-
[1]
Meitong Wu
, Ke Wu
, Shumin Feng
, Li Xu
, Mi Lei
, Jianmei Chen
, Shuang Li
, Mian Qin
, Dahui Liu
, Guoqiang Feng
. A NIR and ratiometric fluorescent probe for quantitative detection of SO2 derivatives in Chinese medicinal materials and bioimaging in vivo. Chinese Chemical Letters,
2026, 37(1): 110979-.
doi: 10.1016/j.cclet.2025.110979
-
[2]
Mimi Wu
, Shoufeng Tang
, Zhibin Wang
, Qingrui Zhang
, Deling Yuan
. Molybdenum carbide activated calcium sulfite for antibiotic decontamination at near-neutral pH: Dissolved oxygen promoted bisulfite adsorption for singlet oxygen generation. Chinese Chemical Letters,
2025, 36(8): 110613-.
doi: 10.1016/j.cclet.2024.110613
-
[3]
Yi-Xin Zhang
, Fang-Qi Zhang
, Ao-Pei Peng
, Tao Jiang
, Ya-Xi Meng
, Yang Li
, Shuang-Xi Gu
, Yuan-Yuan Zhu
. Enantioselective recognition of amino acids in water using emission-tunable chiral fluorescent probes. Chinese Chemical Letters,
2026, 37(1): 111500-.
doi: 10.1016/j.cclet.2025.111500
-
[4]
Yudi Cheng
, Xiao Wang
, Jiao Chen
, Zihan Zhang
, Jiadong Ou
, Mengyao She
, Fulin Chen
, Jianli Li
. A near-infrared fluorescent probe for visualizing transformation pathway of Cys/Hcy and H2S and its applications in living system. Chinese Chemical Letters,
2024, 35(5): 109156-.
doi: 10.1016/j.cclet.2023.109156
-
[5]
Yuwen Zhu
, Xiang Deng
, Yan Wu
, Baode Shen
, Lingyu Hang
, Yuye Xue
, Hailong Yuan
. Formation mechanism of herpetrione self-assembled nanoparticles based on pH-driven method. Chinese Chemical Letters,
2025, 36(1): 109733-.
doi: 10.1016/j.cclet.2024.109733
-
[6]
Chuan-Zhi Ni
, Ruo-Ming Li
, Fang-Qi Zhang
, Qu-Ao-Wei Li
, Yuan-Yuan Zhu
, Jie Zeng
, Shuang-Xi Gu
. A chiral fluorescent probe for molecular recognition of basic amino acids in solutions and cells. Chinese Chemical Letters,
2024, 35(10): 109862-.
doi: 10.1016/j.cclet.2024.109862
-
[7]
Tao Liu
, Xuwei Han
, Xueyi Sun
, Weijie Zhang
, Ke Gao
, Runan Min
, Yuting Tian
, Caixia Yin
. An activated fluorescent probe to monitor NO fluctuation in Parkinson’s disease. Chinese Chemical Letters,
2025, 36(3): 110170-.
doi: 10.1016/j.cclet.2024.110170
-
[8]
Qian Pang
, Fangjun Huo
, Yongkang Yue
, Caixia Yin
. ONOO− and viscosity dual-response fluorescent probe for arthritis imaging in vivo. Chinese Chemical Letters,
2025, 36(9): 110713-.
doi: 10.1016/j.cclet.2024.110713
-
[9]
Chao Liu
, Chao Jia
, Shi-Xian Gan
, Qiao-Yan Qi
, Guo-Fang Jiang
, Xin Zhao
. A luminescent one-dimensional covalent organic framework for organic arsenic sensing in water. Chinese Chemical Letters,
2024, 35(11): 109750-.
doi: 10.1016/j.cclet.2024.109750
-
[10]
Hui Zhang
, Rong Feng
, Wanyi Yu
, Hongbei Wei
, Tianhong Wu
, Peng Zhang
, Wenhai Bian
, Xin Li
, Di Gao
, Guojun Weng
, Zhe Yang
, Tony D. James
, Xiaolong Sun
. Evaluating the global thiols redox state in living cells using a reducing sulfur species responsive fluorescence switching platform. Chinese Chemical Letters,
2025, 36(4): 110528-.
doi: 10.1016/j.cclet.2024.110528
-
[11]
Huamei Zhang
, Jingjing Liu
, Mingyue Li
, Shida Ma
, Xucong Zhou
, Aixia Meng
, Weina Han
, Jin Zhou
. Imaging polarity changes in pneumonia and lung cancer using a lipid droplet-targeted near-infrared fluorescent probe. Chinese Chemical Letters,
2024, 35(12): 110020-.
doi: 10.1016/j.cclet.2024.110020
-
[12]
Fan Zheng
, Runsha Xiao
, Shuai Huang
, Zhikang Chen
, Chen Lai
, Anyao Bi
, Heying Yao
, Xueping Feng
, Zihua Chen
, Wenbin Zeng
. Accurate visualization colorectal cancer by monitoring viscosity variations with a novel mitochondria-targeted fluorescent probe. Chinese Chemical Letters,
2025, 36(2): 109876-.
doi: 10.1016/j.cclet.2024.109876
-
[13]
Zhixiao Xiong
, Shanni Qiu
, Yuyu Wang
, Houna Duan
, Yi Xiao
, Yufang Xu
, Weiping Zhu
, Xuhong Qian
. Photocalibrated NO release from the zinc ion fluorescent probe based on naphthalimide and its application in living cells. Chinese Chemical Letters,
2025, 36(4): 110002-.
doi: 10.1016/j.cclet.2024.110002
-
[14]
Jiayu Zeng
, Minhui Liu
, Ting Yang
, Jia Huang
, Songjiao Li
, Wanting Zhang
, Dan Cheng
, Longwei He
, Jia Zhou
. Two-dimensional design strategy to construct smart dual-responsive fluorescent probe for the precise tracking of ischemic stroke. Chinese Chemical Letters,
2025, 36(5): 110166-.
doi: 10.1016/j.cclet.2024.110166
-
[15]
Xianzhu Luo
, Feifei Yu
, Rui Wang
, Tian Su
, Pan Luo
, Pengfei Wen
, Fabiao Yu
. A near-infrared two-photon fluorescent probe for the detection of HClO in inflammatory and tumor-bearing mice. Chinese Chemical Letters,
2025, 36(7): 110531-.
doi: 10.1016/j.cclet.2024.110531
-
[16]
Xinyi Zhao
, Yuai Duan
, Zihan Liu
, Hua Geng
, Yaping Li
, Zhongfeng Li
, Tianyu Han
. Mapping sweat pores for biometric identification based on a donor-acceptor hydrophilic fluorescent probe. Chinese Chemical Letters,
2025, 36(8): 110617-.
doi: 10.1016/j.cclet.2024.110617
-
[17]
Mengyu Cao
, Yiyan Yin
, Jingyi Qin
, Jin Ouyang
, Na Na
. Unconventional application of a fluorescent probe for MS-based detection of multiple sulfur species in ferroptosis. Chinese Chemical Letters,
2026, 37(1): 111260-.
doi: 10.1016/j.cclet.2025.111260
-
[18]
Chengcheng Zhang
, Zhe Wu
, Ningning Jiang
, Yi Song
, Weina Geng
, Hongmei Liu
, Ming Jin
, Shuxiang Wang
, Jinchao Zhang
, Yutao Yang
. A fluorescent probe regulated by trifluoromethyl and nitrogen-containing heterocycles for monitoring biothiol fluctuations in the brains of mice with schizophrenia. Chinese Chemical Letters,
2026, 37(1): 111476-.
doi: 10.1016/j.cclet.2025.111476
-
[19]
Chuanfeng Fan
, Jian Gao
, Yingkai Gao
, Xintong Yang
, Gaoning Li
, Xiaochun Wang
, Fei Li
, Jin Zhou
, Haifeng Yu
, Yi Huang
, Jin Chen
, Yingying Shan
, Li Chen
. A non-peptide-based chymotrypsin-targeted long-wavelength emission fluorescent probe with large Stokes shift and its application in bioimaging. Chinese Chemical Letters,
2024, 35(10): 109838-.
doi: 10.1016/j.cclet.2024.109838
-
[20]
Lei Shen
, Hongmei Liu
, Ming Jin
, Jinchao Zhang
, Caixia Yin
, Shuxiang Wang
, Yutao Yang
. “Three-in-one” strategy of trifluoromethyl regulated blood-brain barrier permeable fluorescent probe for peroxynitrite and antiepileptic evaluation of edaravone. Chinese Chemical Letters,
2024, 35(10): 109572-.
doi: 10.1016/j.cclet.2024.109572