  Choi  S,  Leckband  D  E.  Poly(N-isopropyl  acrylamide)
                 solutions: block copolymer nanoparticles with intermixed blocks[J].   brush topography: dependence on grafting conditions and temperature
                 Langmuir, 2011, 28(1): 307-313.                   [J]. Langmuir, 2013, 29(19): 5841-5850.
            [22]  Matuszewska A, Uchman M, Adamczyk-Woźniak A, et al. Glucose-   [30]  Wang  H,  Luo  W,  Chen  J.  Fabrication  and  characterization  of
                 responsive  hybrid  nanoassemblies  in  aqueous  solutions:  ordered   thermoresponsive Fe 3O 4@PNIPAM hybrid nanomaterials by surface-
                 phenylboronic acid within intermixed poly(4-hydroxystyrene)-block-   initiated  RAFT  polymerization[J].  Journal  of  Materials  Science,
                 poly(ethylene oxide) block copolymer[J]. Biomacromolecules, 2015,   2012, 47(16): 5918-5925.


            (上接第 1307 页)                                       [34]  Zhang W W, Li H J, Wang M R, et al. Halogen-substituted acridines

                                                                   as highly effective corrosion inhibitors for mild steel in acid medium [J].
            [29]  Madhankumar  A,  Rajendran  N.  A  promising  copolymer  of
                                                                   Journal of Physical Chemistry C, 2018, 122(44): 25349-25364.
                 p-phenylendiamine and o-aminophenol: Chemical and electrochemical   [35]  Allachi H, Chaouket F, Draoui K. Corrosion inhibition of AA6060
                 synthesis, characterization and its corrosion protection aspect on mild   aluminium alloy by lanthanide salts in chloride solution[J]. Journal of
                 steel[J]. Synthetic Metals, 2012, 162(1): 176-185.   Alloys and Compounds, 2009, 475(1/2): 300-303.
            [30]  Bhuyan  M,  Samanta  S,  Kar  P.  Selective  sensing  of  methanol  by   [36]  Aljourani  J,  Raeissi  K,  Golozar  M  A.  Benzimidazole  and  its
                 poly(m-aminophenol)/copper nanocomposite[J]. Electronic Materials   derivatives  as  corrosion  inhibitors  for  mild  steel  in  1M  HCl
                 Letters, 2018,14(2): 161-172.                     solution[J]. Corrosion Science, 2009, 51(8): 1836-1843.
            [31]  Song Zhe (宋哲), Zhang Jingkun (张婧坤), Li Xiaofei (李晓飞), et   [37]  Zhang  W  W,  Li  H  J,  Wang  Y  W, et  al.  Adsorption  and  corrosion
                 al. Preparation and characterization of polyaniline powder coating for   inhibition properties of pyridine-2-aldehyde-2-quinolylhydrazone for
                 anticorrosion[J]. New Chemical Material (化工新型材料), 2018(1):   Q235  steel  in  acid  medium:  Electrochemical,  thermodynamic,  and
                 89-92.                                            surface studies[J]. Materials and Corrosion, 2018, 69: 1638-1648.
            [32]  Zhang W W, Li H J, Wang Y W, et al. Gravimetric, electrochemical   [38]  Tang Y, Zhang F, Cao Z, et al. Novel benzimidazole derivatives as
                 and surface studies on the anticorrosive properties of 1-(2-pyridyl)-   corrosion  inhibitors  of  mild  steel  in  the  acidic  media.  Part  I:
                 2-thiourea and 2-(imidazol-2-yl)-pyridine for mild steel in hydrochloric   Gravimetric,  electrochemical,  SEM  and  XPS  studies[J].Corrosion
                 acid[J]. New Journal of Chemistry, 2018, 42: 12649-12665.   Science, 2013, 74: 271-282.
            [33]  Bentiss  F,  Lebrini  M,  Hervé  Vezin, et al.  Experimental  and   [39]  Zhang  W  W,  Ma  R,  Liu  H  H,  et al.  Electrochemical  and  surface
                 theoretical  study  of  3-pyridyl-substituted  1,2,4-thiadiazole  and   analysis  studies  of  2-(quinolin-2-yl)quinazolin-4(3H)-one  as
                 1,3,4-thiadiazole  as  corrosion  inhibitors  of  mild  steel  in  acidic   corrosion inhibitor for Q235 steel in hydrochloric acid[J]. Journal of
                 media[J]. Materials Chemistry & Physics, 2004, 87(1): 18-23.   Molecular Liquids, 2016, 222: 671-679.
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