1 |
赵秋丽, 卞洁鹏, 杨庆浩, 等. 聚集诱导发红光材料在生物成像领域的应用[J]. 材料导报, 2019, 33(3): 522-535.
|
|
ZHAO Qiuli, BIAN Jiepeng, YANG Qinghao, et al. Application of aggregation-induced red emission materials in bioimaging[J]. Materials Reports, 2019, 33(3): 522-535.
|
2 |
池雨, 高云玲, 潘勇,等. 氮杂氟硼荧(Aza-BODIPY)类荧光探针的研究进展[J]. 化工进展, 2018, 37(3): 1137-1144.
|
|
CHI Yu, GAO Yunling, PAN Yong, et al. New progress in Aza-BODIPY-based fluorescence probes[J]. Chemical Industry and Engineering Progress, 2018, 37(3): 1137-1144.
|
3 |
彭丽, 光善仪, 徐洪耀. 一种新型罗丹明席夫碱(RHBS)制备及多功能性研究[J]. 功能材料, 2020, 51(4): 4013-4017.
|
|
PENG Li, GUANG Shanyi, XU Hongyao. Preparation and multifunctional properties of a new rhodamine Schiff base (RHBS) [J]. Journal of Functional Materials, 2020, 51(4): 4013-4017.
|
4 |
于雪, 包青青, 姜超, 等. 花菁类近红外荧光探针在生物检测中的应用研究进展[J]. 化工进展, 2019, 38(12): 5492-5503.
|
|
YU Xue, BAO Qingqing, JIANG Chao, et al. Applied research progress on cyanine-based near-infrared fluorescent probe in biological detection[J]. Chemical Industry and Engineering Progress, 2019, 38(12): 5492-5503.
|
5 |
VINGTDEUX Valérie, HAMDANE Malika, BEGARD Séverine, et al. Intracellular pH regulates amyloid precursor protein intracellular domain accumulation[J]. Neurobiology of Disease, 2007, 25(3): 686-696.
|
6 |
任江波, 王蕾, 郭锐, 等. 一种基于萘酰亚胺的检测细胞内pH值的荧光探针及其生物成像应用[J]. 化学学报, 2021, 79(1): 87-92.
|
|
REN Jiangbo, WANG Lei, GUO Rui, et al. A naphthalimide-based fluorescent probe for detecting intracellular pH and its biological imaging application[J]. Acta Chimica Sinica, 2021, 79(1): 87-92.
|
7 |
刘涛, 杨夕强, 高洪成, 等. 罗丹明-乙二胺荧光探针用于pH的检测[J]. 承德石油高等专科学校学报, 2020, 22(3): 32-34.
|
|
LIU Tao, YANG Xiqiang, GAO Hongcheng, et al. Rhodamine-ethylenediamine fluorescent sensor for pH detection[J]. Journal of Chengde Petroleum College, 2020, 22(3): 32-34.
|
8 |
公少华, 张霞, 李娜, 等. 荧光纳米探针用于细胞器pH检测的研究进展[J]. 高等学校化学学报, 2020, 41(9): 1933.
|
|
GONG Shaohua, ZHANG Xia, LI Na, et al. Recent progress of fluorescent nanoprobes for organelle pH detection[J]. Chemical Journal of Chinese Universities, 2020, 41(9): 1933-1944.
|
9 |
Misbah NAZ, DAI Zhicong, HUSSAIN Sajid, et al. The soil pH and heavy metals revealed their impact on soil microbial community[J]. Journal of Environmental Management, 2022, 321:115770.
|
10 |
PALPURINA Salza WAGNER Viktoria, VON WEHRDEN Henrik, et al. The relationship between plant species richness and soil pH vanishes with increasing aridity across Eurasian dry grasslands[J]. Global Ecology and Biogeography, 2017, 26(4): 425-434.
|
11 |
MENG Zuchao, ZHANG Hongfang, ZHENG Jianbin. An electrochemical sensor based on titanium oxide-carbon nanotubes nanocomposite for simultaneous determination of hydroquinone and catechol[J]. Research on Chemical Intermediates, 2015, 41(5): 3135-3146.
|
12 |
NAIME J, MAMUN M S, SAAD A M ALY, et al. Synthesis, characterization and application of a novel polyazo dye as a universal acid-base indicator[J]. RSC Advances, 2022, 12(43):28034-28042.
|
13 |
LUNKAD Raju, BIEHL Philip, MURMILIUK Anastasiia, et al. Simulations and potentiometric titrations enable reliable determination of effective pKa values of various polyzwitterions[J]. Macromolecules, 2022, 55(17): 7775-7784.
|
14 |
陈俊, 冯燕, 孟祥明. 一种线粒体靶向香豆素基pH荧光探针合成及性能[J]. 发光学报, 2021, 42(4): 462-469.
|
|
CHEN Jun, FENG Yan, MENG Xiangming. Synthesis and properties of a mitochondria-targeted coumarin-based pH fluorescent probe[J]. Chinese Journal of Luminescence, 2021, 42(4): 462-469.
|
15 |
曹西颖, 罗时荷, 杨崇玲, 等. 有机聚合物荧光传感器的研究进展[J]. 有机化学, 2020, 40(12): 4046-4059.
|
|
CAO Xiying, LUO Shihe, YANG Chongling, et al. Research progress of organic polymer fluorescence sensor[J]. Chinese Journal of Organic Chemistry, 2020, 40(12): 4046-4059.
|
16 |
王宇. 聚合物基荧光探针的制备及其性能研究[D]. 无锡: 江南大学, 2012.
|
|
WANG Yu. Preparation and property study of polymer-based fluorescent probes[D]. Wuxi: Jiangnan University, 2012.
|
17 |
杨栋梁. 共轭聚合物荧光探针及其离子检测与生物成像研究[D]. 南京: 南京邮电大学, 2018.
|
|
YANG Dongliang. Fluorescent probes based on conjugated polymers and their applications for ions detection and bioimaging[D]. Nanjing: Nanjing University of Posts and Telecommunications, 2018.
|
18 |
郭文波. 含有罗丹明的有机聚合物金属离子光谱探针研究[D]. 苏州: 苏州大学, 2020.
|
|
GUO Wenbo. Research on rhodamine-based organic polymeric spectral probes for metal ions[D]. Suzhou: Suzhou University, 2020.
|
19 |
张哲. 近红外荧光聚合物纳米探针的设计制备及生物成像应用研究[D]. 长春: 吉林大学, 2019.
|
|
ZHANG Zhe. Design and bio-imaging applications of near-infrared fluorescent polymer nanoparticles[D]. Changchun: Jililn University, 2019.
|
20 |
王钊. 聚合物基罗丹明6G衍生物型Hg2+荧光探针的制备及性能研究[D]. 长沙: 湖南大学, 2015.
|
|
WANG Zhao. The research on the synthesis and properties of polymer based derivatives of rhodamine 6G fluorescent probe for Hg2+ [D]. Changsha: Hunan University, 2015.
|
21 |
XUE Xiaolei, WANG Yang, CHEN Shaojin, et al. Monitoring intracellular pH using a hemicyanine-based ratiometric fluorescent probe[J]. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 2023, 284: 121778.
|
22 |
张钰绮, 陈永虎, 刘华丽, 等. 葡萄糖修饰罗丹明B的荧光探针的合成及其性质研究[J]. 化学试剂, 2021, 43(2): 243-246.
|
|
ZHANG Yuqi, CHEN Yonghu, LIU Huali, et al. Synthesis and application of fluorescent probes of rhodamine B modified with glucose[J]. Chemical Reagents, 2021, 43(2): 243-246.
|
23 |
MINAMI Kimitaka, SUZUKI Takashi, AIZAWA Takafumi, et al. Proton concentration of supercritical water and high-concentrated carbon dioxide mixture using UV-vis spectroscopy[J]. Fluid Phase Equilibria, 2007, 257(2): 177-182.
|
24 |
翟荣佳, 赵鑫, 刘娅静, 等. 一种罗丹明类Hg2+和pH双功能荧光探针及其选择识别性能[J]. 化学世界, 2015, 56(11): 680-685.
|
|
ZHAI Rongjia, ZHAO Xin, LIU Yajing, et al. Synthesis and performance of a new fluorescent probe based on rhodamine for selective recognition of Hg2+ and pH[J]. Chemical World, 2015, 56(11): 680-685.
|
25 |
YU Kangkang, LI Kun, HOU Jiting, et al. Rhodamine-based lysosome-targeted fluorescence probes: High pH sensitivity and their imaging application in living cells[J]. RSC Advances, 2014, 4(64): 33975-33980.
|