Chemical Research in Chinese Universities ›› 2026, Vol. 42 ›› Issue (1): 63-83.doi: 10.1007/s40242-026-5247-5
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WANG Siyu1, DAI Yutong2, ZHANG Jing2, TONG Yiling2, YANG Jingru2, LIU Songyao2, DAI Zhifeng2, MENG Xiangju3
Received:2025-10-13
Online:2026-02-01
Published:2026-01-28
Contact:
DAI Zhifeng,E-mail:daizhifeng1988@163.com;MENG Xiangju,E-mail:mengxj@zju.edu.cn
E-mail:daizhifeng1988@163.com;mengxj@zju.edu.cn
Supported by:WANG Siyu, DAI Yutong, ZHANG Jing, TONG Yiling, YANG Jingru, LIU Songyao, DAI Zhifeng, MENG Xiangju. Construction of Functional Metal-Organic Frameworks and Their Applications in the Biomedical Field[J]. Chemical Research in Chinese Universities, 2026, 42(1): 63-83.
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| [1] Eddaoudi M., Moler D. B., Li H., Chen B., Reineke T. M., O’Keeffe M., Yaghi O. M., Acc. Chem. Res., 2001, 34, 319. [2] Arakawa H., Aresta M., Armor J. N., Barteau M. A., Beckman E. J., Bell A. T., Bercaw J. E., Creutz C., Dinjus E., Dixon D. A., Domen K., DuBois D. L., Eckert J., Fujita E., Gibson D. H., Goddard W. A., Goodman D. W., Keller J., Kubas G. J., Kung H. H., Lyons J. E., Manzer L. E., Marks T. J., Morokuma K., Nicholas K. M., Periana R., Que L., Rostrup-Nielson J., Sachtler W. M. H., Schmidt L. D., Sen A., Somorjai G. A., Stair P. C., Stults B. R., Tumas W., Chem. Rev., 2001, 101, 953. [3] Li H., Eddaoudi M., O'Keeffe M., Yaghi O. M., Nature, 1999, 402, 276. [4] Islamoglu T., Goswami S., Li Z., Howarth A. J., Farha O. K., Hupp J. T., Acc. Chem. Res., 2017, 50, 805. [5] Wang J. L., Wang C., Lin W., ACS Catal., 2012, 2, 2630. [6] Li J.-R., Kuppler R. J., Zhou H.-C., Chem. Soc. Rev., 2009, 38, 1477. [7] Li H. Y., Zhao S. N., Zang S. Q., Li J., Chem. Soc. Rev., 2020, 49, 6364. [8] Wang, H.-S., Coord. Chem. Rev., 2017, 349, 139. [9] Cohen S. M., Chem. Rev., 2012, 112, 970. [10] Yang J., Yang Y. W., Small, 2020, 16, e1906846. [11] McKinlay A. C., Morris R. E., Horcajada P., Férey G., Gref R., Couvreur P., Serre C., Angew. Chem. Int. Ed., 2010, 49, 6260. [12] Bellido E., Hidalgo T., Lozano M. V., Guillevic M., Simón-Vázquez R., Santander Ortega M. J., González-Fernández Á., Serre C., Alonso M. J., Horcajada P., Adv. Healthc. Mater., 2015, 4, 1246. [13] Sohrabi H., Javanbakht S., Oroojalian F., Rouhani F., Shaabani A., Majidi M. R., Hashemzaei M., Hanifehpour Y., Mokhtarzadeh A., Morsali A., Chemosphere, 2021, 281, 130717. [14] Forgan, R. S., Dalton Trans., 2019, 48, 9037. [15] Sun W., Liu W., Wu Z., Chen H., Macromol. Rapid Commun., 2020, 41, e1900430. [16] Seoane B., Dikhtiarenko A., Mayoral A., Tellez C., Coronas J., Kapteijn F., Gascon J., CrystEngComm, 2015, 17, 1693. [17] Kolb H. C., Finn M. G., Sharpless K. B., Angew. Chem. Int. Ed., 2001, 40, 2004. [18] Islamoglu T., Goswami S., Li Z., Howarth A. J., Farha O. K., Hupp J. T., Acc. Chem. Res., 2017, 50, 805. [19] Schmitt S., Hümmer J., Kraus S., Welle A., Grosjean S., HankeRoos M., Rosenhahn A., Bräse S., Wöll C., Lee-Thedieck C., Tsotsalas M., Adv. Funct. Mater., 2016, 26, 8455. [20] Wang D., Zhou J., Chen R., Shi R., Xia G., Zhou S., Liu Z., Zhang N., Wang H., Guo Z., Chen Q., Biomaterials, 2016, 100, 27. [21] Yu S. S., Wan J. Q., Chen K. Z., Journal of Colloid and Interface Science, 2016, 461, 173. [22] Lang J. P., Xu Q. F., Yuan R. X., Abrahams B. F., Angew. Chem. Int. Ed., 2004, 43, 4741. [23] Zhang Q. Q., Wang Y., Braunstein P., Lang J. P., Chem. Soc. Rev., 2024, 53, 5227. [24] de Lima H. H. C., da Silva C. T. P., Kupfer V. L., Rinaldi J. de C., Kioshima E. S., Mandelli D., Guilherme M. R., Rinaldi A. W., Carbohydrate Polymers, 2021, 251, 116977. [25] Elias D., Hudson A. B., Zvart A., Ashlee J. H., Hélène S., J. Mater. Chem. C, 2024, 12, 8024. [26] Jayaramulu K., Geyer F., Schneemann A., Kment Š., Otyepka M., Zboril R., Vollmer D., Fischer R. A., Adv. Mater., 2019, 31, 1900820. [27] Das M. C., Xiang S., Zhang Z., Chen B., Angew. Chem. Int. Ed., 2011, 50, 10510. [28] Xu P., Wen C., Gao C., Liu H., Li Y., Guo X., Shen X. C., Liang H., ACS Nano, 2024, 18, 713. [29] Yang Y., Wang N., Yan F., Shi Z., Feng S., Acta Biomaterialia, 2024, 181, 67. [30] Alzahrani Y. A., Alessa A. M., Almosaind M. K., Alarifi R. S., Alromaeh A., r Alkahtani M., Nanomaterials, 2024, 14, 685. [31] Meng J., Liu X., Niu C., Pang Q., Li J., Liu F., Liu Z., Mai L., Chem. Soc. Rev., 2020, 49, 3142. [32] Huang X., Zheng B., Liu Z. D., Tan C. L., Liu J. Q., Chen B., Li H., Chen J. Z., Zhang X., Fan Z. X., Zhang W. N., Guo Z., Huo F. W., Yang Y. H., Xie L. H., Huang W., Zhang H., ACS Nano, 2014, 8, 8695. [33] Tang J., Salunkhe R. R., Liu J., Torad N. L., Imura M., Furukawa S., Yamauchi Y., J. Am. Chem. Soc., 2015, 137, 1572. [34] Lu G., Li S., Guo Z., Farha O. K., Hauser B. G., Qi X. Y., Wang Y., Wang X., Han S., Liu X., DuChene J. S., Zhang H., Zhang Q., Chen X., Ma J., Loo S. C., Wei W. D., Yang Y., Hupp J. T., Huo F., Nat. Chem., 2012, 4, 310. [35] Hu P., Zhuang J., Chou L. Y., Lee H. K., Ling X. Y., Chuang Y. C., Tsung C. K., Chem J. Am., Soc., 2014, 136, 10561. [36] Liu X. L., Xu Y. J., Wu Z. Q., Chen H., Macromol. Biosci. 2013, 13, 147. [37] An H., Li M., Gao J., Zhang Z., Ma S., Chen Y., Coord. Chem. Rev., 2019, 384, 90. [38] Liang K., Ricco R., Doherty C. M., Styles M. J., Bell S., Kirby N., Mudie S., Haylock D., Hill A. J., Doonan C. J., Falcaro P., Nat. Commun., 2015, 6, 7240. [39] Wang S. Z., Park S. S., Buru C. T., Lin H. X., Chen P. C., Roth E. W., Farha O. K., Mirkin C. A., Nat. Commun, 2020, 11, 2495. [40] Chen X., Zhuang Y., Rampal N., Hewitt R., Divitini G., Keefe C. A. Ó, Liu X., Whitaker D. J., Wills J. W., Jugdaohsingh R., Powell J. J., Yu H., Grey C. P., Scherman O. A., Fairen-Jimenez D., J. Am. Chem. Soc., 2021, 143, 13557. [41] Giménez-marqués M., Bellido E., Berthelot T., Simón-yarza T., Hidalgo T., Simón-vázquez R., González-fernández Á., Avila J., Asensio M. C., Gref R., Couvreur P., Serre C., Horcajada P., Small, 2018, 14, 1801900. [42] Abánades-Lázaro I., Haddad S., Sacca S., Orellana-Tavra C., Fairen-Jimenez D., Forgan R. S., Chem, 2017, 2, 561. [43] Bindra A. K., Wang D., Zhao Y., Adv. Mater., 2023, 35, 2300700. [44] Yuan Z., Zhang L., Li S., Zhang W., Lu M., Pan Y., Xie X., Huang L., Huang W., J. Am. Chem. Soc., 2018, 140, 15507. [45] Agostoni V., Horcajada P., Noiray M., Malanga M., Aykac A., Jicsinszky L., Vargas Berenguel A., Semiramoth N., Daoud Mahammed S., Nicolas V., Sci. Rep., 2015, 5, 7925. [46] Chen X., Argandona S. M., Melle F., Rampal N., Fairen J. D., Chem, 2024, 10, 504. [47] Pan M. R., Peng G., Hong W. C., Lin S. Y., J. Biol. Chem., 2011, 286, 28599. [48] Li X., Hua S., Zhong D., Zhou M., Ding Z., Biomaterials, 2025, 314, 122868. [49] Yuan S., Zou L., Qin J. S., Li J., Huang L., Feng L., Wang X., Bosch M., Alsalme A., Cagin T., Zhou H. C., Nat. Commun, 2017, 8, 15356. [50] Yang X., Qiao L., Dai W., Chin. J. Catal. 2015, 36, 1875. [51] Guan H. Y., LeBlanc R. J., Xie S. Y., Yue Y., Coord. Chem. Rev., 2018, 369, 76. [52] Tsotsalas M., Liu J., Tettmann B., Grosjean S., Shahnas A., Wang Z., Azucena C., Addicoat M., Heine T., Lahann J., Overhage J., Braese S., Gliemann H., Woell C., J. Am. Chem. Soc., 2014, 136, 8. [53] Begum S., Hassan Z., Bräse S., Woll C., Tsotsalas M., Acc. Chem. Res. 2019, 52, 1598. [54] Rauf M. A., Rao A., Sivasoorian S. S., Iyer A. K., Cells, 2025, 14, 1136. [55] Singh R., White J. F., Vries M. D., Beddome G., Dai M., Bean A. G., Mulet X., Layton D., Doherty C. M., Acta Biomaterialia, 2022, 142, 320. [56] Xia N., Li Y., He C., Deng D., Biosensors, 2024, 14, 597. [57] Shekhah O., Wang H., Paradinas M., Ocal C., Terfort A., Zacher D., Woll C., Nat. Mater., 2009, 8, 481. [58] Murali A., Lokhande G., Deo K. A., Brokesh A., Gaharwar A. K. Materials, 2021, 50, 276. [59] Velásquez-Hernández M. J., Linares-Moreau M., Astria E., Carraro F., Alyami M. Z., Khashab N. M., Sumby C. J., Doonan C. J., Falcaro P., Coord. Chem. Rev., 2021, 429, 213651. [60] Wang S., McGuirk C. M., Ross M. B., Wang S., Chen P., Xing H., Liu Y., Mirkin C. A., J. Am. Chem. Soc., 2017, 139, 9827. [61] Kahn J. S., Freage L., Enkin N., Garcia M. A. A., Willner I., Adv. Mater., 2017, 29, 1602782. [62] Jiang H., Xia W., Xia T., Jiang L., Yu J., Zhu X., Lin C., Lou C., Wang W., Chai Y., Wan R., Wang J., Xue X., Pan X., Acta Biomaterialia, 2024, 185, 410. [63] Khezri B., Pumera M., Adv. Mater., 2019, 31, 1806530. [64] Gao B., Wang X., Wang M., You K., Suleiman G. S. A., Ren X., Guo J., Xia S., Zhang W., Feng Y., ACS Nano, 2022, 16, 1395. [65] Wang Y., Chen J., Zhu M., Zhu Y., J. Inorg. Mater., 2021, 36, 1305. [66] Anderson S. L., Stylianou K. C., Coord. Chem. Rev., 2017, 349, 102. [67] Zhang Y., Zhang C., Qian W., Lei F., Chen Z., Wu X., Lin Y., Wang F., Biosens. Bioelectron., 2024, 263, 116593. [68] Zhang X., Li G., Wu D., Li X., Hu N., Chen J., Chen G., Wu Y., Biosens. Bioelectron., 2019, 137, 178. [69] He Y., Xu J., Sun X., Ren X., Maharjan A., York P., Su Y., Li H., Zhang J., Theranostics, 2019, 9, 2489. [70] Pyun J., McInnes L. E., Donnelly P. S., Mawal C., Bush A. I., Short J. L., Nicolazzo J. A., Journal of Neurochemistry, 2022, 162, 226. [71] Zeng J.-Y., Zhang M.-K., Peng M.-Y., Gong D., Zhang X.-Z., Adv. Funct. Mater., 2018, 28, 1705451. [72] Rojas S., Hidalgo T., Luo Z., Avila D., Laromaine A., Horcajada P., ACS Nano, 2022, 16, 5830. [73] Zhou W., Wang L., Li F., Zhang W., Huang W., Huo F., Xu H., Adv. Funct. Mater., 2017, 27, 1605465. [74] Zhou G. Z., Li M., Adv. Mater., 2022, 34, 2200871. [75] Lázaro I. A., Wells C. J. R., Forgan R. S., Angew. Chem. Int. Ed., 2020, 59, 5211. [76] Kim S. N., Park C. G., Huh B. K., Lee S. H., Min C. H., Lee Y. Y., Kim Y. K., Park K. H., Choy Y. B., Acta Biomaterialia, 2018, 79, 344. [77] Ricco R., Liang W., Li S., Gassensmith J. J., Caruso F., Doonan C., Falcaro P., ACS Nano, 2018, 12, 13. [78] Wu B., Fu J., Zhou Y., Luo S., Zhao Y., Quan G., Pan X., Wu C., Acta Pharm Sin B, 2020, 10, 2198. [79] Yu J., Li Q., Wei Z., Fan G. -L., Wan F., Tian L., Acta Biomaterialia, 2023, 170, 330. [80] Shipman S. L., Nivala J., Macklis J. D., Church G. M., Nature, 2017, 547, 345. [81] Peng S., Bie B. L., Sun Y. Z. S., Liu M., Cong H. J., Zhou W. T., Xia Y. C., Tang H., Deng H. X., Zhou X., Nat. Commun., 2018, 9, 1293. [82] Migasová A., Zauška L., Zelenka T., Volavka D., Férová M., Gulyásová T., Tomková S., Saláková M., Kuchárová V., Samuely T., Bednarěík J., Slabý C., Máěajová M, Bilěík B., Schubert T., Walter A., Hornebecq V., Huntošová V., Almáši M., Chemical Engineering Journal, 2025, 522, 167857. [83] Lazaro I. A., Haddad S., Sacca S., Tavra C. O., Jimenez D. F., Forgan R. S., Chem, 2017, 2, 561. [84] Wang Z. Y., Fu Y., Kang Z. Z., Liu X., Chen N., Wang Q., Tu Y. Q., Wang L. H., Song S, P., Ling D. H., Kong X. Q., Fan C., J. Am. Chem. Soc., 2017, 139, 15784. [85] Fu Y., Kang Z. Z., Cao W. C., Yin J. L., Tu Y. Q., Li J. H., Guan H. X., Wang Y. R., Wang Q., Kong X. Q., Angew. Chem. Int. Ed., 2021, 60, 7719 [86] Wang Z., Zhou X. M., Jing H., Gang X., Liu J. W., Analytica Chimica Acta, 2022, 1207, 339806. [87] Cherkasov V. R., Mochalova E. N., Babenyshev A. V., Rozenberg J. M., Sokolov I. L., Nikitin M. P., Acta Biomaterialia, 2020, 103, 223. [88] Teng W. S. Y., Zhang Z. J, Wang Y. X., Ye Y. X., Yinwang E., Liu A., Zhou X. Z., Xu J. X., Zhou C. W., Sun H. X., Wang F. Q., Zhang L. L., Cheng C. G., Lin P., Wu Y., Gou Z. R., Yu X. H., Ye Z. M., Small 2021, 17, 2102315. [89] Wang A., Walden M., Ettlinger R., Kiessling F., Gassensmith J. J., Lammers T., Wuttke S., Peña Q., Adv. Funct. Mater. 2024, 34, 2308589. [90] Li Q. Y., Deng Y. H., Cao C., Hong Y. X., Xue X. R., Zhang M. J., Ge Y., Brahams B. F., Lang J. P., Angew. Chem. Int. Ed., 2023, 62, e202306719. [91] Liu Y., Gong C. S., Dai Y. L., Yang Z., Yu G. C., Liu Y. J., Zhang M. R., Lin L. S., Tang W., Zhou Z. J., Zhu G. Z., Chen J. J., Jacobson O., Kiesewetter D. O., Wang Z. T., Chen X. Y., Biomaterials, 2019, 281, 119365. [92] Zhu Y. Y., Huang Y. Y., Yan T. H., Li Y. M., Li Y. M., Drake H. F., Zhong H. F., Jin Y. J., Zhao R., Zhou H. C., Adv. Healthcare Mater., 2022, 11, 2200004. [93] Pu Y. Y., Yin H. H., Dong C. H., Xiang H. J., Wu W. C., Zhou B. G., Du D., Chen Y., Xu H. X., Adv. Mater., 2021, 33, 2104641. [94] Huo Y. F., Tan X. Y., Dong X. Z., Liang X. Y., Liu K., Zhang H., Li Z. Q., Yang J. W., Pang Z. X., Yao Y. W., Yu A. X., Dai H. L., Adv. Mater., 2025, 37, 2413992. [95] Kang M. J., Cho Y. W., Kim T. H., Coord. Chem. Rev., 2025, 527, 216400. [96] Lin G., Zhang Y., Zhang L., Wang J. Q., Tian Y., Cai W., Tang S. G., Chu C. C., Zhou J. J., Mi P., Chen X. Y., Liu G., Nano Res., 2020, 13, 238. [97] Wang S. Z., Chen Y. J., Wang S. Y., Li P., Mirkin C. A., Farha O. K., J. Am. Chem. Soc., 2019, 141, 2215. [98] Zhang L., Liu C., Gao Y., Li Z., Xing J., Ren W., Zhang L., Li A., Lu G., Wu A., Zeng L., Adv. Healthcare Mater., 2018, 7, 1801144. [99] Gao P., Chen Y. Y., Pan W., Li N., Liu Z., Tang B., Angew. Chem. Int. Ed., 2021, 60, 16763. [100] Wang M., Wang Y. B., Zhang P. Q., Gu C. J., Zhao X. L., Gong X. H., Yang X. H., Pan J. W., Xi Y. M., Acta Biomaterialia, 2025, 196, 487. [101] Wang Y. B., Wu W. B., Liu J. J., Manghnani P. N., Hu F., Ma D., Teh C., Wang B., Liu B., ACS Nano, 2019, 13, 6879. [102] Xie M. M., Jiang C., Zhang C. R., Wu Y., Zhang X. L., Yao R. S., Han C., Dai Y., Xu K., Zheng S. H., Journal of Colloid and Interface Science, 2025, 685, 382. [103] Yang S. Z., Lü F. L., Wang L., Liu S., Wu Z. S., Cheng Y. Q., Liu F., Molecules, 2024, 29, 5330. [104] Tian Y., Wang B., Zhang Z. R., Kai T. H., Wu P., Ding P., RSC Advances, 2025, 15, 26710. [105] Cao M. X., Liu Z. W., Wang Z. Y., Ding X. K., Zhang K., Zhao N. N., Xu F. J., ACS Applied Materials Interfaces, 2025, 17, 53193. [106] Wang H. M., Chen Y. Q., Wang H., Liu X. Q., Zhou X., Wang F. A., Angew. Chem. Int. Ed. 2019, 58, 7380. [107] Wang D. D., He W. J., Liu J. W., Jana D., Wu Y. L., Zhang X. D., Qian C., Guo Y., Chen X. K., Bindra A. K., Zhao Y. L., Angew. Chem. Int. Ed. 2021, 60, 26254. [108] Bao W. E., Liu M., Meng J. Q., Liu S. Y., Wang S., Jia R. R., Wang Y. G., Ma G. H., Wei W., Tian Z. Y., Nat. Commun., 2021, 12, 6399. [109] Liu J. T., Huang J., Zhang L., Lei J. P., Chem. Soc. Rev. 2021, 50, 1188. [110] Wang Y. B., Xu S. D., Shi L. L., The C., Qi G. B., Liu B., Angew. Chem. Int. Ed. 2021, 60, 14945. [111] Liu Z., Yan Z. W., Di Y. F., Yang S. Q., Ning Y. Y., Mao Y. L., Gao Y. K., Zhao Q. F., Wang S. L., Coord. Chem. Rev., 2023, 497, 215434. [112] Wang Y. B., Wu W. B., Liu J. J., Manghnani P. N., Hu F., Ma D., Teh C., Wang B., Liu B., ACS Nano, 2019, 13, 6879. [113] Ke Q. M., Jiang K., Li H., Zhang L., Chen B. L., ACS Nano, 2024, 18, 21911. [114] Meng L., Ren N., Dong M. W., Zhang S. M., Wang A. Z., Zhuang Z., Wang J., Sun C. H., Liu H., Adv. Funct. Mater., 2024, 34, 2309974. [115] Wang W. W., Pan X. T., Yang H. L., Wang H., Wu Q. Y., Zheng L. R., Xu B. R., Wang J. H., Shi X. H., Bai F., Liu H. Y., ACS Nano, 2021, 15, 20003. [116] Lu Z., Zhang H., Wang Q., Toivakka M., Xu C., Wang X., Small, 2025, 21, 23. [117] Koo S., Park O. K., Kim J. K., Han S. I., Yoo T. Y., Lee N., Kim Y. G., Kim H., Lim C., Bae J. S., Yoo J., Kim D., Choi S. H., Hyeon T., ACS Nano, 2022,16, 2535. [118] Chen K. R., Zhou A. W., Zhou X. Y., He J. L., Xu Y. R., Ning X. H., Sci. Adv., 2024, 10, 3201. [119] Han D. L., Liu X. M., Wu S. L., Chem. Soc. Rev., 2022, 51, 7138. [120] Rojas S., Vivo A. A., Horcajada P., Coord. Chem. Rev., 2019, 388, 202. [121] Meng X. D., Sun S. R., Gong C. C., Yang J. Y., Yang Z., Zhang X. J., Dong H. F., ACS Nano, 2023, 17, 1174. [122] Duan F., Feng X. C., Yang X. J., Sun W. T., Jin Y., Liu H. F., Ge K., Li Z. H., Zhang J. C., Biomaterials, 2017, 122, 23. [123] Du T. Y., Qin Z. J., Zheng Y. K., Jiang H., Weizmann Y., Wang X. M., Chem, 2019, 5, 2942. [124] Li S. Y., Yu J. F., Shen Y. T., Xiong B., Zhao D., Xu W. C., Zhang S., Guan X., Liu Y. Y., Shan X. X., Zhu A. Q., Liu Q., Fang Y., Chen Z. T., Yin H. H., Sun L. P., Xu H. X., Nat. Commun., 2025, 16, 1499. [125] Ren X. Y., Han Y. X., Xu Y. Q., Liu T. G., Cui M. Y., Xia L. L., Li H. N., Gu Y. Q., Wang P., Coord. Chem. Rev., 2021, 431, 213676. [126] Kudarha R., Dhas N., Mutalik S., Coord. Chem. Rev., 2023, 494, 215330. [127] Zheng S. J., Yang M. F., Luo J. Q., Liu R., Song J., Chen Y., Du J. Z., ACS Nano, 2023, 17, 15905. [128] Melle F., Menon D., Conniot J., Paraiso J. O., Mercado S., Oliveira J., Chen X., Mendes B. B., Conde J., Jimenez D. F., Adv. Mater., 2025, 37, 2412757. [129] He Y. P., Li D. F., Wu L., Yin X. Z., Zhang X. J., Patterson L. H., Zhang J. W., Adv. Funct. Mater., 2023, 33, 2212277. [130] Hao L. W., Jiang R. J., Gao J., Xu J. N., Tian L. M., Zhang X., Zhou S. Z., Zhao J., Ren L. Q., Appl. Mater., 2022, 27, 101430. [131] Han D. L., Liu X. M., Wu S. L., Chem. Soc. Rev., 2022, 51, 7138. [132] Pettinari C., Pettinari R., Nicola C. D., Tombesi A., Scuri S., Marchetti F., Coord. Chem. Rev., 2021, 446, 214121. [133] Liu Y., Wu J. M., Li W. H., Li J. Q., Han H. Y., Song Z. Y., Coord. Chem. Rev., 2023, 496, 215431. [134] Zhang G. M., Shen Y. X., Phipps J., Sun L., Ma S. Q., Coord. Chem. Rev., 2024, 518, 216059. [135] Tong P. H., Yang J. J., Zhou Y. F., Tang Y. F., Tang M. T., Zang Y., Pan Y. F., Dong L. W., Tan Y. X., Nam K. T., Hu X. L., Huang H., Li J., Wang H. Y., Jamesf T. D., Yoon J., He X. P., Coord. Chem. Rev., 2025, 526, 216381. [136] Qin S. R., Liu Y. T., He G. Z., Yang J. J., Zeng F., Lu Q. L., Wang M., He B. S., Song Y. J., ACS Nano, 2024, 18, 26858. [137] Liu X. Y., Chen Z. X., Bai J. Y., Li X., Chen X., Li Z., Pan H. X., Li S. H., Gao Q. Y., Zhao N., Chen A. D., Xu H. L., Wen Y. N., Du L., Yang M., Zhou X. T., Huang J. H., ACS Nano, 2023, 17, 25377. [138] Chen M., Zhang J. J., Qi J., Dong R. H., Liu H. M., Wu D. C., Shao H. W., Jiang X. Y., ACS Nano, 2022, 16, 7732. |
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