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| 1 | Recent Progress of Biomarker Detection Sensors显示文摘Early cancer diagnosis and treatment are crucial research fields of human health.One method that has proven efficient is biomarker detection which can provide real-time and accurate biological information for early diagnosis.This review presents several biomarker sensors based on electrochemistry,surface plasmon resonance(SPR),nanowires,other nanostructures,and,most recently,metamaterials which have also shown their mechanisms and prospects in application in recent years.Compared with previous reviews,electrochemistry-based biomarker sensors have been classified into three strategies according to their optimizing methods in this review.This makes it more convenient for researchers to find a specific fabrication method to improve the performance of their sensors.Besides that,as microfabrication technologies have improved and novel materials are explored,some novel biomarker sensors—such as nanowire-based and metamaterial-based biomarker sensors—have also been investigated and summarized in this review,which can exhibit ultrahigh resolution,sensitivity,and limit of detection(LoD)in a more complex detection environment.The purpose of this review is to understand the present by reviewing the past.Researchers can break through bottlenecks of existing biomarker sensors by reviewing previous works and finally meet the various complex detection needs for the early diagnosis of human cancer. | Ruitao Liu Xiongying Ye Tianhong Cui | 2020 | Research2020,,1: | 3 |
| 2 | Self-cleaning semiconductor heterojunction substrate: ultrasensitive detection and photocatalytic degradation of organic pollutants for environmental remediation显示文摘Emerging technologies in the field of environmental remediation are becoming increasingly significant owing to the increasing demand for eliminating significant amounts of pollution in water,soil,and air.We designed and synthesized MoS 2/Fe 2 O 3 heterojunction nanocomposites(NCs)as multifunctional materials that are easily separated and reused.The trace detection performance of the prepared sample was examined using bisphenol A(BPA)as the probe molecule,with limits of detection as low as 10−9 M;this detection limit is the lowest among all reported semiconductor substrates.BPA was subjected to rapid photocatalytic degradation by MoS_(2)/Fe_(2)O_(3) NCs under ultraviolet irradiation.The highly recyclable MoS_(2)/Fe_(2)O_(3) NCs exhibited photo-Fenton catalytic activity for BPA and good detection ability when reused as a surface-enhanced Raman scattering(SERS)substrate after catalysis.The SERS and photocatalysis mechanisms were proposed while considering the effects of the Z-scheme charge-transfer paths,three-dimensional flower-like structures,and dipole–dipole coupling.Moreover,the prepared MoS_(2)/Fe_(2)O_(3) NCs were successfully applied in the detection of BPA in real lake water and milk samples.Herein,we present insights into the development of MoS_(2)/Fe_(2)O_(3) materials,which can be used as multifunctional materials in chemical sensors and in photocatalytic wastewater treatments for the removal of recalcitrant organic pollutants. | Mingyue Hu Yingnan Quan Shuo Yang Rui Su Huilian Liu Ming Gao Lei Chen Jinghai Yang | 2020 | Microsystems & Nanoengineering2020,6,1: | 1 |
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