- Analytical Chemistry and Sensors
- Advanced Chemical Sensor Technologies
- Gas Sensing Nanomaterials and Sensors
- Advanced biosensing and bioanalysis techniques
- Advanced Nanomaterials in Catalysis
- Electrochemical sensors and biosensors
- Electrochemical Analysis and Applications
- Salivary Gland Disorders and Functions
- Biosensors and Analytical Detection
- Mercury impact and mitigation studies
- Advanced Biosensing Techniques and Applications
- Selenium in Biological Systems
- Kidney Stones and Urolithiasis Treatments
- Neuroscience and Neural Engineering
- Medical and Biological Ozone Research
- Quantum Dots Synthesis And Properties
- Nanocluster Synthesis and Applications
- Ionic liquids properties and applications
- Extracellular vesicles in disease
Zhejiang University
2022-2024
Chinese Academy of Sciences
2023
State Key Laboratory of Transducer Technology
2023
Heart failure (HF) is a life-threatening syndrome. Timely and accurate bedside monitoring of the occurrence progression HF via measurements multiple HF-related biomarkers remains challenge. Here, we report triple cascade quantum-strip (TCQS) sensing strategy for rapid selective multiplex-tracing three clinically validated (BNP/NT-proBNP/ST2) in serum. High selectivity to achieved by controlling individual recognition ability target-specific quantum immunoprobes tuning their simultaneous use...
Abstract Single‐atom catalysts (SACs) have attracted extensive interest owing to their maximized atomic utilization, low cost as well outstanding catalytic activity, selectivity, and stability for diverse applications. Due excellent performance in electrocatalysis, SACs can be applied electrochemical sensors, which been a predominant tool employed biosensing. In very recent studies, SAC‐based biosensors demonstrated enhanced sensing performances biomarker detection vivo analysis. However,...
Hydrogen has been widely used in industrial and commercial applications as a carbon-free, efficient energy source. Due to the high flammability explosion risk of hydrogen–air mixtures, it is vital develop sensors featuring fast-responding sensitivity for hydrogen leakage detection. This paper presents miniaturized electrochemical gas sensor by elaborately establishing nanocomposite thin ionic liquid interface highly sensitive rapid detection hydrogen, which remarkable response time recovery...
Fully Automatic Analyzer In article number 2304941, Hao Wan, Ping Wang, and co-workers established for the first time a dual-spectral strategy based on copper nanoclusters as biomimetic peroxidase develop fully automatic urine analyzer simultaneous detection of citrate oxalate in urine, which provides promising approaches screening prognosis evaluation urolithiasis.
Various gases are widely utilized in industry, manufacturing, agriculture and even our daily life for heating cooking. However, potential gas leakage may lead to severe hazards human health, lethal risks. Therefore, rapid sensing is of great significance provide timely alerting prevent hazardous exposure. Herein, we present recent progress miniaturized electrochemical sensors (MEGS) based on room temperature ionic liquids (RTILs) wearable systems sensing. Different strategies were employed...
Due to its non-volatility and excellent electrochemical properties, ionic liquid has emerged as a promising alternative traditional aqueous electrolytes in hydrogen gas sensors. However, the fluidic nature of liquids poses challenges lifespan integration To address this issue, study introduced polymeric liquid, solidifying it form stable solid electrolyte membrane on electrode surface, while retaining high electrical conductivity. Different types proportions were mixed solid-state membranes....
Rising concerns over wellness and aging have heightened the demand for convenient efficient on-site health monitoring disease screening. Current research, focused on specific biomarker detection, often neglects complexities of sample matrix interference absence a comprehensive, automated platform. To address these issues, we developed universal, fully analyzer multifaceted, biochemical analysis body fluids.
Methane is a common intestinal gas that has been linked to variety of gastrointestinal disorders. In this study, we prepared LIG-based electrochemical sensor modified with PEDOT:PSS/Au-Pt nanocomposites for high-sensitivity methane detection. LIG’s high porosity, flexibility, and excellent electrical conductivity are beneficial The PEDOT:PSS film electrodeposited on the electrode surface amplify signal further. synergistic effect bimetallic can improve catalytic activity increase specific...
Abstract Urolithiasis stands as a prevalent ailment within the urinary system, with hyperoxaluria and hypocitraturia being most frequent manifestations characterized by excessive oxalic acid (OA) deficient citric (CA) levels in urine. Detecting these compounds urine quantitatively holds paramount importance for early urolithiasis screening. Existing methodologies fall short achieving simultaneous on‐site identification of OA CA, posing challenges accurate Addressing this concern, study...
Delayed diagnosis of cancer-causing death is a worldwide concern. General methods are invasive, time-consuming, and operation complicated, which not suitable for preliminary screening. To address these challenges, the sensing platform based on immune scaffold fully automated saliva analyzer (FASA) was proposed oral cancer screening first time by non-invasive detection Cyfra21-1 in saliva. Through one-step synthesis method with unique covalent electrostatic adsorption strategy,...
The level of glucose in blood or urine are an important indicator diabetes. Here, a sensitive and easily operated colorimetric methods was established based on the mercaptosuccinic acid modified copper nanocluster(MSA-CuNCs). MSA-CuNCs, which act as both thehydrogen peroxide catalyst chromogenic reagent. By observing absorption at 520 nm, H <inf xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">2</inf> O could be detected, with detection range 0.2-5 mM...