Page 175 - 《精细化工》2021年第11期
P. 175

第 11 期                黄   煜,等: HZSM-5 固载离子液体催化合成烷基糖苷及其动力学                               ·2321·


                 583-586.                                          of Technology (武汉理工大学), 2018.
            [32]  ZHANG X L (张晓玲),  JIN C Y  (金春英), LIN  J Q  (林金清).   [39]  KOKOTAILO G T, LAWTON S L, OLSON D H, et al. Structure of
                 Transesterification  of glycerol trioleate to biodiesel catalyzed by   synthetic zeolite ZSM-5[J]. Nature, 1978, 272: 437-438.
                 p-toluenesulfonic acid quaternary ammonium ionic liquids[J].   [40]  LI H P (李和平),ZHANG S F (张淑芬),YANG J Z (杨锦宗).
                 Journal of Chemical Engineering of Chinese Universities(高校化学  Kinetic model and formulation properties of alkyl polyglucoside[J].
                 工程学报), 2013, 27(5): 865-871.                      Fine Chemicals (精细化工), 2003, 20(1): 22-25.
            [33]  YANG  Y L, WANG X H,  KOU Y. Determination of  the Lewis   [41]  ZHANG Y (张宇),JIA Y M (贾艳梅). The production and
                 acidity of ionic liquids by  means of an IR spectroscopic probe[J].   application of green surfactant alkyl polyglycoside[J]. Fine and
                 Chemical Communications, 2004, 10: 226-227.       Specialty Chemicals(精细与专用化学品), 2010, 18(6): 1-4.
            [34]  KANG C L (康承琳), ZHOU Z H (周震寰), FENG X B (冯小兵),   [42]  TAO  L X ( 陶龙骧 ). C — H activation of methane dehydro-
                 et al. Effect of ZSM-5 acidity on xylene isomerization reaction[J].   aromatization and  Mo/zeolite catalyst  performance under  nonoxidative
                 Petroleum Processing and Petrochemicals (石油炼制与化工), 2013,   conditions[J]. Acta Petrolei Sinica(Petroleum Processing Section) (石
                 44(12):35-40.                                     油学报:  石油加工), 2005, 26(5): 806-811.
            [35]  GAN P  X (甘攀学), ZHANG  T (张涛), TANG S  W (唐盛伟).   [43]  ZHANG H H (张海红), ZHANG R (张然), LI X Y (李晓元), et al.
                 Synthesis of ethyl  acetate  catalyzed by MCM-36 molecular sieve   Synthesis of glycol polyglucoside and its  kinetics[J]. China
                 functionalized with acidic ionic liquids[J]. Petrochemical Technology   Surfactant Detergent & Cosmetics (日用化学品工业), 2015, 45(11):
                 (石油化工), 2016, 45(10): 1172-1179.                  601-605.
            [36]  WANG H Q (王红琴), WANG Y M (王亚明), JIANG L H (蒋丽  [44]  LAN R H (蓝仁华), WU M H (伍明华), YANG Z R (杨卓如), et al.
                 红). Preparation and catalytic properties of [Rh(COD)Cl 2] catalysts   Study on the reaction mechanism and kinetics of two-step synthesis
                 supported on activated carbon[J]. Fine Chemicals (精细化工), 2018,   of alkyl polyglycosides[J]. Journal of Chemical  Engineering of
                 35(2): 246-254.                                   Chinese Universities (高校化学工程学报), 2001, 15(3): 248-253.
            [37] YAO  G  (姚菓).  Catalytic oxidation of cyclohexane over heptyl   [45]  WANG Z L (王正烈), ZHOU Y P (周亚平), LI S L (李松林), et al.
                 imidazolium ionic1iquid functionalized M/HZSM-5 catalyst[D].   Physical chemistry[M]. Beijing: Higher Education Press (高等教育
                 Guangzhou: Guangdong University of Technology (广东工业大学),   出版社), 2001.
                 2015.                                         [46]  HU Y (胡英), LIU G J (刘国杰), HEI E C (黑恩成), et al. Physical
            [38]  PENG Z (彭钊).  Design synthesis and catalytic  applications  of   Chemistry[M]. Beijing: Higher Education Press (高等教育出版社),
                 hierarchically porous ZSM-5 materials[D]. Wuhan: Wuhan University   2007.


            (上接第 2251 页)                                       [10]  WANG  C Y, XIA  K L, WANG H  M,  et al. Advanced carbon for
                                                                   flexible and wearable electronics[J]. Advanced Materials, 2019,
            参考文献:                                                  31(9): 1801072.
                                                               [11]  JIA  Y G, CHEN  C, JIA D,  et al. Silver nanowire transparent
                                                                   conductive films with high uniformity fabricated  via  a dynamic
            [1]   ZHANG G R (张国睿), NIU W B (牛文斌), WANG Y P (王云朋),   heating method[J]. ACS Applied Materials & Interfaces, 2016, 8(15):
                 et al. Photoelectric double response sensor based on dodecyl glyceride   9865-9871.
                 itaconate[J]. Fine Chemicals (精细化工), 2020, 37(8): 1594-1600.     [12]  HE W W, YE C H. Flexible transparent conductive films on the basis
            [2]   GUO R Y (郭茹月), BAO Y (鲍艳). Research progress on wearable   of Ag nanowires: Design and applications: A review[J]. Journal of
                 piezoresistive strain sensors based on two-dimensional conductive   Materials Science & Technology, 2015, 31(6): 581-588.
                 materials/flexible polymer  composites[J]. Fine Chemicals (精细化  [13]  ZHANG  X,  YAN X B, CHEN J T,  et al. Large-size graphene
                 工), 2021, 38(4): 650-661.                         microsheets as a protective layer for  transparent conductive silver
            [3]   CHOI S, HAN S I, JUNG D, et al. Highly conductive, stretchable   nanowire film heaters[J]. Carbon, 2014, 69: 437-443.
                 and biocompatible Ag-Au core-sheath nanowire composite for   [14]  XU  C,  WANG X. Fabrication of Flexible  metal-nanoparticte film
                 wearable and implantable bioelectronics[J]. Nature Nanotechnology,   using graphene oxide sheets as substrates[J]. Small, 2009, 5(19):
                 2018, 13(11): 1048-1056.                          2212-2217.
            [4]   GONG S, SCHWALB W, WANG Y W, et al. A wearable and highly   [15]  ZHAO X H, XU W,  YI W M,  et al.  A flexible and  highly
                 sensitive pressure sensor with ultrathin gold nanowires[J]. Nature   pressure-sensitive  PDMS sponge based on silver  nanoparticles
                 Communications, 2014, 5: 3132.                    decorated reduced graphene oxide composite[J]. Sensors and
            [5]   GEORGOPOULOU A, CLEMENS F. Piezoresistive elastomer-based   Actuators A-Physical, 2019, 291: 23-31.
                 composite strain sensors and their applications[J]. ACS Applied   [16]  ZHANG  L, KOU  H R, TAN Q L,  et al. High-performance strain
                 Electronic Materials, 2020, 2(7): 1826-1842.      sensor based on a 3D conductive structure for wearable electronics[J].
            [6]   JIANG Z, NAYEEM M O G, FUKUDA K, et al. Highly stretchable   Journal of Physics D-Applied Physics, 2019, 52(39): 395401.
                 metallic nanowire networks reinforced by the underlying randomly   [17]  ZHOU K K, ZHAO Y, SUN X P, et al. Ultra-stretchable triboelectric
                 distributed elastic polymer nanofibers  via interfacial adhesion   nanogenerator as high-sensitive and self-powered electronic skins for
                 Improvement[J]. Advanced Materials, 2019, 31(37): 1903446.   energy harvesting  and tactile sensing[J]. Nano Energy, 2020, 70:
            [7]   HE Y X, WU D Y, ZHOU M Y, et al. Wearable strain sensors based   104546.
                 on a porous polydimethylsiloxane hybrid with carbon nanotubes and   [18]  CHEN S, WEI Y, WEI S M, et al. Ultrasensitive cracking-assisted
                 graphene[J]. ACS  Applied Materials & Interfaces, 2021, 13(13):   strain sensors based on silver nanowires/graphene hybrid particles[J].
                 15572-15583.                                      ACS Applied Materials & Interfaces, 2016, 8(38): 25563-25570.
            [8]   MAURYA D, KHALEGHIAN S, SRIRAMDAS R, et al. 3D printed   [19]  ZHU  Y W, MURALI S, CAI W W,  et al. Graphene and graphene
                 graphene-based self-powered strain  sensors  for smart tires in   oxide: Synthesis, poperties, and applications[J]. Advanced Materials,
                 autonomous vehicles[J]. Nature Communications, 2020, 11(1): 5392.   2010, 22(46): 3906-3924.
            [9]   HE J, ZHANG Y F, ZHOU R H, et al. Recent advances of wearable   [20]  LEE P  C, MEISEL D. Adsorption and surface-enhanced raman of
                 and flexible piezoresistivity pressure sensor devices and its future   dyes on silver and gold sols[J]. Journal of Physical Chemistry, 1982,
                 prospects[J]. Journal of Materiomics, 2020, 6(1): 86-101.     86(17): 3391-3395.
   170   171   172   173   174   175   176   177   178   179   180