无机材料学报 ›› 2019, Vol. 34 ›› Issue (11): 1156-1160.DOI: 10.15541/jim20190031 CSTR: 32189.14.10.15541/jim20190031
收稿日期:2019-01-16
修回日期:2019-04-18
出版日期:2019-11-20
网络出版日期:2019-05-29
作者简介:王君诚(1993-), 男, 硕士研究生. E-mail: wangjuncheng@whut.edu.cn
基金资助:
WANG Jun-Cheng1,YANG Fei-Fei2,GAO Guan-Bin1(
),SUN Tao-Lei1,2(
)
Received:2019-01-16
Revised:2019-04-18
Published:2019-11-20
Online:2019-05-29
Supported by:摘要:
近红外荧光特别是近红外Ⅱ区(1000~1700 nm)荧光在生物体内具有高组织渗透率、高时空分辨率、低背景荧光干扰和低光损伤的特点, 因此发展水溶性与生物相容性良好、量子产率高的长波段近红外荧光探针意义重大。本研究制备了不同荧光发射的Ag掺杂HgS量子点(HgAgS量子点)。在不同pH溶液中制备的HgAgS量子点荧光发射峰位于近红外Ⅱ区, 且呈现规律性变化; 随pH的增大, HgAgS量子点荧光发射峰先红移而后蓝移, 发射波长在pH 6时达到最大1110 nm; 原子吸收光谱表明在不同pH溶液中制备的HgAgS量子点, Ag的掺杂量(Ag/Hg比值)呈现出与荧光发射峰相同的规律性变化, 证明通过pH调控Ag的掺杂量从而调谐荧光发射峰的位置。HgAgS量子点的量子产率随pH先增加后降低, 在pH 7时达到最大13.23%(λem=1100 nm)。细胞毒性实验表明Ag的掺杂量对HgAgS量子点的细胞毒性无明显影响, 在1~50 μg/L浓度范围内均无明显细胞毒性。本研究结果不仅为体内进行近红外荧光成像提供了基础研究数据, 而且为荧光纳米探针的设计与制备提出了新的见解。
中图分类号:
王君诚, 杨菲菲, 高冠斌, 孙涛垒. Ag掺杂HgS量子点: 一种pH调谐的近红外Ⅱ区荧光纳米探针[J]. 无机材料学报, 2019, 34(11): 1156-1160.
WANG Jun-Cheng, YANG Fei-Fei, GAO Guan-Bin, SUN Tao-Lei. Ag doped HgS Quantum Dots: a pH-tunable Near-infrared-Ⅱ Fluorescent Nanoprobe[J]. Journal of Inorganic Materials, 2019, 34(11): 1156-1160.
图1 HgAgS量子点的X射线衍射图谱(a), 透射电子显微镜照片(b), 高分辨透射电镜照片(c)和粒径统计分布图(d)
Fig. 1 XRD pattern (a), TEM image (b), HR-TEM image (c), and size distribution (d) of HgAgS QDs
图2 HgAgS量子点的扫描透射电子显微镜高角环形暗场照片(HAADF) (a)和能谱图(b), 及其Ag(蓝色)、Hg(红色)和S(黄色)三种元素混合(c)和对应的单一元素Ag(d)、Hg(e)和S(f)分布图
Fig. 2 High-angle annular dark field (HAADF), STEM image (a) and EDS (b) of HgAgS QDs; Mixed elements mapping of HgAgS QDs (c) with corresponding single element Ag(blue) (d), Hg(red) (e) and S(yellow) (f) elements distribution
图4 激发波长为400 nm时在不同pH下制备的HgAgS量子点的荧光光谱(a)及其Ag/Hg值变化(彩图见网页)
Fig. 4 Fluorescence (a) and Ag/Hg value (b) of HgAgS QDs with different synthetic pH (Ex=400 nm) (colourful edition is available on website)
图5 HgAgS量子点(pH=6.0制备)在不同时间下对INS-1细胞的细胞活性影响(a)和不同pH条件下制备的HgAgS量子点对PC12细胞的活性影响(b)
Fig. 5 Cell viability of HgAgS QDs prepared at pH 6.0 on INS-1 cells for 24 and 48 h (a), and cell viability of HgAgS QDs prepared at pH=3.0, 5.0, 6.0 and 11.0 on PC12 cells (b). Concentrations of HgAgS QDs were 0, 1, 10, 20 and 50 μg/L
图8 图S3 HgS量子点(黑色曲线)和HgAgS量子点(红色曲线)的全谱(a)、Ag3d(b)、Hg4f(c)和S2p(d)的特征谱
Fig. 8 Fig. S3 Survey spectra (a), Ag3d (b), Hg4f (c) and S2p (d) spectra of HgS QDs (black curves) and HgAgS QDs (red curves)
| [1] | LIU SHI-YU, XIONG HAO, LI RONG-RONG , et al. Activity- based near-infrared fluorogenic probe enables in vitro and in vivo profiling of neutrophil elastase. Analytical Chemistry, 2019,91(6):3877-3884. |
| [2] | NING JING, LIU TAO, DONG PEI-PEI , et al. Molecular design strategy to construct the near-infrared fluorescent probe for selectively sensing human cytochrome P450 2J2. Journal of the American Chemical Society, 2019,141(2):1126-1134. |
| [3] | LIU TZU-MING, CONDE JOAO, LIPINSKI TOMASZ , et al. Revisiting the classification of NIR-absorbing/emitting nanomaterials for in vivo bioapplications. NPG Asia Materials, 2016,8:25. |
| [4] | BHATTARAI DEVAL-PRASAD, TIWARI ARJUN-PRASAD, MAHARJAN BIKENDRA , et al. Sacrificial template-based synthetic approach of polypyrrole hollow fibers for photothermal therapy. Journal of Colloid and Interface Science, 2019,534:447-458. |
| [5] | TIAN YE, RAN RAN, JIAO YUN-FENG , et al. Redox stimuli- responsive hollow mesoporous silica nanocarriers for targeted drug delivery in cancer therapy. Nanoscale Horizons, 2016,1(6):480-487. |
| [6] | LIU YANG, SONG NAN, LI ZHEN-SHENG , et al. Near-infrared nanoparticles based on aza-BDP for photodynamic and photothermal therapy. Dyes and Pigments, 2019,160:71-78. |
| [7] | WANG XUAN, LI ZHONG-LIANG, NAN NAN , et al. A simple system of swept source optical coherence tomography for a large imaging depth range. Optics Communications, 2019,431:51-57. |
| [8] | HANKIEWICZ J H, STOLL J A, STROUD J , et al. Nano-sized ferrite particles for magnetic resonance imaging thermometry. Journal of Magnetism and Magnetic Materials, 2019,469:550-557. |
| [9] | LAN XIANG, WANG QIANG-BIN . Optically active AuNR@Ag core-shell nanoparticles and hierarchical assembly via DNA-mediated surface chemistry. ACS Applied Materials & Interfaces, 2016,8(50):34598-34602. |
| [10] | KONG YI-FEI, CHEN JUN, FANG HONG-WEI , et al. Highly fluorescent ribonuclease-A-encapsulated lead sulfide quantum dots for ultrasensitive fluorescence in vivo imaging in the second near- infrared window. Chemistry of Materials, 2016,28(9):3041-3050. |
| [11] | LIN SHU, FENG YU, WEN XIAO-MING , et al. Theoretical and experimental investigation of the electronic structure and quantum confinement of wet-chemistry synthesized Ag2S nanocrystals. Journal of Physical Chemistry C, 2014,119(1):867-872. |
| [12] | YANG JING, HU YAO-PING, TAN JIANG-WEI , et al. Ultra- bright near-infrared-emitting HgS/ZnS core/shell nanocrystals for in vitro and in vivo imaging. Journal of Materials Chemistry B, 2015,3(34):6928-6938. |
| [13] | ZHANG MING-XI, YUE JING-YING, CUI RAN , et al. Bright quantum dots emitting at similar to 1,600 nm in the NIR-IIb window for deep tissue fluorescence imaging. Proceedings of the National Academy of Sciences of the United States of America, 2018,115(26):6590-6595. |
| [14] | XIONG HU, ZHOU KE-JIN, YAN YUN-FENG , et al. Tumor- activated water-soluble photosensitizers for near-infrared photodynamic cancer therapy. ACS Applied Materials & Interfaces, 2018,10(19):16335-16343. |
| [15] | YANG ZHEN, TIAN RUI, WU JIN-JUN , et al. Impact of semiconducting perylene diimide nanoparticle size on lymph node mapping and cancer imaging. ACS Nano, 2017,11(4):4247-4255. |
| [16] | BRAUN MARKUS, BURDA CLEMENS, EI-SAYED MOSTAFA-A . Variation of the thickness and number of wells in the CdS/ HgS/CdS quantum dot quantum well system. Journal of Physical Chemistry A, 2001,105(22):5548-5551. |
| [17] | ZHANG WEN-HAO, YANG JING, YU JUN-SHENG . Synthesis of stable near-infrared emitting HgTe/CdS core/shell nanocrystals using dihydrolipoic acid as stabilizer. Journal of Materials Chemistry, 2012,22(13):6383-6388. |
| [18] | SUN TING-TING, DOU JIN-HU, LIU SHI , et al. Second near-infrared conjugated polymer nanoparticles for photoacoustic imaging and photothermal therapy. ACS Applied Materials & Interfaces, 2018,10(9):7919-7926. |
| [19] | QIN HAI-YAN, NIU YUAN, MENG REN-YANG , et al. Single- dot spectroscopy of zinc-blende CdSe/CdS core/shell nano-crystals: nonblinking and correlation with ensemble measurements. Journal of the American Chemical Society, 2014,136(1):179-187. |
| [20] | GAO GUAN-BIN, ZHANG MING-XI, GONG DE-JUN , et al. The size-effect of gold nanoparticles and nanoclusters in the inhibition of amyloid-beta fibrillation. Nanoscale, 2017,9(12):4107-4113. |
| [21] | SHEN GUO-HUA, GUYOT-SIONNEST PHILIPPE . HgS and HgS/CdS colloidal quantum dots with infrared intraband transitions and emergence of a surface plasmon. Journal of Physical Chemistry C, 2016,120(21):11744-11753. |
| [22] | YANG FEI-FEI, GAO GUAN-BIN, WANG JUN-CHENG , et al. Chiral β-HgS quantum dots: aqueous synthesis, optical properties and cytocompatibility. Journal of Colloid and Interface Science, 2019,537:422-430. |
| [1] | 王萌萌, 田力, 张俊敏, 李庆刚, 杨金山, 董绍明. 3D打印制备CNT/SiC-SiO2及其电磁屏蔽性能[J]. 无机材料学报, 2026, 41(6): 831-838. |
| [2] | 洪恩柳, 涂欣晨, 李自清, 方晓生. 二维钙钛矿单晶纳米片的漂浮法制备及其光电探测性能[J]. 无机材料学报, 2026, 41(6): 787-794. |
| [3] | 李涵涛, 沈强, 罗国强, 王雪飞, 高明, 陈晨. 机械球磨法调控硅基负极材料结构与性能的研究进展[J]. 无机材料学报, 2026, 41(5): 561-572. |
| [4] | 钱新宇, 王无敌, 郭俊尧, 任永春, 董建树, 王庆国, 唐慧丽, 张晨波, 徐晓东, 董永军, 华伟, 徐军. Ho:BaF2晶体在近红外-中红外波段光谱性能分析[J]. 无机材料学报, 2026, 41(5): 595-603. |
| [5] | 朱开煌, 杨世杰, 李欣格, 宋贯卿, 史淦升, 王焱, 任小孟, 陆遥, 徐新宏, 孙静. 基于UiO-66骨架的氧化石墨烯改性金属有机框架凝胶的制备及其对甲苯的高效吸附性能[J]. 无机材料学报, 2026, 41(4): 519-526. |
| [6] | 蒋圣楠, 郑重, 何唯一, 刘涛, 潘秀红, 陈锟, 郭辉, 高攀, 刘春俊, 刘学超. 硼镓共掺氧化锌透明电极的制备及性能优化[J]. 无机材料学报, 2026, 41(4): 479-485. |
| [7] | 徐浩, 顾海涛, 吴鸿辉, 岳晓飞, 林思琪, 金敏. Bi掺杂InSe晶体生长及性能研究[J]. 无机材料学报, 2026, 41(4): 493-499. |
| [8] | 张梦婕, 李智博, 黄瑞楠, 吕向菲, 王伟. 堇青石/硼酸铝晶须/Co0.8FexCe0.2-xCr2O4催化剂的制备及其碳烟过滤-催化燃烧性能[J]. 无机材料学报, 2026, 41(4): 509-518. |
| [9] | 隋金洋, 周大雨, 赵文瑾, 童祎, 王新朋. 工作气压对AlScN薄膜结构和电学性能的影响[J]. 无机材料学报, 2026, 41(4): 486-492. |
| [10] | 程澳芃, 王跃文, 许文涛, 刘全伟, 张海涛, 周有福. 吸附-沉淀自组装结合放电等离子烧结法制备石墨烯增强氧化铝复合陶瓷[J]. 无机材料学报, 2026, 41(4): 536-544. |
| [11] | 李璇, 叶奎材, 冯佳音, 邱家军, 钱文昊, 邢敏. 钛基牙种植体表面改性促进软组织封闭的研究进展[J]. 无机材料学报, 2026, 41(4): 432-444. |
| [12] | 王禹贺, 罗颐秀, 郭会明, 张广珩, 张思岩, 孙鲁超, 王杰民, 王京阳. 高熵稀土氧化物热障涂层材料弹性及热物性的第一性原理研究[J]. 无机材料学报, 2026, 41(4): 445-454. |
| [13] | 李泽熙, 卢文杰, 王朝, 张璐, 李述体, 高芳亮. 基于液态金属镓制备二维氮化镓及其光电性能研究[J]. 无机材料学报, 2026, 41(3): 377-384. |
| [14] | 田洪旺, 罗龙飞, 胡成龙, 闫猛, 庞生洋, 李建, 汤素芳. C/CA表面陶瓷-树脂涂层的简易制备与中温抗氧化性能[J]. 无机材料学报, 2026, 41(3): 401-408. |
| [15] | 邓恒杨, 秦翠洁, 郝胜兰, 冯光迪, 朱秋香, 田博博, 褚君浩, 段纯刚. 基于金属-半导体-金属鳍式隧穿二极管的高频整流桥电路[J]. 无机材料学报, 2026, 41(2): 253-261. |
| 阅读次数 | ||||||
|
全文 |
|
|||||
|
摘要 |
|
|||||