核酸酶驱动DNA步行器的构建及在食品安全检测中的应用

邓碧桃 徐斐 曹慧 袁敏 于劲松 阴凤琴 吴秀秀 叶泰

引用本文: 邓碧桃, 徐斐, 曹慧, 袁敏, 于劲松, 阴凤琴, 吴秀秀, 叶泰. 核酸酶驱动DNA步行器的构建及在食品安全检测中的应用[J]. 分析化学, 2023, 51(6): 911-921. doi: 10.19756/j.issn.0253-3820.221589 shu
Citation:  DENG Bi-Tao,  XU Fei,  CAO Hui,  YUAN Min,  YU Jin-Song,  YIN Feng-Qin,  WU Xiu-Xiu,  YE Tai. Construction of Nuclease-Powered DNA Walker and Its Application in Food Safety[J]. Chinese Journal of Analytical Chemistry, 2023, 51(6): 911-921. doi: 10.19756/j.issn.0253-3820.221589 shu

核酸酶驱动DNA步行器的构建及在食品安全检测中的应用

    通讯作者: 叶泰,E-mail:taiye@usst.edu.cn
  • 基金项目:

    国家自然科学基金项目(No.32172303)和上海市青年科技启明星计划项目(No.22QA1406500)资助。

摘要: 对食品中污染物的快速、高灵敏检测是预防食品安全事件发生的重要手段。DNA步行器(DNA walker)是一种在结构与功能上具有可编程性的动态纳米机器,其在自由能驱动下沿着预设轨道界面产生持续性机械位移。核酸酶驱动DNA步行器具有优异的信号放大能力和反应动力学,将其与核酸适配体相结合构建的生物传感器已被广泛应用于食品安全快速检测中。本文综述了核酸酶驱动的DNA步行器的构建及其在食品安全检测中的应用进展,并对其发展前景进行了展望。

English


    1. [1]

      DAWADI S, THAPA R, MODI B, BHANDARI S, TIMILSINA A P, YADAV R P, ARYAL B, GAUTAM S, SHARMA P, THAPA B B, ARYAL N, ARYAL S, REGMI B P, PARAJULI N. Processes, 2021, 9(9):1500.DAWADI S, THAPA R, MODI B, BHANDARI S, TIMILSINA A P, YADAV R P, ARYAL B, GAUTAM S, SHARMA P, THAPA B B, ARYAL N, ARYAL S, REGMI B P, PARAJULI N. Processes, 2021, 9(9):1500.

    2. [2]

      GLINKA M, WOJNOWSKI W, WASIK A. TrAC, Trends Anal. Chem., 2020, 131:116034.GLINKA M, WOJNOWSKI W, WASIK A. TrAC, Trends Anal. Chem., 2020, 131:116034.

    3. [3]

      LIU R B, ZHANG F Y, SANG Y X, KATOUZIAN I, JAFARI S M, WANG X H, LI W J, WANG J N, MOHAMMADI Z. Trends Food Sci. Technol., 2022, 123:355-375.LIU R B, ZHANG F Y, SANG Y X, KATOUZIAN I, JAFARI S M, WANG X H, LI W J, WANG J N, MOHAMMADI Z. Trends Food Sci. Technol., 2022, 123:355-375.

    4. [4]

      YU H, ALKHAMIS O, CANOURA J, LIU Y, XIAO Y. Angew. Chem. Int. Ed., 2021, 60(31):16800-16823.YU H, ALKHAMIS O, CANOURA J, LIU Y, XIAO Y. Angew. Chem. Int. Ed., 2021, 60(31):16800-16823.

    5. [5]

      XIA X H, YANG H, CAO J J, ZHANG J Q, HE Q, DENG R J. TrAC, Trends Anal. Chem., 2022, 153:116641.XIA X H, YANG H, CAO J J, ZHANG J Q, HE Q, DENG R J. TrAC, Trends Anal. Chem., 2022, 153:116641.

    6. [6]

      YAN M, BAI W, ZHU C, HUANG Y, YAN J, CHEN A. Biosens. Bioelectron., 2016, 77:613-623.YAN M, BAI W, ZHU C, HUANG Y, YAN J, CHEN A. Biosens. Bioelectron., 2016, 77:613-623.

    7. [7]

      MUNZAR J D, NG A, JUNCKER D. Chem. Soc. Rev., 2019, 48(5):1390-1419.MUNZAR J D, NG A, JUNCKER D. Chem. Soc. Rev., 2019, 48(5):1390-1419.

    8. [8]

      PAN J, LI F, CHA T G, CHEN H, CHOI J H. Curr. Opin. Biotechnol., 2015, 34:56-64.PAN J, LI F, CHA T G, CHEN H, CHOI J H. Curr. Opin. Biotechnol., 2015, 34:56-64.

    9. [9]

      BATH J, GREEN S J, TURBERFIELD A J. Angew. Chem. Int. Ed., 2005, 44(28):4358-4361.BATH J, GREEN S J, TURBERFIELD A J. Angew. Chem. Int. Ed., 2005, 44(28):4358-4361.

    10. [10]

      SHERMAN W B, SEEMAN N C. Nano Lett., 2004, 4(7):1203-1207.SHERMAN W B, SEEMAN N C. Nano Lett., 2004, 4(7):1203-1207.

    11. [11]

      CHEN Y, MENG X, LU H, DONG H. Anal. Chim. Acta, 2022, 1209:339339.CHEN Y, MENG X, LU H, DONG H. Anal. Chim. Acta, 2022, 1209:339339.

    12. [12]

      YE T, LU J Q, YUAN M, CAO H, YIN F Q, WU X X, HAO L L, XU F. Sens. Actuators, B, 2021, 340:129939.YE T, LU J Q, YUAN M, CAO H, YIN F Q, WU X X, HAO L L, XU F. Sens. Actuators, B, 2021, 340:129939.

    13. [13]

      LU Jia-Qi, YE Tai, XU Fei, CAO Hui, YUAN Min, YU Jin-Song, YIN Feng-Qin, WU Xiu-Xiu. Chin. J. Anal. Chem., 2021, 49(2):226-236. 陆伽颀, 叶泰, 徐斐, 曹慧, 袁敏, 于劲松, 阴凤琴, 吴秀秀, 分析化学, 2021, 49(2):226-236.

    14. [14]

      CUI Y, WANG H, LIU S, WANG Y, HUANG J. Analyst, 2020, 145(2):445-452.CUI Y, WANG H, LIU S, WANG Y, HUANG J. Analyst, 2020, 145(2):445-452.

    15. [15]

      LI Z Y, LI D Y, HUANG L, HU R, YANG T, YANG Y H. Anal. Chim. Acta, 2022, 1214:339964.LI Z Y, LI D Y, HUANG L, HU R, YANG T, YANG Y H. Anal. Chim. Acta, 2022, 1214:339964.

    16. [16]

      YI Y, HAN Y, CHENG X, ZHANG Z, SUN Y, ZHANG K, XU J J. Anal. Chem., 2022, 94(49):17205-17211.YI Y, HAN Y, CHENG X, ZHANG Z, SUN Y, ZHANG K, XU J J. Anal. Chem., 2022, 94(49):17205-17211.

    17. [17]

      CHEN J, LUO Z W, SUN C J, HUANG Z J, ZHOU C, YIN S, DUAN Y X, LI Y X. TrAC, Trends Anal. Chem., 2019, 120:115626.CHEN J, LUO Z W, SUN C J, HUANG Z J, ZHOU C, YIN S, DUAN Y X, LI Y X. TrAC, Trends Anal. Chem., 2019, 120:115626.

    18. [18]

      SKUGOR M, VALERO J, MURAYAMA K, CENTOLA M, ASANUMA H, FAMULOK M. Angew. Chem. Int. Ed., 2019, 58(21):6948-6951.SKUGOR M, VALERO J, MURAYAMA K, CENTOLA M, ASANUMA H, FAMULOK M. Angew. Chem. Int. Ed., 2019, 58(21):6948-6951.

    19. [19]

      LI Y, LUO Z, ZHANG C, SUN R, ZHOU C, SUN C. TrAC, Trends Anal. Chem., 2021, 134:116142.LI Y, LUO Z, ZHANG C, SUN R, ZHOU C, SUN C. TrAC, Trends Anal. Chem., 2021, 134:116142.

    20. [20]

      SONG L, ZHUGE Y, ZUO X, LI M, WANG F. Adv. Sci. (Weinh), 2022, 9(18):e2200327.SONG L, ZHUGE Y, ZUO X, LI M, WANG F. Adv. Sci. (Weinh), 2022, 9(18):e2200327.

    21. [21]

      XU M, TANG D. Anal. Chim. Acta, 2021, 1171:338523.XU M, TANG D. Anal. Chim. Acta, 2021, 1171:338523.

    22. [22]

      YANG P, ZHOU R, KONG C, FAN L, DONG C, CHEN J, HOU X, LI F. ACS Nano, 2021, 15(10):16870-16877.YANG P, ZHOU R, KONG C, FAN L, DONG C, CHEN J, HOU X, LI F. ACS Nano, 2021, 15(10):16870-16877.

    23. [23]

      LI D, LUO Z, AN H, YANG E, WU M, HUANG Z, DUAN Y. Talanta, 2020, 217:121056.LI D, LUO Z, AN H, YANG E, WU M, HUANG Z, DUAN Y. Talanta, 2020, 217:121056.

    24. [24]

      QU X, ZHU D, YAO G, SU S, CHAO J, LIU H, ZUO X, WANG L, SHI J, WANG L, HUANG W, PEI H, FAN C. Angew. Chem. Int. Ed., 2017, 56(7):1855-1858.QU X, ZHU D, YAO G, SU S, CHAO J, LIU H, ZUO X, WANG L, SHI J, WANG L, HUANG W, PEI H, FAN C. Angew. Chem. Int. Ed., 2017, 56(7):1855-1858.

    25. [25]

      HSIAO J C, BURYSKA T, KIM E, HOWES P D, DEMELLO A J. Nanoscale, 2021, 13(9):4956-4970.HSIAO J C, BURYSKA T, KIM E, HOWES P D, DEMELLO A J. Nanoscale, 2021, 13(9):4956-4970.

    26. [26]

      WANG Y, HU N, LIU C, NIE C, HE M, ZHANG J, YU Q, ZHAO C, CHEN T, CHU X. Nanoscale, 2020, 12(3):1673-1679.WANG Y, HU N, LIU C, NIE C, HE M, ZHANG J, YU Q, ZHAO C, CHEN T, CHU X. Nanoscale, 2020, 12(3):1673-1679.

    27. [27]

      HUANG J, ZHU L, JU H, LEI J. Anal. Chem., 2019, 91(11):6981-6985.HUANG J, ZHU L, JU H, LEI J. Anal. Chem., 2019, 91(11):6981-6985.

    28. [28]

      WANG C, LIU R, HU J, LV Y. Chem. Eur. J., 2019, 25(53):12270-12274.WANG C, LIU R, HU J, LV Y. Chem. Eur. J., 2019, 25(53):12270-12274.

    29. [29]

      YANG X, TANG Y, MASON S D, CHEN J, LI F. ACS Nano, 2016, 10(2):2324-2330.YANG X, TANG Y, MASON S D, CHEN J, LI F. ACS Nano, 2016, 10(2):2324-2330.

    30. [30]

      CHENG X, BAO Y, LIANG S, LI B, LIU Y, WU H, MA X, CHU Y, SHAO Y, MENG Q, ZHOU G, SONG Q, ZOU B. Anal. Chem., 2021, 93(27):9593-9601.CHENG X, BAO Y, LIANG S, LI B, LIU Y, WU H, MA X, CHU Y, SHAO Y, MENG Q, ZHOU G, SONG Q, ZOU B. Anal. Chem., 2021, 93(27):9593-9601.

    31. [31]

      JI Y, ZHANG L, ZHU L, LEI J, WU J, JU H. Biosens. Bioelectron., 2017, 96:201-205.JI Y, ZHANG L, ZHU L, LEI J, WU J, JU H. Biosens. Bioelectron., 2017, 96:201-205.

    32. [32]

      YANG P, LI Y, MASON S D, CHEN F, CHEN J, ZHOU R, LIU J, HOU X, LI F. Anal. Chem., 2020, 92(4):3220-3227.YANG P, LI Y, MASON S D, CHEN F, CHEN J, ZHOU R, LIU J, HOU X, LI F. Anal. Chem., 2020, 92(4):3220-3227.

    33. [33]

      YANG L, FANG J, LI J, OU X, ZHANG L, WANG Y, WENG Z, XIE G. Anal. Chim. Acta, 2021, 1143:157-165.YANG L, FANG J, LI J, OU X, ZHANG L, WANG Y, WENG Z, XIE G. Anal. Chim. Acta, 2021, 1143:157-165.

    34. [34]

      MASON S D, WANG G A, YANG P, LI Y, LI F. ACS Nano, 2019, 13(7):8106-8113.MASON S D, WANG G A, YANG P, LI Y, LI F. ACS Nano, 2019, 13(7):8106-8113.

    35. [35]

      WEI Y P, CHEN J S, LIU X P, MAO C J, JIN B K. ACS Appl. Mater. Interfaces, 2022, 14(20):23726-23733.WEI Y P, CHEN J S, LIU X P, MAO C J, JIN B K. ACS Appl. Mater. Interfaces, 2022, 14(20):23726-23733.

    36. [36]

      LV H, CHEN A, CHENG W, KONG L, ZHAO M, DING S, JU H, CHENG W. Anal. Chem., 2020, 92(23):15624-15631.LV H, CHEN A, CHENG W, KONG L, ZHAO M, DING S, JU H, CHENG W. Anal. Chem., 2020, 92(23):15624-15631.

    37. [37]

      ZHANG J, YANG H, LIU W, WEN H, HE F. Anal. Chim. Acta, 2022, 1190:339266.ZHANG J, YANG H, LIU W, WEN H, HE F. Anal. Chim. Acta, 2022, 1190:339266.

    38. [38]

      WANG L, ZENG H, YANG X, CHEN C, OU S. Microchim. Acta, 2021, 188(6):214.WANG L, ZENG H, YANG X, CHEN C, OU S. Microchim. Acta, 2021, 188(6):214.

    39. [39]

      MIAO P, TANG Y. Chem. Commun., 2020, 56(37):4982-4985.MIAO P, TANG Y. Chem. Commun., 2020, 56(37):4982-4985.

    40. [40]

      YEHL K, MUGLER A, VIVEK S, LIU Y, ZHANG Y, FAN M, WEEKS E R, SALAITA K. Nat. Nanotechnol., 2016, 11(2):184-190.YEHL K, MUGLER A, VIVEK S, LIU Y, ZHANG Y, FAN M, WEEKS E R, SALAITA K. Nat. Nanotechnol., 2016, 11(2):184-190.

    41. [41]

      BAZRAFSHAN A, KYRIAZI M E, HOLT B A, DENG W, PIRANEJ S, SU H, HU Y, EL-SAGHEER A H, BROWN T, KWONG G A, KANARAS A G, SALAITA K. ACS Nano, 2021, 15(5):8427-8438.BAZRAFSHAN A, KYRIAZI M E, HOLT B A, DENG W, PIRANEJ S, SU H, HU Y, EL-SAGHEER A H, BROWN T, KWONG G A, KANARAS A G, SALAITA K. ACS Nano, 2021, 15(5):8427-8438.

    42. [42]

      WU N, WANG K, WANG Y T, CHEN M L, CHEN X W, YANG T, WANG J H. Anal. Chem., 2020, 92(16):11111-11118.WU N, WANG K, WANG Y T, CHEN M L, CHEN X W, YANG T, WANG J H. Anal. Chem., 2020, 92(16):11111-11118.

    43. [43]

      ZHANG R F, WANG Y, QU X N, LI S S, ZHAO Y H, LIU S, HUANG J D. Sens. Actuators, B, 2019, 297:126771.ZHANG R F, WANG Y, QU X N, LI S S, ZHAO Y H, LIU S, HUANG J D. Sens. Actuators, B, 2019, 297:126771.

    44. [44]

      YE T, ZHANG Z, YUAN M, CAO H, YIN F, WU X, XU F. J. Agric. Food Chem., 2020, 68(9):2826-2831.YE T, ZHANG Z, YUAN M, CAO H, YIN F, WU X, XU F. J. Agric. Food Chem., 2020, 68(9):2826-2831.

    45. [45]

      JIN L, QIAO J, CHEN J, XU N, WU M. Talanta, 2020, 208:120404.JIN L, QIAO J, CHEN J, XU N, WU M. Talanta, 2020, 208:120404.

    46. [46]

      JIANG L, QU X, SUN W, ZHANG M, WANG Y, WANG Y, ZHAO Y, ZHANG F, LENG Y, LIU S, YU J, HUANG J. Analyst, 2021, 146(17):5413-5420.JIANG L, QU X, SUN W, ZHANG M, WANG Y, WANG Y, ZHAO Y, ZHANG F, LENG Y, LIU S, YU J, HUANG J. Analyst, 2021, 146(17):5413-5420.

    47. [47]

      QU X, WANG J, ZHANG R, ZHAO Y, LI S, WANG Y, LIU S, HUANG J, YU J. Microchim. Acta, 2020, 187(3):193.QU X, WANG J, ZHANG R, ZHAO Y, LI S, WANG Y, LIU S, HUANG J, YU J. Microchim. Acta, 2020, 187(3):193.

    48. [48]

      WANG X, XUAN T, HUANG W, LI X, LAI G. Anal. Chim. Acta, 2022, 1208:339835.WANG X, XUAN T, HUANG W, LI X, LAI G. Anal. Chim. Acta, 2022, 1208:339835.

    49. [49]

      YE T, ZHANG Z, LU J, YUAN M, CAO H, YIN F, WU X, XU F. Nanoscale, 2020, 12(40):20883-20889.YE T, ZHANG Z, LU J, YUAN M, CAO H, YIN F, WU X, XU F. Nanoscale, 2020, 12(40):20883-20889.

    50. [50]

      JIANG C M, LAN L Y, YAO Y, ZHAO F N, PING J F. TrAC, Trends Anal. Chem., 2018, 102:236-249.JIANG C M, LAN L Y, YAO Y, ZHAO F N, PING J F. TrAC, Trends Anal. Chem., 2018, 102:236-249.

    51. [51]

      WEI M, WANG C, XU E, CHEN J, XU X, WEI W, LIU S. Food Chem., 2019, 282:141-146.WEI M, WANG C, XU E, CHEN J, XU X, WEI W, LIU S. Food Chem., 2019, 282:141-146.

    52. [52]

      WANG Y, SONG W, ZHAO H, MA X, YANG S, QIAO X, SHENG Q, YUE T. Biosens. Bioelectron., 2021, 182:113171.WANG Y, SONG W, ZHAO H, MA X, YANG S, QIAO X, SHENG Q, YUE T. Biosens. Bioelectron., 2021, 182:113171.

    53. [53]

      WANG K, HE B S, XIE L L, LI L P, YANG J P, LIU R L, WEI M, JIN H L, REN W J. Sens. Actuators, B, 2021, 349:130767.WANG K, HE B S, XIE L L, LI L P, YANG J P, LIU R L, WEI M, JIN H L, REN W J. Sens. Actuators, B, 2021, 349:130767.

    54. [54]

      WANG Q, ZHAO F, YANG Q, WU W. Sens. Actuators, B, 2021, 345:130387.WANG Q, ZHAO F, YANG Q, WU W. Sens. Actuators, B, 2021, 345:130387.

    55. [55]

      ZHONG X, YANG S S, LIAO N, YUAN R, ZHUO Y. Anal. Chem., 2021, 93(12):5301-5308.ZHONG X, YANG S S, LIAO N, YUAN R, ZHUO Y. Anal. Chem., 2021, 93(12):5301-5308.

    56. [56]

      TAGHDISI S M, DANESH N M, RAMEZANI M, EMRANI A S, ABNOUS K. ACS Appl. Mater. Interfaces, 2018, 10(15):12504-12509.TAGHDISI S M, DANESH N M, RAMEZANI M, EMRANI A S, ABNOUS K. ACS Appl. Mater. Interfaces, 2018, 10(15):12504-12509.

    57. [57]

      ZHANG H, YAO S, SHENG R, WANG J, LI H, FU Y, LI J, ZHANG X, ZHAO C. J. Colloid Interface Sci., 2022, 625:257- 263.ZHANG H, YAO S, SHENG R, WANG J, LI H, FU Y, LI J, ZHANG X, ZHAO C. J. Colloid Interface Sci., 2022, 625:257- 263.

    58. [58]

      YANG H, XIAO M, LAI W, WAN Y, LI L, PEI H. Anal. Chem., 2020, 92(7):4990-4995.YANG H, XIAO M, LAI W, WAN Y, LI L, PEI H. Anal. Chem., 2020, 92(7):4990-4995.

    59. [59]

      YAO G, PEI H, LI J, ZHAO Y, ZHU D, ZHANG Y, LIN Y, HUANG Q, FAN C. NPG Asia Mater., 2015, 7(1):e159.YAO G, PEI H, LI J, ZHAO Y, ZHU D, ZHANG Y, LIN Y, HUANG Q, FAN C. NPG Asia Mater., 2015, 7(1):e159.

    60. [60]

      LI D, YANG E, LUO Z, XIE Q, DUAN Y. Nanoscale, 2021, 13(4):2492-2501.LI D, YANG E, LUO Z, XIE Q, DUAN Y. Nanoscale, 2021, 13(4):2492-2501.

    61. [61]

      YANG E, LI D, YIN P, XIE Q, LI Y, LIN Q, DUAN Y. Biosens. Bioelectron., 2021, 172:112758.YANG E, LI D, YIN P, XIE Q, LI Y, LIN Q, DUAN Y. Biosens. Bioelectron., 2021, 172:112758.

    62. [62]

      WEI W, LIN H, HAO T, WANG S, HU Y, GUO Z, LUO X. Biosens. Bioelectron., 2021, 186:113305.WEI W, LIN H, HAO T, WANG S, HU Y, GUO Z, LUO X. Biosens. Bioelectron., 2021, 186:113305.

    63. [63]

      ZHAO Y W, WANG Y, YANG R M, ZHANG H, ZHAO Y F, MIAO X M, LU L H. Sens. Actuators, B, 2021, 343:130172.ZHAO Y W, WANG Y, YANG R M, ZHANG H, ZHAO Y F, MIAO X M, LU L H. Sens. Actuators, B, 2021, 343:130172.

    64. [64]

      ZHANG B, TIAN P, ZHU H, XIE L, DAI P, HE B. J. Hazard. Mater., 2021, 416:125831.ZHANG B, TIAN P, ZHU H, XIE L, DAI P, HE B. J. Hazard. Mater., 2021, 416:125831.

    65. [65]

      ZHANG Y Q, YAN X S, LIU D Z, JIE G F. Sens. Actuators, B, 2022, 362:131740.ZHANG Y Q, YAN X S, LIU D Z, JIE G F. Sens. Actuators, B, 2022, 362:131740.

    66. [66]

      ZHAO Q, LU Q, YU Q W, FENG Y Q. J. Agric. Food Chem., 2013, 61(22):5397-5403.ZHAO Q, LU Q, YU Q W, FENG Y Q. J. Agric. Food Chem., 2013, 61(22):5397-5403.

    67. [67]

      ZHANG S, LIU X, QIN J', YANG M, ZHAO H, WANG Y, GUO W, MA Z, KONG W. J. Chromatogr. B, 2017, 1068-1069:233-238.ZHANG S, LIU X, QIN J', YANG M, ZHAO H, WANG Y, GUO W, MA Z, KONG W. J. Chromatogr. B, 2017, 1068-1069:233-238.

    68. [68]

      PORTOLES T, SALES C, ABALOS M, SAULO J, ABAD E. Anal. Chim. Acta, 2016, 937:96-105.PORTOLES T, SALES C, ABALOS M, SAULO J, ABAD E. Anal. Chim. Acta, 2016, 937:96-105.

    69. [69]

      CHENG R, LIU S, SHI H, ZHAO G. J. Hazard. Mater., 2018, 341:373-380.CHENG R, LIU S, SHI H, ZHAO G. J. Hazard. Mater., 2018, 341:373-380.

    70. [70]

      CHEN M, KUTSANEDZIE F Y H, CHENG W, LI H, CHEN Q. Microchem. J., 2019, 144:296-302.CHEN M, KUTSANEDZIE F Y H, CHENG W, LI H, CHEN Q. Microchem. J., 2019, 144:296-302.

    71. [71]

      LI M, HE B, YAN H, XIE L, CAO X, JIN H, WEI M, REN W, SUO Z, XU Y. Anal. Chim. Acta, 2022, 1232:340470.LI M, HE B, YAN H, XIE L, CAO X, JIN H, WEI M, REN W, SUO Z, XU Y. Anal. Chim. Acta, 2022, 1232:340470.

  • 加载中
计量
  • PDF下载量:  24
  • 文章访问数:  901
  • HTML全文浏览量:  116
文章相关
  • 收稿日期:  2022-11-30
  • 修回日期:  2023-03-04
通讯作者: 陈斌, bchen63@163.com
  • 1. 

    沈阳化工大学材料科学与工程学院 沈阳 110142

  1. 本站搜索
  2. 百度学术搜索
  3. 万方数据库搜索
  4. CNKI搜索

/

返回文章