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74. Jiménez-Soto JM, Moliner-Martínez Y, Cárdenas S, Valcárcel M (2010) Evaluation of the
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76. Isobe H, Tanaka T, Maeda R, Noiri E, Solin N, Yudasaka M, Iijima S, Nakamura E
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66. Khan MS, Pandey S, Talib A, Bhaisare ML, Wu HF (2015) Controlled delivery of dopamine
hydrochloride using surface-modified carbon dots for neuro diseases. Colloids Surf B 134:140–
146
67. Wang Q, Huang X, Long Y, Wang X, Rui Zhu HZ, Liang L, Teng P, Zheng H (2013) Hollow
luminescent carbon dots for drug delivery. Carbon 59:192–199
68. Zhang M, Wang W, Cui Y, Zhou N, Shen J (2017) Near-infrared light-triggered phototherapy, in
combination with chemotherapy using magneto fluorescent carbon quantum dots for effective
cancer-treating. Carbon 118:752–764
69. Zhou J, Deng W, Wang Y, Cao X, Chen J, Wang Q, Xu W, Du P, Chen QYJ, Spector M, Yu J,
Xu X (2016) Cationic carbon quantum dots derived from alginate for gene delivery: one-step
synthesis and cellular uptake. Acta Biomater 42:209–219
70. Cao X, Wang J, Deng W, Chen J, Wang Y, Zhou J, Du P, Xu W, Wang Q, Yu Q, Spector M, Yu J,
Xu X (2018) Photoluminescent cationic carbon dots as efficient non-viral delivery of plasmid
SOX9 and chondrogenesis of fibroblasts. Sci Rep 8:7057
71. Gao N, Yang W, Nie H, Gong Y, Jing J, Gao L, Zhang X (2017) Turn-on theranostic fluorescent
nanoprobe by electrostatic self-assembly of carbon dots with doxorubicin for targeted cancer
cell imaging, in vivo hyaluronidase analysis, and targeted drug delivery. Biosens Bioelectron
96:300–307
72. Yang ST, Wang X, Wang H, Lu F, Luo PG, Cao L, Meziani MJ, Liu JH, Liu Y, Chen M, Huang
Y, Sun YP (2009) Carbon dots as non-toxic and high-performance fluorescence imaging agents.
J Phys Chem C 113:18110–18114
73. Xiao J, Liu P, Wang CX, Yang GW (2017) External field-assisted laser ablation in liquid:
an efficient strategy for nanocrystal synthesis and nanostructure assembly. Prog Mater Sci
87:140–220
74. Jiménez-Soto JM, Moliner-Martínez Y, Cárdenas S, Valcárcel M (2010) Evaluation of the
performance of single-walled carbon nanohorns in capillary electrophoresis. Electrophoresis
31:1681–1688
75. Ajima K, Yudasaka M, Murakami T, Maigné A, Shiba K, Iijima S (2005) Carbon nanohorns
as anticancer drug carriers. Mol Pharm 2:475–480
76. Isobe H, Tanaka T, Maeda R, Noiri E, Solin N, Yudasaka M, Iijima S, Nakamura E
(2006) Preparation, purification, characterization, and cytotoxicity assessment of water-soluble,
transition-metal-free carbon nanotube aggregates. Angew Chem Int Ed 45:6676–6680
