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 TRƯỜNG ĐẠI HỌC BÁCH KHOA HÀ NỘI BÙI THỊ HOÀN NGHIÊN CỨU CHẾ TẠO CHẤM NANO CARBON TỪ NƯỚC CHANH VÀ ỨNG DỤNG LUẬN ÁN TIẾN SĨ KHOA HỌC VẬT LIỆU  TRƯỜNG ĐẠI HỌC BÁCH KHOA HÀ NỘI BÙI THỊ HOÀN NGHIÊN CỨU CHẾ TẠO CHẤM NANO CARBON TỪ NƯỚC CHANH VÀ ỨNG DỤNG Ngành: Khoa học Vật liệu Mã số: 9440122 LUẬN ÁN TIẾN SĨ KHOA HỌC VẬT LIỆU NGƯỜI HƯỚNG DẪN KHOA HỌC: TS Phạm Hùng Vượng TS Nguyễn Thị Khôi                    giá,   TM t  TS Phạm Hùng Vượng Bùi Thị Hoàn i                          TS                    o   khoa                   ,          Bùi Thị Hoàn ii MỤC LỤC Trang  .i  ii  iii   vii  ix  .xii  1     án   C NANO CARBON 1.1 Gii thiu .6 a chm nano carbon .7 1.2.1 Hình thái, cu trúc ca vt liu 1.2.2 Ph hun t tia X 1.2.3 Ph hng ngoi bii Fourier 1.2.4 Nhiu x tia X 1.2.5 Ph tán x Raman 10  11  11  .12  12  13 nano carbon 14 1.4.1 .14  14 iii 95 44 De B, and Karak N,(2013)," A green and facile approach for the synthesis of water soluble fluorescent carbon dots from banana juice", RSC Adv., Vol 3, pp 8286-8290 45 Xu, Y., Tang, C J., Huang, H., Sun, C Q., Zhang, Y K., Ya, Q F.,Wang, A J.,(2014)," Green Synthesis of Fluorescent Carbon Quantum Dots for Detection of Hg 2+", Chin J Anal Chem, Vol 42(9), pp 12521258 46 Jiao Y, Gong X, Han H, Gao Y, Lu W, Liu Y, Xian M, Shuang S, Dong C,(2018)," Facile synthesis of orange fl uorescence carbo n dots with excitation independent emission for pH sensing and cellular imaging", Analytica Chimica Acta, Vol 1042, pp 125-132 47 Wang R, Wang X, Sun Y,(2017)," Aminophenol-based carbon dots with dual wavelength fluorescence emission for determination of heparin", Microchim Acta, Vol 184, pp 187193 48 Nie H, Li M J, Li Q S, Liang S J, Tan Y Y, Sheng L, Shi W, Zhang S X (2014)," Carbon dots with continuously tunable full-color emission and their application in ratiometric pH sensing", Chem Mater , Vol 26, pp 31043112 49 Grabolle M, Spieles M, Lesnyak V, Gaponik N, Eychmuăller A, and ReschGenger U,(2009)," Determination of the Fluorescence Quantum Yield of Quantum Dots: Suitable Procedures and Achievable Uncertainties", Anal Chem., Vol 81, pp 62856294 50 Wu Z L, Zhang P, Gao M X, Liu C F, Wang W, Lenga F and Huang C Z,(2013)," One-pot hydrothermal synthesis of highly luminescent nitrogendoped amphoteric carbon dots for bioimaging from Bombyx mori silk – natural proteins", J Mater Chem B, Vol 1, pp 28682873 51 Liu W, Diao H, Chang H, Wang H, Li T, Wei W,(2017)," Green synthesis of carbon dots from rose-heart radish and application for Fe 3+ detection and cell imaging", Sensors and Actuators B, Vol 241, pp 190198 52 Lu W, Qin X, Asiri A M, Al-Youbi A O, Sun X,(2013)," Green synthesis of carbon nanodots as an effective fluorescent probe for sensitive and selective detection of mercury(II) ions", J Nanopart Res, Vol 15, pp 1344 96 53 Lu W B, Qin X Y, Liu S, Chang G H, Zhang Y W, Luo Y L, Asiri A M, AlYoubi A O and Sun X P,(2012)," Economical, green synthesis of fluorescent carbon nanoparticles and their use as probes for sensitive and selective detection of mercury(II) ions", Anal Chem., Vol 84, pp 53515357 54 Adedokun O, Roy A, Awodugbab A O and Devia P S,(2017)," Fluorescent carbon nanoparticles from Citrus sinensis as efficient sorbents for pollutant dyes", Luminescence Vol 32(2), pp 62-70 55 " Tổng hợp chấm lượng tử cacbon từ thực phẩm", K  56            " Tổng hợp polymer nano carbon từ thực phẩm ứng dụng việc phát ion Pb (II)",           189(13), pp 45 - 51 57 Peng J, Gao W, Gupta BK et al (2012)," Graphene quantum dots derived from carbon fibers.", Nano Lett Vol 12, pp 844849 58 Hu S L, Niu K Y, Sun J, Yang J, Zhaoa N Q and Du X M,(2009), " One-step synthesis of fluorescent carbon nanoparticles by laser irradiation", J Mater Chem., Vol 19, pp 484488 59 Liu, H.; Ye, T.; Mao, C ,(2007)," Fluorescent Carbon Nanoparticles Derived from Candle Soot", Angew Chem., Int Ed., Vol 46, pp 6473-6475 60 Guo Y M, Wang Z, Shao H W, Jiang X Y,(2013)," Hydrothermal synthesis of highly fluorescent carbon nanoparticles from sodium citrate and their use for the detection of mercury ions", Carbon, Vol 52, pp 583-589 61 Hu S, Trinchi A, Atkin P, Cole I,(2015)," Tunable photoluminescence across the entire visible spectrum from carbon dots excited by white light", Angew Chem Int Ed Engl, Vol 54, pp 2970-2974 62 Cao L, Meziani M, Sahu S, Sun Y,(2013)," Photoluminescence Properties of Graphene versus Other Carbon Nanomaterials.", Acc.Chem Res., Vol 46,  97 63 Zhu S, Song Y, Zhao X, Shao J, Zhang J, and Yang B,(2015), " The photoluminescence mechanism in carbon dots (graphene quantum dots, carbon nanodots, and polymer dots): Current state and future perspective", Nano Res , Vol 8(2), pp 355-381 64 Siddique A B, Pramanick A K, Chatterjee S & Ray M,(2018)," Amorphous Carbon Dots and their Remarkable Ability to Detect 2,4,6-Trinitrophenol", Scientific Reports, Vol 8, pp 9770 65 Yang K, Liu M, Wang Y, Wang S, Miao H, Yang L, Yang X,(2017)," Carbon dots derived from fungus for sensing hyaluronic acid and hyaluronidase", Sensors and Actuators B, Vol 251, pp 503508 66 Bao R, Chen Z, Zhao Z, Sun X, Zhang J, Hou L, and Yuan C,(2018)," Green and Facile Synthesis of Nitrogen and Phosphorus Co-Doped Carbon Quantum Dots towards Fluorescent Ink and Sensing Applications", Nanomaterials Vol 8, pp 368 67 Sun X, He J, Yang S, Zheng M, Wang Y, Ma S, Zheng H,(2017), " Green synthesis of carbon dots originated from Lycii Fructus for effective fluorescent sensing of ferric ion and multicolor cell imaging", Journal of Photochemistry & Photobiology, B: Biology, Vol 175, pp 219225 68 Chen X, Zhang W, Wang Q, Fan J,(2014)," C8-structured carbon quantum dots: Synthesis, blue and green double luminescence, and origins of surface defects", Carbon, Vol 79, pp 165  173 69 Deng J, Lu Q, Mi N, Li H, Liu M, Xu M, Tan L, Xie Q, Zhang Y, Yao S,(2014)," Electrochemical Synthesis of Carbon Nanodots Directly from Alcohols", Chem A Eur J., Vol 20(17), pp 4993-4999 70 Long, Y., Zhou, C., Zhang, Z., Tian, Z., Bao, L., et al,(2012)," Shifting and Non-Shifting Fluorescence Emitted by Carbon Nanodots", J Mater Chem.,  71 Hsu, P C., Shih, Z Y., Lee, C H., and Chang, H T.,(2012)," Synthesis and analytical applications of photoluminescent carbon nanodots", Green Chem , Vol 14, pp 917-920 98 72 Bandi R, Gangapuram B R, Dadigala R, Eslavath R,Singh S S and Guttena V, (2016), " Facile and green synthesis of fluorescent carbon dots from onion waste and their potential applications as sensor and multicolour imaging agents", RSC Adv., Vol 6, pp 2863328639 73 Tripathi K M, Tran T S, Tran T T, Losic D, Kim T Y,(2017)," Water Soluble Fluorescent Carbon Nanodots from Biosource for Cells Imaging", Journal of Nanomaterials, Vol 22, pp 1-10 74 Tang L B, Ji R B, Cao X K, Lin J Y, Jiang H X, Li X M, Teng K S, Luk C M, Zeng S J, Hao J H, Lau S P, (2012)," Deep ultraviolet photoluminescence of water-soluble self-passivated graphene quantum dots.", ACS Nano, Vol 6, pp 51025110 75 Demchenko A P, and Dekaliuk M O,(2013)," №vel fluorescent carbonic nanomaterials for sensing and imaging", Methods Appl Fluoresc., Vol 1, pp 042001 76 Hsu P C, Chen P C, Ou C M, Changa H Y and Chang H T,(2013), " Extremely high inhibition activity of photoluminescent carbon nanodots toward cancer cells", J Mater Chem B, Vol 1, pp 1774-1781 77 Qin X Y, Lu W B, Asiri A M, Al-Youbi A O and Sun X P,(2013)," Green, low-cost synthesis of photoluminescent carbon dots by hydrothermal treatment of willow bark and their application as an effective photocatalyst for fabricating Au nanoparticles–reduced graphene oxide nanocomposites for glucose detection", Catal Sci.Technol., Vol 3(4), pp 1027-1035 78 Liu S , Tian J , Wang L, Zhang Y, Qin X, Luo Y, Asiri A M, Al-Youbi A O, and Sun X,(2012)," Hydrothermal Treatment of Grass: A Low-Cost, Green Route to Nitrogen-Doped, Carbon-Rich, Photoluminescent Polymer Nanodots as an Effective Fluorescent Sensing Platform for Label-Free Detection of Cu(II) Ions", Adv Mater., Vol 24, pp 20372041 79 Kasibabu B S B, D'souza S L, Jha S, Singhal R K, Basuc H and Kailasa S K, (2015)," One-step synthesis of fluorescent carbon dots for imaging bacterial and fungal cells", Anal Methods, Vol 7, pp 23732378 99 80 Xu H, Yang X, Li G, Zhao C, Liao X,(2015)," Green Synthesis of Fluorescent Carbon Dots for Selective Detection of Tartrazine in Food Samples", J Agric Food Chem, Vol 63(30), pp 67076714 81 Huang H, Xu Y, Tang C J, Chen J R, Wang A J and Feng J J,(2014)," Facile and green synthesis of photoluminescent carbon nanoparticles for cellular imaging", New J Chem., Vol 38(2), pp 784-789 82 Mehta V N, Jha S and Kailasa S K (2014)," One-pot green synthesis of carbon dots by using Saccharum officinarum juice for fluorescent imaging of bacteria (Escherichia coli) and yeast (Saccharomyces cerevisiae) cells", Mater Sci Eng., Vol 38, pp 2027 83 Wolkin M V, Jorne J, Fauchet P M, Allan G, Delerue C,(1999)," Electronic states and luminescence in porous silicon quantum dots: the role of oxygen", Phys Rev Lett, Vol 82(1), pp 197200 84 Wang, L., Zhu, S J., Wang, H Y., Qu, S N., Zhang, Y L., Zhang, J H., Chen, Q D., Xu, H L., Han, W and Yang, B., et al ,(2014)," Common origin of green luminescence in carbon nanodots and graphene quantum dots", ACS Nano, Vol 8, pp 25412547 85 Zhu S, Zhang J, Tang S, Qiao C, Wang L, Wang H, Liu X, Li B, Li Y, Yu W, Wang X, Sun H, Yang B.,(2012)," Surface Chemistry Routes to Modulate the Photoluminescence of Graphene Quantum Dots: From Fluorescence Mechanism to Up ‐Conversion Bioimaging Applications", Adv Funct Mater., Vol 22(22), pp 47324740 86 Bao L, Zhang Z L, Tian Z Q, Zhang L, Liu C, Lin Y, Qi B, Pang D W,(2011)," Electrochemical Tuning of Luminescent Carbon Nanodots: From Preparation to Luminescence Mechanism", Adv Mater., Vol 23(48), pp 58015806 87 Albretsen, Jay,(2006)," The toxicity of iron, an essential element", Veterinary Medicine, Vol 101, pp 82-90 88 Wang Y, Chang Q, Hu S,(2017)," Carbon dots with concentration-tunable multicolored photoluminescence for simultaneous detection of Fe3+ and Cu2+ ions", Sensors and Actuators B, Vol 253, pp 928933 100 89 Molybdenum in Drinking-water, 2011, World Health Organization 90 Sachdev A and Gopinath,(2015)," Green synthesis of multifunctional carbon dots from coriander leaves and their potential application as antioxidants, sensors and bioimaging agents", Analyst, Vol 140, pp 4260-4269 91 Tucker D, Lu Y, Zhang Q,(2018)," From Mitochondrial Function to Neuroprotection—an Emerging Role for Methylene Blue", Molecular Neurobiology, Vol 55(6), pp 51375153 92 Adedokun O, Roy A, Awodugbab A O and Devi P S,(2017)," uorescent carbon nanoparticles from Citrus sinensis as efficient sorbents for pollutant dyes", Luminescence, Vol 32, pp 6270 93 Chen S, Jin L, Chen X,(2011)," The effect and prediction of temperature on adsorption capability of coal/CH4", Procedia Engineering, Vol 26, pp 126  131 94 Dakhil, Ihsan Habib,(2013)," Adsorption of Methylene Blue Dye from Wastewater By Spent Tea Leaves", Journal of Kerbala University, Vol 11(3), pp 5-14 95 Singh H, Samiksha, Roohi S,(2013)," Removal of basic dyes from aqueous solutions using mustard waste ash and buffalo dung ash", International Journal of Environmental Sciences, Vol 3(5), pp 1711-1725 96 Xiaoyun He, Keith B Male, Pavel N Nesterenko, Dermot Brabazon, Brett Paull, and John H.T Luong,(2013)," Adsorption and Desorption of Methylene Blue on Porous Carbon Monoliths and Nanocrystalline Cellulose", ACS Appl Mater Interfaces, Vol 5(17), pp 87968804 97 W, Gaikwad R,(2011)," Mass transfer studies on the removal of copper from wastewater using activated carbon derived from coconut shell", Journal of the University of Chemical Technology and Metallurgy, Vol 46(1), pp 53-56 101 DANH MỤC CƠNG TRÌNH ĐÃ CÔNG BỐ CỦA LUẬN ÁN Bui Thi Hoan, Pham Van Huan, Hoang Nhu Van, Duy Hung Nguyen, Phuong Dinh Tam, Khoi Thi Nguyen, Vuong‐Hung Pham, (2018), Lumine scence of lemon‐ derived carbon quantum dot and its potential application in luminescent probe for detection of Mo 6+ ionsLuminescence, Vol.33, pp.545-551 Bui Thi Hoan, Phuong Dinh Tam and Vuong-Hung Pham, (2019),        Dots from , Journal of nanotechnology, Vol.2019, ID 2852816 Bui Thi Hoan, Phuong Dinh Tam and Vuong-Hung Pham, (2019), Green Emission Carbon Quantum Dots from Lemon Juice for Selective Detection of Fe 3+ Ions VNU  Journal of Science: Mathematics and Physics Vol.35, №.1, pp 64-71 Bui Thi Hoan, Tran Thi Thanh, Phuong Dinh Tam, Nguyen Ngoc Trung, Sunglae Cho, Vuong-A green luminescence of lemon derived carbon quantum dots and their applications for sensing of V 5+ ions, Materials Science and Engineering B, Vol 351, pp.114455 Bui Thi Hoan, Nguyen Truong Giang, Vuong-Hung Pham, (2019), Onestep synthesis of fluorescent carbon dots from lemon juice for adsorbing methylene blue, Proceedings the 14th Asian Biohydrogen, Biorefinery and Bioprocess Symposium - ABBS 2019        ISBN: 9786049508639 102 ...  TRƯỜNG ĐẠI HỌC BÁCH KHOA HÀ NỘI BÙI THỊ HOÀN NGHIÊN CỨU CHẾ TẠO CHẤM NANO CARBON TỪ NƯỚC CHANH VÀ ỨNG DỤNG Ngành: Khoa học Vật liệu Mã số: 9440122 LUẬN ÁN TIẾN SĨ KHOA HỌC... tiếng Anh Tên tiếng Việt QDs Quantum dots  Cdots Carbon nanodots ? ?nano carbon Carbon nanodots derived from ? ?nano  lemon juice  LCdots vii... tia X chấm nano carbon chế tạo từ nước cam[1] 1.2.5 Phổ tán xạ Raman   Raman     ID/I G   carbon

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