A Critical Review on Nanowire-Motors: Design, Mechanism and Applications.


Journal

Chemical record (New York, N.Y.)
ISSN: 1528-0691
Titre abrégé: Chem Rec
Pays: United States
ID NLM: 101085550

Informations de publication

Date de publication:
Aug 2022
Historique:
revised: 24 04 2022
received: 25 01 2022
pubmed: 27 5 2022
medline: 10 8 2022
entrez: 26 5 2022
Statut: ppublish

Résumé

Nanowire-motors (NW-Ms) are promoting the rapid development of emerging biomedicine and environmental governance, and are an important branch of micro-nano motors in the development of nanotechnology. In recent years, huge research breakthroughs have been made in these fields in terms of the fascinating microstructure, conversion efficiency and practical applications of NW-Ms. This review article introduces the latest milestones in NW-Ms research, from production methods, driving mechanisms, control methods to targeted drug delivery, sewage detection, sensors and cell capture. The dynamics and physics of micro-nano devices are reviewed, and finally the current challenges and future research directions in this field are discussed. This review further aims to provide certain guidance for the driving of NW-Ms to meet the urgent needs of emerging applications.

Identifiants

pubmed: 35616156
doi: 10.1002/tcr.202200016
doi:

Types de publication

Journal Article Review

Langues

eng

Sous-ensembles de citation

IM

Pagination

e202200016

Subventions

Organisme : Natural Science Foundation of China
ID : U1532268
Organisme : Wuhan
ID : 2019010701011382
Organisme : National Natural Science Foundation of China
ID : 51908092
Organisme : Central Universities
Organisme : National Natural Science Foundation of China-Guangdong
ID : U1801254
Organisme : Chongqing Special Postdoctoral Science Foundation
ID : XmT2018043
Organisme : Chongqing Research Program of Basic Research and Frontier Technology
ID : cstc2017jcyjBX0080
Organisme : Chongqing Research Program of Basic Research and Frontier Technology
ID : cstc2019jcyjbsh0079
Organisme : Chongqing Research Program of Basic Research and Frontier Technology
ID : cstc2019jcyjbshX0085
Organisme : Chongqing Municipal Education Commission
ID : KJZDK201800801
Organisme : Innovative Research Team of Chongqing
ID : CXTDG201602014
Organisme : Innovative technology of New materials and metallurgy
ID : 2019CDXYCL0031

Informations de copyright

© 2022 The Chemical Society of Japan & Wiley-VCH GmbH.

Références

K. J. Verhey, J. W. Hammond, Nat. Rev. Mol. Cell Biol. 2009, 10, 765-777.
L. Pellizzoni, B. Charroux, J. Rappsilber, M. Mann, G. Dreyfuss, J Cell Biol. 2001, 152 (1), 75-86.
H. L. Sweeney, A. Houdusse, Annu. Rev. Biophys. 2010, 39, 539.
A. S. Kashlna, R. J. Baskin, D. G. Cole, K. P. Wedaman, W. M. Saxton, J. M. Scholey, Nature 1996, 379, 270-272.
E. Drexler, Engines of Creation, the coming era of nanotechnology, Anchor books edition: 1986, ISBN: 978-0-19973-5(PBK).
J. A. Stroscio, D. M. Eigler, Science. 1991, 254, 1319-1326.
C. R. Martin, Science. 1994, 266, 1961-1966.
S. E. Skrabalak, Y. Xia, ACS Nano. 2009, 3, 10-15.
G. Chandra, V. Sharath, Subashini, H. M. Mahadevaswamy, P. Udham, Curr. Sci. 2017, 112, 1083-1086.
M. Alarcon-Correa, T. Qiu, P. Fischer, D. Walker, Eur Phys J Spec Top. 2016, 225, 2241-2254.
C. Wang, R. Dong, Q. Wang, C. Zhang, X. She, J. Wang, Y. Cai, Chem-Asian J. 2019, 14, 2485-2490.
K. E. Byun, K. Heo, S. Shim, H. J. Choi, S. Hong, Small. 2010, 5, 2659-2664.
L. Dong, B. J. Nelson, T. Fukuda, F. Arai, IEEE Trans. Autom. 2006, 3, 228-235.
 
L. Baraban, D. Makarov, R. Streubel, D. Grimm, S. Sanchez, O. G. Schmidt, ACS Nano. 2012, 6, 3383;
R. Dong, Y. Cai, Y. Yang, W. Gao, B. Ren, Acc. Chem. Res. 2018, 51, 1940-1947.
T. R. Kline, W. F. Paxton, T. E. Mallouk, A. Sen, Chem. Inform. 2005, 117, 744-746.
Z. Wu, X. Lin, T. Si, Q. He, Small. 2016, 12, 3080-3093.
A. Fukuoka, Y. Sakamoto, S. Guan, S. Inagaki, N. Sugimoto, Y. Fukushima, K. Hirahara, S. Iijima, M. Ichikawa, J. Am. Chem. Soc. 2001, 123, 3373-3374.
Y. Hayashi, T. Fujita, T. Tokunaga, K. Kaneko, T. Butler, N. Rupesinghe, J. D. Carey, S. R. P. Silva, G. A. J. Amaratunga, Diam Relat Mater. 2007, 16, 1200-1203.
D. H. Reich, M. Tanase, A. Hultgren, J Appl Phys. 2003, 93, 7275;
Z.-G. Wu, T.-L. Li, J.-X. Li, W. Gao, T.-L. Xu, C. Christianson, W.-W. Gao, M. Galarnyk, Q. He, L.-F Zhang, J. Wang, Acs Nano. 2014, 8 (12), 12041-12048.
H. R. K. R. Khataee, NANO. 2010, 05, 13-23.
L. Soler, S. Sánchez, Nanoscale. 2014, 6, 7175-7182.
S.-N. W, X.-J. L,Y. W, D.-D X, C.-Y L, J.-H. G, X. M, Nanoscale. 2019 11, 14099-14112.
 
D.-S. Wang, A. Mukhtar, K.-M. Wu, L. Gu, X. Cao, Materials. 2019, 12, 3908;
A. Mukhtar, K. Wu, X. Cao, Nanotechnology. 2020, 31, 433001;
A. Mukhtar, T. Mehmood, B. S. Khan, M. Tan, J. Cryst. Growth 2016, 441, 26-32;
T. Mehmood, K. M. Wu, A. Mukhtar, B. S. Khan, A. Saeed, H. Latif, Z. Parveen, S. R. Kazmi, Int. J. Mater. Res. 2017, 108, 688-692;
T. Mehmood, B. S. Khan, A. Mukhtar, M. Tan, Int. J. Mater. Res. 2015, 106, 957-961;
L. Gu, X. Cao, A. Mukhtar, K. Wu, J. Biomed. Mater. Res. Part A 2021, 109, 477-485;
X. Cao, A. Mukhtar, L. Gu, K. M. Wu, Int. J. Mater. Res. 2022, 113, 172-178;
X. Cao, L. Gu, S. Hu, A. Mukhtar, K. Wu, Materials. 2021, 14, 2238;
A. Mukhtar, B. S. Khan, T. Mehmood, Int. J. Electrochem. Sci. 2017, 12, 4574-4584;
A. Mukhtar, B. Shahzad Khan, T. Mehmood, Appl. Phys. A 2016, 122, 1-9;
A. Mukhtar, T. Mehmood, K. Wu, B. S. Khan, H. Latif, Z. Parveen, S. R. Kazmi, Int. J. Mater. Res. 2017, 108, 710-714;
T. Mehmood, A. Mukhtar, B. S. Khan, A. Saeed, W. Ahmad, W. Kaiming, Int. J. Electrochem. Sci. 2017, 12, 1203-1215;
B. S. Khan, A. Saeed, S. S. Hayat, A. Mukhtar, T. Mehmood, Int. J. Electrochem. Sci. 2017, 12, 890-897;
T. Mehmood, A. Mukhtar, H. Wang, B. S. Khan, Int. J. Mater. Res. 2016, 107, 283-286.
D. C. D. Keating, M. J. Natan, Adv. Mater. 2003, 15, 451-454.
T. Mirkovic, N. S. Zacharia, G. D. Scholes, G. A. Ozin, Small. 2010, 6, 159-67.
Y. Wang, S. T. Fei, Y. M. Byun, P. E. Lammert, V. H. Crespi, A. Sen, T. E. Mallouk, J. Am. Chem. Soc. 2009, 131, 9926-9927.
 
J. Wu, S. Balasubramanian, D. Kagan, K. M. Manesh, S. Campuzano, J. Wang, Nat. Commun. 2010, 1, 1-6;
T. Mirkovic, N. S. Zacharia, G. D. Scholes, G. A. Ozin, Small. 2010, 6, 159-167.
 
J. Gibbs, Y. Zhao, Frontiers of Materials Science 2011, 5, 25-39;
W. Gao, A. Pei, J. Wang, ACS Nano. 2012, 6, 8432-8438.
W. F. Paxton, A. Sen, T. E. Mallouk, Chem. Eur. J. 2005, 11, 6462-6470.
R. Golestanian, T. B. Liverpool, A. Ajdari, Phys. Rev. Lett. 2005, 94, 220801.
W. F. Paxton, K. C. Kistler, C. C. Olmeda, A. Sen, S. K. St Angelo, Y. Cao, T. E. Mallouk, P. E. Lammert, V. H. Crespi, J. Am. Chem. Soc. 2004, 126, 13424-13431.
L. Li, J. Wang, T. Li, W. Song, G. Zhang, J. Appl. Phys. 2015, 117, 17277.
X. Ma, H. Feng, C. Liang, X. Liu, F. Zeng, Y. Wang, J. Mater. Sci. Technol. 2017, 33, 1067-1074.
 
M. Medina-Sánchez, H. Xu, O. G. Schmidt, Ther Deliv. 2018, 9, 303-316;
S. Wang, Z. Jiang, S. Ouyang, Z. Dai, T. Wang, ACS Appl. Mater. 2017, 9, 23974-23982;
J. G. S. Moo, M. Pumera, Chem. Eur. J. 2015, 21, 58-72;
T. Yuan, A. Li, in 45th AIAA/ASME/SAE/ASEE Joint Propulsion Conference & Exhibit, 2009, p. 5201;
X. Ma, X. Wang, K. Hahn, S. Sánchez, ACS Nano. 2016, 10, 3597-3605;
D. Vilela, U. Cossío, J. Parmar, A. M. Martínez-Villacorta, V. Gómez-Vallejo, J. Llop, S. Sánchez, ACS Nano. 2018, 12, 1220-1227.
L. Soler, S. Sánchez, Nanoscale. 2014, 6, 7175-7182.
T. R. Kline, W. F. Paxton, T. E. Mallouk, A. Sen, Angew Chem Int Edit. 2005, 44, 744-746.
W. F. Paxton, K. C. Kistler, C. C. Olmeda, A. Sen, S. K. S. Angelo, Y.-Y. Cao, T. E. Mallouk, P. E. Lammert, V. H. Crespi, J. Am. Chem. Soc. 2004, 126, 13424-13431..
Y. Wang, R. M. Hernandez, D. J. Bartlett, J. M. Bingham, T. R. Kline, A. Sen, T. E. Mallouk, Langmuir. 2006, 22, 10451-10456.
R. F. Ismagilov, A. Schwartz, N. Bowden, G. M. Whitesides, Angew Chem Int Edit. 2002, 41, 652-654.
S. Balasubramanian, D. Kagan, C.-M. J. H. S. Campuzano, M. J. Lobo-Castañon, N. Lim, D. Y. Kang, M. Zimmerman, L.-F. Zhang, J. Wang, Angew Chem Int Edit. 2011, 123, 4247-4250.
K. M. Manesh, M. Cardona, R. Yuan, M. Clark, D. Kagan, S. Balasubramanian, J. Wang, ACS Nano. 2010, 4, 1799-1804.
H. Liu, Y. Xu, F. Li, Y. Yang, W. Wang, Y. Song, D. Liu, Angew Chem Int Edit. 2007, 46, 2515-2517.
M. Xuan, Z. Wu, J. Shao, L. Dai, T. Si, Q. He, J. Am. Chem. Soc. 2016, 138, 6492-6497.
 
B. Jang, W. Wang, S. Wiget, A. J. Petruska, X. Chen, C. Hu, A. Hong, D. Folio, A. Ferreira, S. Pané, ACS Nano. 2016, 10, 9983-9991;
K. Kim, J. Guo, X. Xu, D. Fan, ACS Nano. 2015, 9, 548-554;
A. Malevanets, R. Kapral, J. Chem. Phys. 1999, 110, 8605-8613;
A. Malevanets, R. Kapral, J. Chem. Phys. 2000, 112, 7260-7269;
Y.-G. Tao, R. Kapral, J. Chem. Phys. 2008, 128, 164518;
Y.-G. Tao, R. Kapral, ChemPhysChem. 2009, 10, 770.
M. Wan, H. Chen, Q. Wang, Q. Niu, P. Xu, Y. Yu, T. Zhu, C. Mao, J. Shen, Nat. Commun. 2019, 10, 1-11.
J. J. Bull, H. S. Malik, PLoS Genet. 2017, 13, e1006850.
L. K. E. A. Abdelmohsen, F. Peng, Y. Tu, D. A. Wilson, J. Mater. Chem. B 2014, 2, 2395-2408.
 
Y. Xing, M. Zhou, X. Du, X. Li, J. Li, T. Xu, X. Zhang, Appl. Mater. Today. 2019, 17, 85-91;
A. Llopis-Lorente, A. García-Fernández, N. Murillo-Cremaes, A. C. Hortelão, T. Patiño, R. Villalonga, F. Sancenón, R. Martínez-Máñez, S. Sánchez, ACS Nano. 2019, 13, 12171-12183.
K. Hong, J. Noolandi, J. Chem. Phys. 1978, 68, 5163-5171.
W. Paxton, P. Baker, T. Kline, Y. Wang, T. Mallouk, A. Sen, J. Am. Chem. Soc. 2006, 128, 14881-14888.
L. Ran, A. Sen, J. Am. Chem. Soc. 2011, 133, 20064.
S. Sengupta, M. E. Ibele, A. Sen, Angew. Chem. Int. Ed. 2012, 51, 8434-8445;
Angew Chem Int Edit. 2012, 124, 8560-8571.
P. H. Colberg, 2018, ProQuest number :10680555.
W. Wang, W. Duan, S. Ahmed, T. E. Mallouk, A. Sen, Nano Today. 2013, 8, 531-554.
T. Ishikawa, T. Pedley, J. Fluid Mech. 2007, 588, 437.
J. Moran, P. Wheat, J. Posner, Phys. Rev. E 2010, 81, 065302.
F. Peng, Y. Men, Y. Tu, Y. Chen, D. A. Wilson, Adv. Funct. Mater. 2018, 28, 1706117.
P. Müller, X.-P. Li, K. K. Niyogi, Plant Physiol. 2001, 125, 1558-1566.
 
L. Xu, F. Mou, H. Gong, M. Luo, J. Guan, Chem. Soc. Rev. 2017, 46, 6905-6926;
J. Wang, Z. Xiong, X. Zhan, B. Dai, J. Zheng, J. Liu, J. Tang, Adv. Mater. 2017, 29, 1701451.
 
J. Wang, Z. Xiong, J. Zheng, X. Zhan, J. Tang, Acc. Chem. Res. 2018, 51, 1957-1965;
K. Yuan, J. Bujalance-Fernández, B. Jurado-Sánchez, A. Escarpa, Microchim. Acta. 2020, 187.
M. Mrowetz, W. Balcerski, A. Colussi, M. R. Hoffmann, J. Phys. Chem. B. 2004, 108, 17269-17273.
P.-C. Wang, J. Tseng, Google Patents, 2002, 6, 489,602.
M. Yamada, M. Kondo, J. Mamiya, Y. Yu, M. Kinoshita, C. J. Barrett, T. Ikeda, Angew. Chem. Int. Ed. 2008, 120, 5064-5066.
F. Wong, A. Sen, ACS Nano. 2016, 10, 7172-7179.
C. Stanciu, F. Hansteen, A. Kimel, A. Kirilyuk, A. Tsukamoto, A. Itoh, T. Rasing, Phys. Rev. Lett. 2007, 99, 047601.
J.-W. Liaw, Y.-S. Chen, M.-K. Kuo, Opt. Express 2014, 22, 26005-26015.
Q. Yuan, Y. Zhang, Y. Chen, R. Wang, C. Du, E. Yasun, W. Tan, Proc. Natl. Acad. Sci. USA 2011, 108, 9331-9336.
 
V. Garcia-Gradilla, J. Orozco, S. Sattayasamitsathit, F. Soto, F. Kuralay, A. Pourazary, A. Katzenberg, W. Gao, Y. Shen, J. Wang, ACS Nano 2013, 7, 9232-9240;
W. Gao, K. M. Manesh, J. Hua, S. Sattayasamitsathit, J. Wang, Small 2011, 7, 2047-2051.
R. Cheng, W. Huang, L. Huang, B. Yang, L. Mao, K. Jin, Q. ZhuGe, Y. Zhao, ACS Nano 2014, 8, 7746-7754.
A. A. Solovev, Y. Mei, E. Bermúdez Ureña, G. Huang, O. G. Schmidt, Small 2009, 5, 1688-1692.
R. Laocharoensuk, J. Burdick, J. Wang, ACS Nano 2008, 2, 1069-1075.
W. Gao, S. Sattayasamitsathit, K. M. Manesh, D. Weihs, J. Wang, J. Am. Chem. Soc. 2010, 132, 14403-14405.
O. S. Pak, W. Gao, J. Wang, E. Lauga, Soft Matter 2011, 7, 8169-8181.
W. Gao, D. Kagan, O. S. Pak, C. Clawson, J. Wang, Small 2012, 8, 460-467.
Zhou, Yu-Feng, World J Clinl Onco. 2011, 2, 8-27.
U. Herzog, Dis. Colon Rectum 1993, 36, 127-134.
W. Wang, W. Duan, Z Zhang, M. Sun, A. Sen, T. Mallouk, Chem Commun. 2015, 51, 1020-1023.
W. Wang, L. A. Castro, M. Hoyos, T. E. Mallouk, ACS Nano 2012, 6, 6122-6132.
W. Gao, M. D′Agostino, V. Garcia-Gradilla, J. Orozco, J. Wang, Small 2013, 9, 467-471.
R. S. d Molon, É. D. d Avila, J. A. C. d Souza, A. V. B. Nogueira, C. C. Cirelli, J. A. Cirelli, Braz Dent J 2012, 23, 758-763.
M. E. T. Molares, V. Buschmann, D. Dobrev, R. Neumann, R. Scholz, I. U. Schuchert, J. Vetter, Chem. Inform. 2010, 32, .
J. G. S. Moo, M. Pumera, Chemistry 2015, 21, 58-72.
E. Baranoff, J.-H. Yum, M. Graetzel, M. K. Nazeeruddin, J. Organomet. Chem. 2009, 694, 2661-2670.
K. Kim, J. Guo, Z. Liang, F. Zhu, D. Fan, Nanoscale 2016, 8, 10471-10490.
J. Guo, J. J. Gallegos, A. R. Tom, D. Fan, ACS Nano 2018, 12, 1179-1187.
K. Kim, X. Xu, J. Guo, D. Fan, Nat. Commun. 2014, 5, 1-9.
 
D. Kagan, M. J. Benchimol, J. C. Claussen, E. Chuluun-Erdene, S. Esener, J. Wang, Angew. Chem. Int. Ed. 2012, 51, 7519-7522;
V. Balzani, A. Credi, F. M. Raymo, J. F. Stoddart, Angew. Chem. Int. Ed. 2000, 39, 3348-3391;
G. S. Kottas, L. I. Clarke, D. Horinek, J. Michl, Chem. Rev. 2005, 105, 1281-1376;
Y. B. Zheng, Q. Hao, Y.-W. Yang, B. Kiraly, I.-K. Chiang, T. J. Huang, J. Nanophotonics 2010, 4, 042501;
Y. Hong, M. Diaz, U. M. Córdova-Figueroa, A. Sen, Adv. Funct. Mater. 2010, 20, 1568-1576;
J. D. Badjić, V. Balzani, A. Credi, S. Silvi, J. F. Stoddart, Science 2004, 303, 1845-1849.
J. Li, T. Li, T. Xu, M. Kiristi, W. Liu, Z. Wu, J. Wang, Nano Lett. 2015, 15, 4814-4821.
W. Gao, M. D′Agostino, V. Garcia-Gradilla, J. Orozco, J. Wang, Small 2013, 9, 467-471.
W. Wang, W. Duan, Z. Zhang, M. Sun, A. Sen, T. E. Mallouk, Chem. Commun. 2015, 51, 1020-1023.
 
Y. Wang, W. Duan, C. Zhou, Q. Liu, J. Gu, H. Ye, M. Li, W. Wang, X. Ma, Adv. Mater. 2019, 31, 1905067;
Y. Wang, W. Duan, C. Zhou, Q. Liu, X. Ma, Adv. Mater. 2019, 31;
X. Wei, M. Beltrán-Gastélum, E. Karshalev, B. Esteban-Fernández de Ávila, J. Zhou, D. Ran, P. Angsantikul, R. H. Fang, J. Wang, L. Zhang, Nano Lett. 2019, 19, 1914-1921;
J. Zheng, J. Wang, Z. Xiong, Z. Wan, X. Zhan, S. Yang, J. Chen, J. Dai, J. Tang, Adv. Funct. Mater. 2019, 29, 1901768;
J. Zheng, J. Wang, Z. Xiong, Z. Wan, X. Zhan, S. Yang, J. Chen, J. Dai, J. Tang, Adv. Funct. Mater. 2019, 29, 1901768;
Q. Wang, R. Dong, Q. Yang, J. Wang, S. Xu, Y. Cai, Nanoscale Horiz. 2020, 5, 325-330;
M. Wan, T. Li, H. Chen, C. Mao, J. Shen, Angew Chem 2020, 60, 13158-13176.
Y. Hong, N. M. Blackman, N. D. Kopp, A. Sen, D. Velegol, Phys. Rev. Lett. 2007, 99, 178103.
 
L. Baraban, S. M. Harazim, S. Sanchez, O. G. Schmidt, Angew. Chem. 2013, 125, 5662-5666;
Angew. Chem. Int. Ed. 2013, 52, 5552-5556;
R. Dong, J. Li, I. Rozen, B. Ezhilan, T. Xu, C. Christianson, W. Gao, D. Saintillan, B. Ren, J. Wang, Sci. Rep. 2015, 5, 13226;
U. K. Demirok, R. Laocharoensuk, K. M. Manesh, J. Wang, Angew. Chem. 2008, 120, 9489-9491;
Angew. Chem. Int. Ed. 2008, 47, 9349-9351.
S. Balasubramanian, D. Kagan, K. M. Manesh, P. Calvo-Marzal, G. Flechsig, J. Wang, Small 2010, 5,1569-1574.
S. Fournier-Bidoz, A. C. Arsenault, I. Manners, G. A. Ozin, Chem. Commun. 2005,4, 441-443.
P. Calvo-Marzal, K. M. Manesh, D. Kagan, S. Balasubramanian, M. Cardona, G.-U. Flechsig, J. Posner, J. Wang, Chem. Commun. 2009, 30, 4509-4511.
A. A. Solovev, E. J. Smith, C. C. Bof′Bufon, S. Sanchez, O. G. Schmidt, Angew. Chem. Int. Ed. 2011, 50, 10875-10878;
Angew. Chem.Int. Ed. 2011, 123, 11067-11070.
 
Y. Wu, J. Frueh, T. Si, H. Möhwald, Q. He, Phys. Chem. Chem. Phys. 2015, 17, 3281-3286;
Y. Wu, X. Lin, Z. Wu, H. Möhwald, Q. He, ACS Appl. Mater. Interfaces 2014, 6, 10476-10481.
E. B. Steager, M. S. Sakar, D. H. Kim, V. Kumar, G. J. Pappas, M. J. Kim, J Micromech and Microeng 2011, 21, 035001.
W. Wang, W. Duan, Z. Zhang, M. Sun, A. Sen, T. E. Mallouk, Chem. Commun. 2015, 51, 1020-1023.
T. Xu, F. Soto, W. Gao, V. Garcia-Gradilla, J. Li, X. Zhang, J. Wang, J. Am. Chem. Soc. 2014, 136, 8552-8555.
G. Zhao, B. Khezri, S. Sanchez, O. G. Schmidt, R. D. Webster, M. Pumera, Chem. Commun. 2013, 49, 9125-9127.
G. Zhao, M. Pumera, Langmuir 2013, 29, 7411-7415.
W. Wang, T.-Y. Chiang, D. Velegol, T. E. Mallouk, J. Am. Chem. Soc. 2013, 135, 10557-10565.
 
B. Chen, L. Liu, K. Liu, F. Tong, S. Wang, D. Fu, J. Gao, J. Jiang, J. Ou, Y. Ye, Adv. Funct. Mater. 2021, 31, 2008667;
B. Chen, M. Ding, H. Tan, S. Wang, L. Liu, F. Wang, H. Tian, J. Gao, Y. Ye, D. Fu, Appl Mater Today 2022, 27, 101455.
T. Petit, L. Zhang, K. E. Peyer, B. E. Kratochvil, B. J. Nelson, Nano Lett. 2012, 12, 156-160.
W. Gao, D. Kagan, O. S. Pak, C. Clawson, S. Campuzano, E. Chuluun-Erdene, E. Shipton, E. E. Fullerton, L. Zhang, E. Lauga, Small 2012, 8, 460-467.
S. Ahmed, W. Wang, L. O. Mair, R. D. Fraleigh, S. Li, L. A. Castro, M. Hoyos, T. J. Huang, T. E. Mallouk, Langmuir 2013, 29, 16113-16118.
V. Garcia-Gradilla, S. Sattayasamitsathit, F. Soto, F. Kuralay, C. Yardımcı, D. Wiitala, M. Galarnyk, J. Wang, Small 2014, 10, 4154-4159.
Z. Wu, T. Li, W. Gao, T. Xu, B. Jurado-Sánchez, J. Li, W. Gao, Q. He, L. Zhang, J. Wang, Adv. Funct. Mater. 2015, 25, 3881-3887.
X. Z. Chen, M. Hoop, N. Shamsudhin, T. Huang, B. Özkale, Q. Li, E. Siringil, F. Mushtaq, L. Di Tizio, B. J. Nelson, Adv. Mater. 2017, 29, 1605458.
D. Kagan, R. Laocharoensuk, M. Zimmerman, C. Clawson, S. Balasubramanian, D. Kang, D. Bishop, S. Sattayasamitsathit, L. Zhang, J. Wang, Small 2010, 6, 2741-2747.
B. Esteban-Fernández de Ávila, C. Angell, F. Soto, M. A. Lopez-Ramirez, D. F. Báez, S. Xie, J. Wang, Y. Chen, ACS Nano 2016, 10, 4997-5005.
D. Fan, Z. Yin, R. Cheong, F. Q. Zhu, R. C. Cammarata, C. Chien, A. Levchenko, Nat. Nanotechnol. 2010, 5, 545-551.
 
J. Li, B. E.-F. de Ávila, W. Gao, L. Zhang, J. Wang, Science Robotics 2017, 2;
R. Misra, S. Acharya, S. K. Sahoo, Drug Discovery Today 2010, 15, 842-850;
S. Friberg, A. M. Nyström, Future Oncol. 2015, 11, 1961-1975;
A. Schroeder, D. A. Heller, M. M. Winslow, J. E. Dahlman, G. W. Pratt, R. Langer, T. Jacks, D. G. Anderson, Nat. Rev. Cancer 2012, 12, 39-50.
S. J. Ebbens, J. R. Howse, Langmuir 2011, 27, 12293-12296.
A. A. Solovev, W. Xi, D. H. Gracias, S. M. Harazim, C. Deneke, S. Sanchez, O. G. Schmidt, ACS Nano 2012, 6, 1751-1756.
F. Kuralay, S. Sattayasamitsathit, W. Gao, A. Uygun, A. Katzenberg, J. Wang, J. Am. Chem. Soc. 2012, 134, 15217-15220.
 
M. Hansen-Bruhn, B. E-F. Ávila, M. Beltrán-Gastélum, J. Zhao, D. E. Ramírez-Herrera, P. Angsantikul, K. Vesterager Gothelf, L. Zhang, J. Wang, Angew. Chem. Int. Ed. 2018, 57, 2657-2661;
B. E.-F. Ávila, C. Angell, F. Soto, M. A. Lopez-Ramirez, D. F. Báez, S. Xie, J. Wang, Y. Chen, ACS Nano 2016, 10, 4997-5005.
S. Sundararajan, P. E. Lammert, A. W. Zudans, V. H. Crespi, A. Sen, Nano Lett. 2008, 8, 1271-1276.
Z. Wu, Y. Wu, W. He, X. Lin, J. Sun, Q. He, Angew. Chem. Int. Ed. 2013, 52, 7000-7003;
Angew. Chem. Int. Ed. 2013, 125, 7138-7141.
X. Zhang, Y. Li, X. Chen, X. Wang, X. Xu, Q. Liang, J. Hu, X. Jing, Biomaterials 2005, 26, 2121-2128.
 
K.-K. Chao, C.-C. Chao, W.-L. Chao, J Microbiol Immunol 2003, 36, 288-293;
H. Abriouel, N. B. Omar, R. L. López, M. Martínez-Cañamero, S. Keleke, A. Gálvez, Int. J. Food Microbiol. 2006, 111, 228-233.
M.-t. Bao, L.-n. Wang, P.-y. Sun, L.-x. Cao, J. Zou, Y.-m. Li, Mar. Pollut. Bull. 2012, 64, 1177-1185.
Y. S. Jeon, H. M. Shin, Y. J. Kim, D. Y. Nam, B. C. Park, E. Yoo, H.-R. Kim, Y. K. Kim, ACS Appl. Mater. Inter 2019, 11, 23901-23908.
L. Ming, T. Zentgraf, Y. Liu, G. Bartal, Z. Xiang, in Conference on Lasers and Electro-Optics 2010, OSA Technical Digest (CD) (Optica Publishing Group, 2010), paper QPDA11.
M. Lard, L. ten Siethoff, J. Generosi, M. Persson, H. Linke, A. Månsson, IEEE Trans. Nucl. Sci. 2015, 14, 289-297
A. Gowri, V. V. R. Sai, Proc. SPIE 10231, Optical Sensors 2017, 1023113 .
D. Voccia, I. Palchetti, J Nanosci Nanotechno 2015, 15, 3320.
J. Kim, M. Mauk, D. Chen, X. Qiu, J. Kim, B. Gale, H. H. Bau, Analyst 2010, 135, 2408-2414.
K.Takahashi, Takasago (JP), S. Miyamoto, Takasago (JP );Takaaki Jikihara, Takasago (JP ); J.Tomono, Takasago (JP)K. Patent No.: US 9,920,356 B2, 2018.
K. Saša, Ž. Frane, K. Ratko, Coll Antropol. 2006, 30, 4, 845-851.
Yaojuan, Hu, Hua, Zhang, Ping, Wu, Hui, Zhou, Chenxin, Cai, Phy Chem Cheml Phy 2011.
S. Sundararajan, S. Sengupta, M. E. Ibele, A. Sen, Small 2010, 6, 1479-1482.
J. Li, T. Li, T. Xu, M. Kiristi, W. Liu, Z. Wu, J. Wang, Nano Lett. 2015, 15, 4814-4821.
Y. Jiang, X. Li, B. Liu, J. Yi, Y. Fang, F. Shi, X. Gao, E. Sudzilovsky, R. Parameswaran, K. Koehler, Nat Biomed Eng 2008, 2, 508-521.
T. Cohen-Karni, B. P. Timko, L. E. Weiss, C. M. Lieber, Proc. Natl. Acad. Sci. USA 2009, 106, 7309-7313.
Y. Jiang, J. L. Carvalho-De-Souza, R. Wong, Z. Luo, D. Isheim, X. Zuo, A. W. Nicholls, I. W. Jung, J. Yue, D. J. Liu, Nat Mater. 2016, 15, 1023-1030.
M. Falkenmark, C. Widstrand, Population bulletin 1992, 47, 1-36.
P. G. Tratnyek, R. L. Johnson, Nano Today 2006, 1, 44-48.
 
S. Sengupta, M. E. Ibele, A. Sen, Angew. Chem. Int. Ed. 2012, 51, 8434-8445;
J. Wang, K. M. Manesh, Small 2010, 6, 338-345;
E. Karshalev, B. E.-F. Ávila, J. Wang, J. Am. Chem. Soc. 2018, 140, 3810-3820.
J. Orozco, B. Jurado-Sánchez, G. Wagner, W. Gao, R. Vazquez-Duhalt, S. Sattayasamitsathit, M. Galarnyk, A. Cortés, D. Saintillan, J. Wang, Langmuir 2014, 30, 5082.
 
S. Min, X. Tang, Y. Zhang, W. Li, Front Ecol Environ. 2006, 4, 353-361.
W. F. Serat, E. B.Jr., P. K. Mueller, Atmos Environ. 1967, 1, 21-32.
W. A. Jury, D. D. Focht, W. J. Farmer, J. Environ. Qual. 1987, 16, 422.
G. Mcgreevy, Arch. Meteorol. Geophys. Bioklimatol. Ser. A 1964, 14, 149-175.
D. J. Lapworth, N. Baran, M. E. Stuart, R. S. Ward, 2012, 13, 16173-16181.
L. Soler, V. Magdanz, V. M. Fomin, S. Sanchez, O. G. Schmidt, ACS Nano 2013, 7, 9611-9620.
D. Vilela, J. Parmar, Y. Zeng, Y. Zhao, S. Sánchez, Nano Lett. 2016, 16, 2860-2866.
C. Si-Li, W. Xiao-Jun, G. U. Xiao-Yang, J. Lei, Environ Sci Technol. 2008, 162, 1006-1011.
D. Dey, N. C. Murmu, P. Banerjee, RSC Adv. 2019, 9, 7469-7478.
W. Gao, X. Feng, A. Pei, Y. Gu, J. Li, J. Wang, Nanoscale. 2013, 5, 4696.
A. Kunz, S. C. Reiff, J. Appl. Phys. 2008, 103, 1688.
D. Kagan, P. Calvo-Marzal, S. Balasubramanian, S. Sattayasamitsathit, K. M. Manesh, G. U. Flechsig, J. Wang, J. Am. Chem. Soc. 2009, 131, 12082-12083.
J. Orozco, V. García-Gradilla, M. D. Agostino, W. Gao, A. Cortés, J. Wang, ACS Nano. 2013, 7, 818.
Z. Li, C. Liu, V. Sarpong, Z. Gu, Biosens. Bioelectron. 2019, 126, 632-639.

Auteurs

Dashuang Wang (D)

College of Materials Science and Engineering, Chongqing University, Chongqing, 400044, China.

Aiman Mukhtar (A)

The State Key Laboratory of Refractories and Metallurgy, International Research Institute for Steel Technology, Collaborative Innovation Center for Advanced Steels, Wuhan University of Science and Technology, Wuhan, 430081, China.

Muhammad Humayun (M)

School of Optical and Electronic Information, Wuhan National Laboratory for Optoelectronics, Engineering Research Center for Functional Ceramics of the Ministry of Education, Huazhong University of Science and Technology, Wuhan, 430074, PR China.

Kaiming Wu (K)

The State Key Laboratory of Refractories and Metallurgy, International Research Institute for Steel Technology, Collaborative Innovation Center for Advanced Steels, Wuhan University of Science and Technology, Wuhan, 430081, China.

Zhilan Du (Z)

College of Materials Science and Engineering, Chongqing University, Chongqing, 400044, China.

Shushen Wang (S)

The State Key Laboratory of Refractories and Metallurgy, International Research Institute for Steel Technology, Collaborative Innovation Center for Advanced Steels, Wuhan University of Science and Technology, Wuhan, 430081, China.

Yuxin Zhang (Y)

College of Materials Science and Engineering, Chongqing University, Chongqing, 400044, China.

Articles similaires

Vancomycin Polyesters Anti-Bacterial Agents Models, Theoretical Drug Liberation
Ethiopia Conservation of Natural Resources Environmental Monitoring Soil Soil Erosion
Cities China Government Conservation of Natural Resources Humans
1.00
Animals Fishes Biodiversity Conservation of Natural Resources Ecosystem

Classifications MeSH