Bioimaging and prospects of night pearls-based persistence phosphors in cancer diagnostics

Ruipu Shang , Feifei Yang , Ge Gao , Yu Luo , Hongpeng You , Lile Dong

Exploration ›› 2024, Vol. 4 ›› Issue (4) : 20230124

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Exploration ›› 2024, Vol. 4 ›› Issue (4) :20230124 DOI: 10.1002/EXP.20230124
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Bioimaging and prospects of night pearls-based persistence phosphors in cancer diagnostics

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Abstract

Inorganic persistent phosphors feature great potential for cancer diagnosis due to the long luminescence lifetime, low background scattering, and minimal autofluorescence. With the prominent advantages of near-infrared light, such as deep penetration, high resolution, low autofluorescence, and tissue absorption, persistent phosphors can be used for deep bioimaging. We focus on highlighting inorganic persistent phosphors, emphasizing the synthesis methods and applications in cancer diagnostics. Typical synthetic methods such as the high-temperature solid state, thermal decomposition, hydrothermal/solvothermal, and template methods are proposed to obtain small-size phosphors for biological organisms. The luminescencemechanisms of inorganic persistent phosphors with different excitation are discussed and effective matrixes including galliumate, germanium, aluminate, and fluoride are explored. Finally, the current directions where inorganic persistent phosphors can continue to be optimized and how to further overcome the challenges in cancer diagnosis are summarized.

Keywords

bioimaging / inorganic persistence phosphors / luminescence mechanism / nanomedicine / synthetic strategy

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Ruipu Shang, Feifei Yang, Ge Gao, Yu Luo, Hongpeng You, Lile Dong. Bioimaging and prospects of night pearls-based persistence phosphors in cancer diagnostics. Exploration, 2024, 4(4): 20230124 DOI:10.1002/EXP.20230124

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References

[1]

S. Shikha, T. Salafi, J. Cheng, Y. Zhang, Chem. Soc. Rev. 2017, 46, 7054.

[2]

Z. Zhang, F. Vogelbacher, Y. Song, Y. Tian, M. Li, Exploration 2023, 3, 20220052.

[3]

Y. Jiang, K. Pu, Chem. Rev. 2021, 121, 13086.

[4]

R. Gao, M. S. Kodaimati, D. Yan, Chem. Soc. Rev. 2021, 50, 5564.

[5]

Z. Lin, R. Kabe, K. Wang, C. Adachi, Nat. Commun. 2020, 11, 191.

[6]

J. Kong, R. Zou, G. Law, Y. Wang, Sci. Adv. 2022, 8, eabm7077.

[7]

H. Zhao, C. Liu, Z. Gu, L. Dong, F. Li, C. Yao, D. Yang, Nano Lett. 2020, 20, 252.

[8]

B. Qu, B. Zhang, L. Wang, R. Zhou, X. Zeng, Chem. Mater. 2015, 27, 2195.

[9]

P. Pei, Y. Chen, C. Sun, Y. Fan, Y. Yang, X. Liu, L. Lu, M. Zhao, H. Zhang, D. Zhao, X. Liu, F. Zhang, Nat. Nanotechnol. 2021, 16, 1011.

[10]

X. Qin, X. Liu, W. Huang, M. Bettinelli, X. Liu, Chem. Rev. 2017, 117, 4488.

[11]

B. Zheng, J. Fan, B. Chen, X. Qin, J. Wang, F. Wang, R. Deng, X. Liu, Chem. Rev. 2022, 122, 5519.

[12]

J. Li, Y. Luo, K. Pu, Angew. Chem. Int. Ed. 2021, 60, 12682.

[13]

X. Chen, J. Song, X. Chen, H. Yang, Chem. Soc. Rev. 2019, 48, 3073.

[14]

J. Li, N. Yu, D. Cui, J. Huang, Y. Luo, K. Pu, Angew. Chem. Int. Ed. 2023, 62, e202305200.

[15]

Q. Xin, H. Ma, H. Wang, X. Zhang, Exploration 2023, 3, 20220011.

[16]

Y. Liu, L. Teng, Y. Lyu, G. Song, X. Zhang, W. Tan, Nat. Commun. 2022, 13, 2216.

[17]

J. Chen, T. Chen, Q. Fang, C. Pan, O. U. Akakuru, W. Ren, J. Lin, A. Sheng, X. Ma, A. Wu, Exploration 2022, 2, 20220014.

[18]

A. J. Syed, J. C. Anderson, Chem. Soc. Rev. 2021, 50, 5668.

[19]

L. Dong, W. Li, Y. Luo, C. Liu, K. Li, Y. Chen, G. Hong, Adv. Funct. Mater. 2023, 33, 2302541.

[20]

Z. Hu, C. Fang, B. Li, Z. Zhang, C. Cao, M. Cai, S. Su, X. Sun, X. Shi, C. Li, T. Zhou, Y. Zhang, C. Chi, P. He, X. Xia, Y. Chen, S. S. Gambhir, Z. Cheng, J. Tian, Nat. Biomed. Eng. 2020, 4, 259.

[21]

Z. Lv, L. Jin, Y. Cao, H. Zhang, D. Xue, N. Yin, T. Zhang, Y. Wang, J. Liu, X. Liu, H. Zhang, Light: Sci. Appl. 2022, 11, 116.

[22]

H. Sun, T. Yu, X. Li, Y. Lei, J. Li, X. Wang, P. Peng, D. Ni, X. Wang, Y. Luo, J. Nanobiotechnol. 2021, 19, 433.

[23]

Y. Liu, P. Bhattarai, Z. Dai, X. Chen, Chem. Soc. Rev. 2019, 48, 2053.

[24]

R. Zhang, P. Zang, D. Yang, J. Li, N. Hu, S. Qu, P. Yang, Adv. Funct. Mater. 2023, 33, 2300522.

[25]

Y. Zhu, R. Zhao, L. Feng, C. Wang, S. Dong, M.V. Zyuzin, A. Timin, N. Hu, B. Liu, P. Yang, ACS Nano 2023, 17, 6833.

[26]

W. Feng, X. Han, R. Wang, X. Gao, P. Hu, W. Yue, Y. Chen, J. Shi, Adv. Mater. 2019, 31, 1805919.

[27]

T. He, Y. Luo, Q. Zhang, Z. Men, T. Su, L. Fan, H. Chen, T. Shen, ACS Appl. Mater. Interfaces 2021, 13, 26790.

[28]

L. Xu, Z. Sun, Z. Xing, Y. Liu, H. Zhao, Z. Tang, Y. Luo, S. Hao, K. Li, J. Nanobiotechnol. 2022, 20, 118.

[29]

Z. Xie, T. Fan, J. An, W. Choi, Y. Duo, Y. Ge, B. Zhang, G. Nie, N. Xie, T. Zheng, Y. Chen, H. Zhang, J. S. Kim, Chem. Soc. Rev. 2020, 49, 8065.

[30]

X. Chen, Y. Li, K. Huang, L. Huang, X. Tian, H. Dong, R. Kang, Y. Hu, J. Nie, J. Qiu, G. Han, Adv. Mater. 2021, 33, 2008722.

[31]

T. Si, Q. Zhu, T. Zhang, X. Sun, J. Li, Chem. Eng. J. 2021, 426, 131744.

[32]

Y. Li, M. Gecevicius, J. Qiu, Chem. Soc. Rev. 2016, 45, 2090.

[33]

L. Liang, J. Chen, K. Shao, X. Qin, Z. Pan, X. Liu, Nat. Mater. 2023, 22, 289.

[34]

S. Yang, W. Dai, W. Zheng, J. Wang, Coord. Chem. Rev. 2023, 475, 214913.

[35]

Z. Zhou, W. Zheng, J. Kong, Y. Liu, P. Huang, S. Zhou, Z. Chen, J. Shi, X. Chen, Nanoscale 2017, 9, 6846.

[36]

T. Zhao, R. Abdurahman, R. Aiwaili, S. Wu, X. Yin, Coord. Chem. Rev. 2023, 488, 215171.

[37]

R. Zou, J. Huang, J. Shi, L. Huang, X. Zhang, K. Wong, H. Zhang, D. Jin, J. Wang, Q. Su, Nano Res. 2017, 10, 2070.

[38]

N. Yu, Y. Li, Z. Li, G. Han, Sci. China: Chem. 2018, 61, 757.

[39]

Z. Luo, Y. Wu, Y. Wang, D. Hu, D. Gao, Y. Ge, Z. Sheng, X. Liu, H. Zheng, Nano Today 2023, 50, 101854.

[40]

X. Ou, X. Qin, B. Huang, J. Zan, Q. Wu, Z. Hong, L. Xie, H. Bian, Z. Yi, X. Chen, Y. Wu, X. Song, J. Li, Q. Chen, H. Yang, X. Liu, Nature 2021, 590, 410.

[41]

H. Liu, H. Liang, W. Zhang, Q. Zeng, D. Wen, Chem. Eng. J. 2021, 410, 128367.

[42]

M. Shang, S. Liang, N. Qu, H. Lian, J. Lin, Chem. Mater. 2017, 29, 1813.

[43]

J. Li, J. Shi, J. Shen, H. Man, M. Wang, H. Zhang, Nano-Micro Lett. 2015, 7, 138.

[44]

D. Zhou, Y. Wang, P. Tian, P. Jing, M. Sun, X. Chen, X. Xu, D. Li, S. Mei, X. Liu, W. Zhang, R. Guo, S. Qu, H. Zhang, ACS Appl. Mater. Interfaces 2018, 10, 27160.

[45]

Q. Wang, J. Liu, L. He, S. Liu, P. Yang, Nanoscale 2023, 15, 12455.

[46]

L. Yang, S. Gai, H. Ding, D. Yang, L. Feng, P. Yang, Adv. Opt. Mater. 2023, 11, 2202382.

[47]

X. Wang, X. Dai, Y. Chen, Small 2023, 19, 2301693.

[48]

Y Liang, F. Liu, Y. Chen, X. Wang, K. Sun, Z. Pan, Light: Sci. Appl. 2016, 5, e16124.

[49]

S. Wang, R. Pang, T. Tan, H. Wu, Q. Wang, C. Li, S. Zhang, T. Tan, H. You, H. Zhang, Adv. Mater. 2023, 35, 2300124.

[50]

Q. Zhang, X. Wei, J. Zhou, B. Milićević, L. Lin, J. Huo, J. Li, H. Ni, Z. Xia, Adv. Opt. Mater. 2023, 11, 2300310.

[51]

L. Sun, B. Wang, G. Xing, C. Liang, W. Ma, S. Yang, Chem. Eng. J. 2023, 455, 140752.

[52]

Y. Feng, R. Liu, L. Zhang, Z. Li, Y. Su, Y. Lv, ACS Appl. Mater. Interfaces 2019, 11, 44978.

[53]

Y. Yang, Z. Li, J. Zhang, Y. Lu, S. Guo, Q. Zhao, X. Wang, Z. Yong, H. Li, J. Ma, Y. Kuroiwa, C. Moriyoshi, L. Hu, L. Zhang, L. Zheng, H. Sun, Light: Sci. Appl. 2018, 7, 88.

[54]

B. Liu, R. Zou, S. Lou, Y. Gao, L. Ma, K. Wong, J. Wang, Chem. Eng. J. 2021, 404, 127133.

[55]

H. Yang, W. Zhao, E. Song, K. Hu, H. Zhang, R. Yun, H. Huang, J. Zhong, Y. Li, X. Li, Adv. Opt. Mater. 2022, 10, 2102496.

[56]

J. Shi, X. Sun, S. Zheng, X. Fu, Y. Yang, J. Wang, H. Zhang, Adv. Opt. Mater. 2019, 7, 1900526.

[57]

Z. Zhou, X. Wang, X. Yi, H. Ming, Z. Ma, M. Peng, Chem. Eng. J. 2021, 421, 127820.

[58]

Z. Wang, Z. Song, L. Ning, Q. Liu, J. Mater. Chem. C 2020, 8, 1143.

[59]

M. Pan, Y. Zhong, H. Lin, H. Bao, L. Zheng, R. Hong, B. Dai, D. Yu, D. Zhang, S. Zhuang, J. Mater. Chem. C 2022, 10, 496.

[60]

Z. Liu, X. Yang, L. Yang, X. Yu, J. Qiu, X. Xu, Chem. Eng. J. 2020, 401, 126119.

[61]

S. Ding, H. Guo, P. Feng, Q. Ye, Y. Wang, Adv. Opt. Mater. 2020, 8, 2000097.

[62]

Y. Li, Y. Li, R. Chen, K. Sharafudeen, S. Zhou, M. Gecevicius, H. Wang, G. Dong, Y. Wu, X. Qin, NPG Asia Mater. 2015, 7, e180.

[63]

J. Su, R. Pang, T. Tan, S. Wang, W. Yuan, J. Wang, X. Chen, H. Wu, C. Li, H. Zhang, J. Mater. Chem. C 2022, 10, 10047.

[64]

X. Wang, Y. Chen, F. Liu, Z. Pan, Nat. Commun. 2020, 11, 2040.

[65]

F. Duan, Q. Jia, G. Liang, M. Wang, L. Zhu, K. J. McHugh, L. Jing, M. Du, Z. Zhang, ACS Nano 2023, 17, 11290.

[66]

X. Qu, Y. Guo, C. Xie, S. Li, Z. Liu, B. Lei, ACS Nano 2023, 17, 7229.

[67]

S. Liu, X. Pan, H. Liu, Angew. Chem. Int. Ed. 2020, 59, 5890.

[68]

X. Ji, L. Ge, C. Liu, Z. Tang, Y. Xiao, W. Chen, Z. Lei, W. Gao, S. Blake, D. De, B. Shi, X. Zeng, N. Kong, X. Zhang, W. Tao, Nat. Commun. 2021, 12, 1124.

[69]

W. Xie, Y. Chen, H. Yang, Small 2023, 19, 2300842.

[70]

C. Song, X. Wu, J. Wang, R. Liu, Y. Zhao, Nano Today 2023, 51, 101913.

[71]

M. Chang, W. Feng, L. Ding, H. Zhang, C. Dong, Y. Chen, J. Shi, Bioact. Mater. 2022, 10, 131.

[72]

Z. Li, J. Zou, X. Chen, Adv. Mater. 2023, 35, 2209529.

[73]

S. Han, X. Qin, Z. An, Y. Zhu, L. Liang, Y. Han, W. Huang, X. Liu, Nat. Commun. 2016, 7, 13059.

[74]

S. Han, R. Deng, Q. Gu, L. Ni, U. Huynh, J. Zhang, Z. Yi, B. Zhao, H. Tamura, A. Pershin, H. Xu, Z. Huang, S. Ahmad, M. Abdi-Jalebi, A. Sadhanala, M. L. Tang, A. Bakulin, D. Beljonne, X. Liu, A. Rao, Nature 2020, 587, 594.

[75]

X. Lv, N. Chen, J. Wang, Q. Yuan, Sci. China Mater. 2020, 63, 1808.

[76]

N. Liu, W. Zheng, R. Sun, X. Li, X. Xie, L. Wang, Y. Zhang, Adv. Funct. Mater. 2022, 32, 2110663.

[77]

T. Lécuyer, M. Durand, J. Volatron, M. Desmau, R. Lai-Kuen, Y. Corvis, J. Seguin, G. Wang, D. Alloyeau, D. Scherman, N. Mignet, F. Gazeau, C. Richard, Nanoscale 2020, 12, 1967.

[78]

E. Arroyo, B. Medrán, V. Castaing, G. Lozano, M. Ocaña, A. I. Becerro, J. Mater. Chem. C 2021, 9, 4474.

[79]

X. Hu, H. Yang, T. Guo, D. Shu, W. Shan, G. Li, D. Guo, Ceram. Int. 2018, 44, 7535.

[80]

W. Zheng, X. Li, N. Liu, S. Yan, X. Wang, X. Zhang, Y. Liu, Y. Liang, Y. Zhang, H. Liu, Angew. Chem. Int. Ed. 2021, 60, 24450.

[81]

D. Liu, C. Cui, P. Huang, L. Wang, G. Jiang, J. Alloys Compd. 2014, 583, 530.

[82]

Y. Li, X. Yan, Nanoscale 2016, 8, 14965.

[83]

T. Hang, Q. Liu, D. Mao, C. Chang, Mater. Chem. Phys. 2008, 107, 142.

[84]

P. Feng, J. Zhang, Q. Qin, R. Hu, Y. Wang, Mater. Res. Bull. 2014, 50, 365.

[85]

H. Liu, F. Ren, H. Zhang, Y. Han, H. Qin, J. Zeng, Y. Wang, Q. Sun, Z. Li, M. Gao, J. Mater. Chem. B 2018, 6, 1508.

[86]

Z. Li, Y. Zhang, X. Wu, L. Huang, D. Li, W. Fan, G. Han, J. Am. Chem. Soc. 2015, 137, 5304.

[87]

M. L. Goasa, J. Sabera, S. G. Bolívara, J. Rabanela, J. Awognia, D. C. Boffitob, X. Banquy, Nano Today 2022, 45, 101516.

[88]

Z. Yang, Y. Luo, Y. Hu, K. Liang, G. He, Q. Chen, Q. Wang, H. Chen, Adv. Funct. Mater. 2021, 31, 2007991.

[89]

L. Dong, L. Sun, W. Li, Y. Jiang, Y. Zhan, L. Yu, Y. Chen, G. Hong, Adv. Funct. Mater. 2021, 31, 2008591.

[90]

L. Dong, W. Li, L. Yu, L. Sun, Y. Chen, G. Hong, ACS Appl. Mater. Interfaces 2020, 12, 42558.

[91]

J. Li, X. Huang, X. Zhao, L. Chen, X. Yan, Angew. Chem. Int. Ed. 2021, 60, 2398.

[92]

N. Shrivastava, J. Guffie, T. L. Moore, B. Guzelturk, A. S. Kumbhar, J. Wen, Z. Luo, Nano Lett. 2023, 23, 6482.

[93]

Z. Li, Y. Zhao, K. Huang, L. Huang, Y. Zhang, H. Yang, G. Han, Angew. Chem. Int. Ed. 2021, 60, 15886.

[94]

J. Hu, Z. Huang, Y. Liu, Angew. Chem. Int. Ed. 2023, 135, e202306.

[95]

X. Wei, X. Huang, Y. Zeng, L. Jing, W. Tang, X. Li, H. Ning, X. Sun, Y. Yi, M. Gao, ACS Nano 2020, 14, 12113.

[96]

J. Shi, X. Sun, S. Zheng, J. Li, X. Fu, H. Zhang, Biomaterials 2018, 152, 15.

[97]

Z. Liang, Y. Peng, H. Feng, Z. Hong, F. Liu, R. Yu, Y. Cao, M. Xie, Y. Zhang, X. Zhang, X. Yi, A. Zheng, J. Wu, W. Xiao, F. Schüth, D. Gu, Adv. Mater. 2023, 2305050,

[98]

J. Wang, J. Li, J. Yu, H. Zhang, B. Zhang, ACS Nano 2018, 12, 4246.

[99]

F. Kang, G. Sun, P. Boutinaud, H. Wu, F. Ma, J. Lu, J. Gan, H. Bian, F. Gao, S. Xiao, Chem. Eng. J. 2021, 403, 126099.

[100]

Q. Lin, Z. Li, C. Ji, Q. Yuan, Nanoscale Adv. 2020, 2, 1380.

[101]

V. Abbruscato, J. Electrochem. Soc. 1971, 118, 930.

[102]

T. Matsuzawa, Y. Aoki, N. Takeuchi, Y. Murayama, J. Electrochem. Soc. 1996, 143, 2670.

[103]

T. Aitasaloa, J. Holsa, H. Jungner, M. Lastusaaria, J. Niittykoski, J. Lumin. 2001, 94, 59.

[104]

J. Qiu, M. Kawasaki, K. Tanaka, Y. Shimizugawa, K. Hirao, J. Phys. Chem. Solids 1998, 59, 1521.

[105]

P. Wang, X. Xu, D. Zhou, X. Yu, J. Qiu, Inorg. Chem. 2015, 54, 1690

[106]

H. Guo, Y. Wang, G. Li, J. Liu, P. Feng, D. Liu, J. Mater. Chem. C 2017, 5, 12090.

[107]

H. Luo, J. Cao, X. Li, X. Wang, M. Peng, J. Mater. Chem. C 2018, 6, 11525.

[108]

S. Miao, Y. Liang, D. Chen, S. Yan, J. Liu, W. Wang, J. Bi, J. Mater. Chem. C 2022, 10, 14211.

[109]

Z. Li, Y. Zhao, K. Huang, L. Huang, Y. Zhang, H. Yang, G. Han, Angew. Chem. Int. Ed. 2021, 133, 15886.

[110]

X. Zhu, X. Wang, H. Zhang, F. Zhang, Angew. Chem. Int. Ed. 2022, 61, e202209378.

[111]

X. Li, R. Yue, G. Guan, C. Zhang, Y. Zhou, G. Song, Exploration 2023, 3, 20220002.

[112]

Q. Peng, T. Wang, H. Tang, T. Ji, W. Wang, J. Xiao, X. Li, Z. Liu, J. Qiu, X. Yu, X. Xu, Laser Photonics Rev. 2022, 16, 2200449.

[113]

S. Kim, M. Choi, G. Hong, S. Hahn, Light: Sci. Appl. 2022, 11, 314.

[114]

P. Pei, Y. Bai, J. Su, Y. Yang, W. Liu, Sci. China Mater. 2022, 65, 2809.

[115]

P. Pei, K. Liu, Z. Ju, R. Wei, W. Liu, J. Mater. Chem. C 2022, 10, 5240.

[116]

H. Qiu, M. Li, Y. Lu, H. Cheng, H. Chen, Y. Zheng, Mater. Today Phys. 2023, 31, 100970.

[117]

W. Xu, L. Lei, Y. Wang, E. Liu, L. Chen, S. Xu, Mater. Horiz. 2021, 8, 3443.

[118]

R. Zhang, Y. Jin, L. Yuan, K. Deng, C. Wang, G. Xiong, L. Chen, Y. Hu, J. Alloys Compd. 2022, 921, 166081.

[119]

E. Song, X. Han, Y. Zhou, Y. Wei, X. Jiang, S. Ye, B. Zhou, Z. Xia, Q. Zhang, iScience 2019, 19, 597.

[120]

Z. Wang, P. Pei, D. Bai, S. Zhao, X. Ma, W. Liu, Inorg. Chem. Front. 2020, 7, 2506.

[121]

X. Chen, Yang. Li, K. Huang, L. H. Tian, H. Dong, R. Kang, Y. Hu, J. Nie, J. Qiu, G. Han, Adv. Mater. 2021, 33, 2008722.

[122]

L. Hu, Y. Fan, L. Liu, X. Li, B. Zhao, R. Wang, P. Wang, A. M El-Toni, F. Zhang, Adv. Opt. Mater. 2017, 5, 1700680.

[123]

K. Huang, X. Dou, Y. Zhang, X. Gao, J. Lin, J. Qu, Y. Li, P. Huang, G. Han, Adv. Funct. Mater. 2021, 31, 2009920.

[124]

Z. Xue, X. Li, Y. Li, M. Jiang, H. Liu, S. Zeng, J. Hao, ACS Appl. Mater. Interfaces 2017, 9, 22132.

[125]

S. Sun, H. Wang, X. Yan, Acc. Chem. Res. 2018, 51, 1131.

[126]

B. Yu, Y. Wang, Y. Lin, Y. Feng, J. Wu, W. Liu, M. Wang, X. Gao, Nanoscale 2022, 14, 8978.

[127]

M. Chan, W. Huang, J. Wang, R. Liu, M. Hsiao, Adv. Sci. 2020, 7, 1903741.

[128]

Z. Chen, L. Wang, D. Manoharan, C. Lee, L. Wu, W. Huang, E. Huang, C. Su, H. Sheu, C. Yeh, Adv. Mater. 2019, 31, 1905087.

[129]

N. Liu, J. Shi, Q. Wang, J. Guo, Z. Hou, X. Su, H. Zhang, X. Sun, Small 2020, 16, 2001494.

[130]

R. M. Calderón-Olvera, E. Arroyo, A. M. Jankelow, R. Bashir, E. Valera, M. Ocaña, A. I. Becerro, ACS Appl. Mater. Interfaces 2023, 15, 20613.

[131]

J. Wang, Q Ma, W Zheng, H. Liu, C. Yin, F. Wang, X. Chen, Q. Yuan, W. Tan, ACS Nano 2017, 11, 8185.

[132]

S. Chen, G. Cai, X. Gong, L. Wang, C. Cai, H. Gong, ACS Appl. Mater. Interfaces 2022, 14, 46964.

[133]

N. Chen, N. Du, W. Wang, T. Liu, Q. Yuan, Y. Yang, Angew. Chem. Int. Ed. 2022, 61, e202115572.

[134]

G. Fan, A. J. Graham, J. Kolli, N. A. Lynd, B. K. Keitz, Nat. Chem. 2020, 12, 638.

[135]

S. Xu, A. Barrozo, L. M. Tender, A. I. Krylov, M. Y. ElNaggar, J. Am. Chem. Soc. 2018, 140, 10085.

[136]

K. Zhou, K. J. Qiao, S. Edgar, G. Stephanopoulos, Nat. Biotechnol. 2015, 33, 377.

[137]

S. H. Light, L. Su, R. Rivera-Lugo, J. A. Cornejo, A. Louie, A. T. Iavarone, C. M Ajo-Franklin, D. A. Portnoy, Nature 2018, 562, 140.

[138]

Z. Pan, Y. Lu, F. Liu, Nat. Mater. 2012, 11, 58.

[139]

J. Yang, Y. Liu, Y. Zhao, Z. Gong, M. Zhang, D. Yan, H. Zhu, C. Liu, C. Xu, H. Zhang, Chem. Mater. 2017, 29, 8119.

[140]

J. Ma, N. Li, J. Wang, Z. Liu, Y. Han, Y. Zeng, Exploration 2023, 3, 20220161.

[141]

D. Kang, H. S. Kim, S. Han, Y. Lee, Y. Kim, D. Y. Lee, J. Lee, Nat. Commun. 2023, 14, 2755.

[142]

H. Arami, S. Kananian, L. Khalifehzadeh, C. B. Patel, E. Chang, Y. Tanabe, Y. Zeng, S. J. Madsen, M. J. Mandella, A. Natarajan, E. E. Peterson, R. Sinclair, A. S. Y. Poon, S. S. Gambhir, Nat. Nanotechnol. 2022, 17, 1015.

[143]

L. Yan, L. Chen, X. Zhao, X. Yan, Adv. Funct. Mater. 2020, 30, 1909042.

[144]

M. Chang, X. Dai, C. Dong, H. Huang, L. Ding, Y. Chen, W. Feng, Nano Today 2022, 42, 101362.

[145]

X. Lin, R. Zhang, X. Tian, Y. Li, B. Du, J. Nie, Z. Li, L. Chen, J. Ren, J. Qiu, Y. Hu, Adv. Opt. Mater. 2018, 6, 1701161.

[146]

L. He, N. Zheng, Q. Wang, J. Du, S. Wang, Z. Cao, Z. Wang, G. Chen, J. Mu, S. Liu, X. Chen, Adv. Sci. 2023, 10, 2205208.

[147]

J. Ma, W. Zhu, L. Lei, D. Deng, Y. Hua, Y. Yang, S. Xu, P. Prasad, ACS Appl. Mater. Interfaces 2021, 13, 44596.

[148]

K. Huang, Z. Li, Y. Li, N. Yu, X. Gao, L. Huang, S. Lim, G. Han, Nano Lett. 2021, 21, 4903.

[149]

W. Chen, Y. Song, W. Zhang, R. Deng, Y. Zhuang, R. Xie, ACS Appl. Mater. Interfaces 2022, 14, 28230.

[150]

J. Ouyang, A. Xie, J. Zhou, R. Liu, L. Wang, H. Liu, N. Kong, W. Tao, Chem. Soc. Rev. 2022, 51, 4996.

[151]

Y. Yang, J. Huang, W. Wei, Q. Zeng, X. Li, D. Xing, B. Zhou, T. Zhang, Nat. Commun. 2022, 13, 3149.

[152]

L. Dong, W. Li, L. Sun, L. Yu, Y. Chen, G. Hong, Wiley Interdiscip. Rev.: Nanomed. Nanobiotechnol. 2021, 13, e1663.

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