参考文献/References:
[1] BAKER S N,BAKER G A. Luminescent carbon nanodots: emergent nanolights[J]. Angewandte Chemie International Edition,2010,49(38):6726-6744.
[2]WANG C,SUN D,ZHUO K,et al. Simple and green synthesis of nitrogen-, sulfur-, and phosphorus-co-doped carbon dots with tunable luminescence properties and sensing application[J]. RSC Advances,2014,4(96):54060-54065.
[3]HUANG H,LYU J J,ZHOU D L,et al. One-pot green synthesis of nitrogen-doped carbon nanoparticles as fluorescent probes for mercury ions[J]. RSC Advances,2013,3(44):21691-21696.
[4]GUO Y,WANG Z,SHAO H,et al. Hydrothermal synthesis of highly fluorescent carbon nanoparticles from sodium citrate and their use for the detection of mercury ions[J]. Carbon,2013,52(2):583-589.
[5]HUANG P,LIN J,WANG X,et al. Light-triggered theranostics based on photosensitizer-conjugated carbon dots for simultaneous enhanced-fluorescence imaging and photodynamic therapy[J]. Advanced Materials,2012,24(37):5104-5110.
[6]冯昌,邓晓燕,倪晓晓,等. 碳点修饰多孔ZnO纳米棒增强光催化性能[J]. 物理化学学报,2015,31(12):2349-2357.
[7]ZHU S,MENG Q,WANG L,et al. Highly photoluminescent carbon dots for multicolor patterning, sensors, and bioimaging[J]. Angewandte Chemie International Edition,2013,52(14):3953-3957.
[8]GAO S Y,CHEN Y L,FAN H,et al. A green one-arrow-two-hawks strategy for nitrogen-doped carbon dots as fluorescent ink and oxygen reduction electrocatalysts[J]. Journal of Materials Chemistry A,2014,2(18):6320-6325.
[9]QU S,WANG X,LU Q,et al. A biocompatible fluorescent ink based on water-soluble luminescent carbon nanodots[J]. Angewandte Chemie,2012,124(49):12381-12384.
[10]HSU P C,CHEN P C,OU C M,et al. Extremely high inhibition activity of photoluminescent carbon nanodots toward cancer cells[J]. Journal of Materials Chemistry B,2013,1(13):1774-1781.
[11]YANG S T,CAO L,LUO P G,et al. Carbon dots for optical imaging in vivo[J]. Journal of the American Chemical Society,2009,131(32):11308-11309.
[12]MEHTA V N,JHA S,KAILASA S K. One-pot green synthesis of carbon dots by using saccharum officinarum juice for fluorescent imaging of bacteria( escherichia coli )and yeast( saccharomyces cerevisiae )cells[J]. Materials Science & Engineering C,2014,38(9):20-27.
[13]YUAN M,ZHONG R B,GAO H Y,et al. One-step, green, and economic synthesis of water-soluble photoluminescent carbon dots by hydrothermal treatment of wheat straw, and their bio-applications in labeling, imaging, and sensing[J]. Applied Surface Science,2015,355:1136-1144.
[14]ZHU C,ZHAI J,DONG S. Bifunctional fluorescent carbon nanodots: green synthesis via soy milk and application as metal-free electrocatalysts for oxygen reduction[J]. Chemical Communications,2012,48(75):9367-9369.
[15]LU W B,QIN X Y,LIU S,et al. Economical, green synthesis of fluorescent carbon nanoparticles and their use as probes for sensitive and selective detection of mercury(ii)ions[J]. Analytical Chemistry,2012,84(12):5351-5357.
[16]SAHU S,BEHERA B,MAITI T K,et al. Simple one-step synthesis of highly luminescent carbon dots from orange juice: Application as excellent bio-imaging agents[J]. Chemical Communications,2012,48(70):8835-8837.
[17]MIAO H,WANG L,ZHUO Y,et al. Label-free fluorimetric detection of cea using carbon dots derived from tomato juice[J]. Biosensors and Bioelectronics,2016,86:83-89.
[18]DE B,KARAK N. A green and facile approach for the synthesis of water soluble fluorescent carbon dots from banana juice[J]. RSC Advances,2013,3(22):8286-8290.
[19]YANG R,GUO X F,JIA L H,et al. Green preparation of carbon dots with mangosteen pulp for the selective detection of Fe3+ ions and cell imaging[J]. Applied Surface Science,2017,423:426-432.
[20]CHATZIMITAKOS T,KASOUNI A,SYGELLOU L,et al. Two of a kind but different: luminescent carbon quantum dots from citrus peels for iron and tartrazine sensing and cell imaging[J]. Talanta,2017,175:305-312.
[21]DANG D K,SUNDARAM C,NGO Y L T,et al. One pot solid-state synthesis of highly fluorescent N and S co-doped carbon dots and its use as fluorescent probe for Ag+ detection in aqueous solution[J]. Sensors and Actuators B: Chemical,2018,255:3284-3291.
[22]WANG L,BI Y,HOU J,et al. Facile, green and clean one-step synthesis of carbon dots from wool: application as a sensor for glyphosate detection based on the inner filter effect[J]. Talanta,2016,160:268-275.
[23]ZHOU L,LIN Y,HUANG Z,et al. Carbon nanodots as fluorescence probes for rapid, sensitive, and label-free detection of Hg2+ and biothiols in complex matrices[J]. Chemical Communications,2012,48(8):1147-1149.
[24]李颖. 荧光碳点的制备与性质研究[D]. 上海:华东师范大学,2017.
[25]曹剑瑜,陈利娟,赵卫芳,等. 牺牲模板法制高比电容的氮修饰石墨烯及其电化学性能研究[J]. 常州大学学报(自然科学版),2015,27(3):56-60.
[26]SUN Y P,ZHOU B,LIN Y,et al. Quantum-sized carbon dots for bright and colorful photoluminescence[J]. Journal of the American Chemical Society,2006,128(24):7756-7757.
[27]孙钰朋,许亮,杨梅,等. 具有pH敏感性的氮、磷、硫共掺杂碳点的制备及其光谱研究[J]. 光散射学报,2015,27(4):336-341.
相似文献/References:
[1]姜 苏,董如林,莫剑臣,等.金红石型TiO2/锐钛矿型TiO2/ SiO2三元复合薄膜的合成[J].常州大学学报(自然科学版),2014,(03):69.[doi:10.3969/j.issn.2095-0411.2014.03.014]
JIANG Su,DONG Ru-lin,MO Jian-chen,et al.Synthesis of Rutile TiO2/ Anatase TiO2 / SiO2
Ternary Composite Films[J].Journal of Changzhou University(Natural Science Edition),2014,(05):69.[doi:10.3969/j.issn.2095-0411.2014.03.014]
[2]王 进,展亮亮,许 娟,等.锂离子电池负极材料SnO2-Gn-C三元复合物的制备及其电化学性能[J].常州大学学报(自然科学版),2013,(04):74.[doi:10.3969/j.issn.2095-0411.2013.04.016]
WANG Jin,ZHAN Liang liang,XU Juan,et al.Preparation of SnO2-Gn-C Ternary Composite and its Electrochemical
Performance as Anode Material of Lithium Ion Batteries[J].Journal of Changzhou University(Natural Science Edition),2013,(05):74.[doi:10.3969/j.issn.2095-0411.2013.04.016]
[3]朱媛媛,曲 婕,袁宁一,等.水热法制备雪花片状TiO2的光电性能[J].常州大学学报(自然科学版),2016,(03):23.[doi:10.3969/j.issn.2095-0411.2016.03.005]
ZHU Yuanyuan,QU Jie,YUAN Ningyi,et al.Photoelectrochemical Properties of Snowflake-TiO2 Prepared by Hydrothermal Method[J].Journal of Changzhou University(Natural Science Edition),2016,(05):23.[doi:10.3969/j.issn.2095-0411.2016.03.005]