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| 1 | Enhancing oxygen evolution reaction by cationic surfactants显示文摘Oxygen evolution reaction is critical for water splitting or metal-air batteries,but previous research mainly focuses on electrode material or structure optimization.Herein,we demonstrate that surfactant modification of a NiFe layered double hydroxide (LDH) array electrode,one of the best catalysts for oxygen evolution reaction (OER),could achieve superaerophobic surface with balanced surface charges,affording fast mass transfer,quick gas release,and boosted OER performance.The assembled surfactants on the electrode surface are responsible for lowering the bubble adhesive force (~ 1.03 μN) and corresponding fast release of small bubbles generated during OER.In addition,the bipolar nature of the hexadecyl trimethyl ammonium bromide (CTAB) molecule lead to bilayer assembly of the surfactants with the polar ends facing the electrode surface and the electrolyte,resulting in neutralized charges on the electrode surface.As a result,OH-transfer was facilitated and OER performance was enhanced.With the modified superaerophobic surface and balanced surface charge,NiFe LDHs-CTAB nanostructured electrode showed ultrahigh current density increase (9.39 mA(mV·cm^2)),2.3 times higher than that for conventional NiFe LDH nanoarray electrode),dramatically fast gas release,and excellent durability.The introduction of surfactants to construct under-water superaerophobic electrode with in-time repelling ability to the as-formed gas bubbles may open up a new pathway for designing efficient electrodes for gas evolution systems with potentially practical application in the near future. | Qixian Xie Daojin Zhou Pengsong Li Zhao Cai Tianhui Xie Tengfei Gao Ruida Chen Yun Kuang Xiaoming Sun | 2019 | Nano Research2019,12,9: | 3 |
| 2 | Quality and seasonal variation of rainwater harvested from concrete, asphalt, ceramic tile and green roofs in Chongqing, China显示文摘 | Qianqian Zhang Xiaoke Wang Peiqiang Hou Wuxing Wan Ruida Li Yufen Ren Zhiyun Ouyang | 2014 | Journal of Environmental Management2014,,: | 1 |
| 3 | Joint probability analysis of water and sediment and predicting sediment load based on copula function显示文摘The Jinsha River comprises the upper reaches of the Yangtze River,which is the river section with the highest sediment content.Monitoring of sediment transport in the Jinsha River is done to the guarantee for the normal operation of the Three Gorges Reservoir.In the current study,a copula function was used to do a joint probability analysis of the water and sediment in the Jinsha River Basin(JRB),further a sediment load prediction model based on the copula function also was constructed.The results show that the average annual flow from 2001 to 2018 at the outlet of the Jinsha River(Yibin station)is about60.43 billion m^(3),and the average annual sediment load is about 58.82 million t.The linear correlation coefficient between annual flow and annual sediment load is 0.28.The best marginal distribution for annual flow and sediment load is Pearson Type Three(PE3)and Generalized Normal(GNO),respectively,and the best fit for the combined distribution of the two variables is the Frank copula function.The synchronous probability of water and sediment occurrence is 0.459,and the asynchronous probability is0.541.Based on the copula prediction model,the sediment load can be effectively simulated,and the correlation coefficient between the simulated sequence and the measured sequence reached 0.93.The current study provides important significance for the analysis of water and sediment in the JRB,which is beneficial to the management of Three Gorges Reservoir sediment discharge in the upstream and downstream. | Haoyu Jin Xiaohong Chen Ruida Zhong Yingjie Pan Tongtiegang Zhao Zhiyong Liu Xinjun Tu | 2022 | International Journal of Sediment Research2022,37,5: | 0 |
| 4 | COVID-19 and ocular complications:A review of ocular manifestations,diagnostic tools,and prevention strategies显示文摘Background:The novel severe acute respiratory syndrome coronavins 2(SARS-CoV-2)led to the severe Corona Virus Disease 2019(COVID-19)outbreak that started in December 2019 in China and caused enormous health and economic problems worldwide.Over time,SARS-CoV-2 has demonstrated the capacity for mutation.As the most prevalent new coronavirus variety worldwide,the Omicron variant has supplanted the Delta variant.The COVID-19 primarily damages the immune system and the lungs,but it can also harm other organs secondarily,depending on the patients'co-existing conditions.Main Text:COVID-19 is associated with ophthalmic manifestations such as conjunctival congestion,tear overflow,and conjunctival edema,with the majority of eye complications occurring in patients with severe infection.The virus may make a patient more susceptible to thrombotic conditions that affect venous and arterial circulation.Meanwhile,it can lead to efferent complications and mucormycosis which is more common in patients with diabetes or who have critical or severe SARS-CoV-2 infection.Significantly,there are a number of ocular side effects following the COVID-19 vaccination,such as herpetic keratitis and facial nerve palsy,which have been reported.These side effects may be caused by the vaccinations'propensity to trigger autoimmune symptoms or thromboembolic events.At present,large-scale nucleic acid testing mainly relies on nasopharyngeal swabs and throat swabs.Tear samples and conjunctival swabs may be helpful samples for the diagnosis of ocular SARS-CoV-2 infection.The eye could be a new route of infection,and finding ways such as effective environmental disinfection,scientific administrative control management,qualified personal protection and other measures to protect the eyes could further reduce the risk of infection.Conclusions:This review aims to sum up the ocular complications of COVID-19,the possible pathogenesis,and preventive strategies to protect ophthalmology practitioners and patients by reviewing the currently available literature on the topic. | Jilian Dong Ruida Chen Hanhe Zhao Yirui Zhu | 2023 | Advances in Ophthalmology Practice and Research2023,3,1: | 0 |
| 5 | COVID-19 rhapsody:Rage towards advanced diagnostics and therapeutic strategy显示文摘The deadly global outbreak of coronavirus disease-2019(COVID-19)has forged an unrivaled threat to human civilization.Contemplating its profuse impact,initial risk management and therapies are needed,as well as rapid detection strategies alongside treatments with existing drugs or traditional treatments to provide better clinical support for critical patients.Conventional detection techniques have been considered but do not sufficiently meet the current challenges of effective COVID-19 diagnosis.Therefore,several modern techniques including point-of-care diagnosis with a biosensor,clustered regularly interspaced short palindromic repeats(CRISPR)-associated proteins that function as nuclease(Cas)technology,next-generation sequencing,serological,digital,and imaging approaches have delivered improved and noteworthy success compared to that using traditional strategies.Conventional drug treatment,plasma therapy,and vaccine development are also ongoing.However,alternative medicines including Ayurveda,herbal drugs,homeopathy,and Unani have also been enlisted as prominent treatment strategies for developing herd immunity and physical defenses against COVID-19.All considered,this review can help develop rapid and simplified diagnostic strategies,as well as advanced evidencebased modern therapeutic approaches that will aid in combating the global pandemic. | Koel Sinha Sutapa Som Chaudhury Pramita Sharma Bhuban Ruidas | 2021 | Journal of Pharmaceutical Analysis2021,11,5: | 0 |
| 6 | Extreme exposure of fluoride and arsenic contamination in shallow coastal aquifers of the Ganges delta,transboundary of the Indo-Bangladesh region显示文摘Globally,shallow aquifer groundwater(GW)has been severely affected in recent decades for both geogenic and anthropogenic reasons.The hydro-geochemical characteristics of the GW change inconsistently with the addition of unwanted inorganic trace elements into the GW aquifer of the Indo-Bangladesh delta region(IBDR),such as arsenic(As)along with fluoride(F-)contamination.Contaminated GW can have a negative impact on drinking water supplies and agricultural output.GW pollution can have serious adverse effects on the environment and human health.Thus,the GW quality of this region is deteriorating progressively,and human health threatening by various life-threatening disorders.Hence,the current study concentrated on the GW quality evaluation and prediction of possible health issues in the IBDR due to elevated contamination of As along with F-within GW aquifers by considering sixteen causative.Field survey-based statistical methods such as entropy quality index(EWQI)combined with health risk index(HRI)was implemented for evaluating the As and F-sensitivity with the help of correlation testing and principal component analysis.The study's outcome explains that a substantial portion of the IBDR has been vastly experiencing inferior GW quality,environmental issues,and health-related problems in dry and wet seasons,correspondingly for As and F-exposure.Piper diagram verified the suitability of water that almost 55%of GW across the study area’s aquifers are unfit for drinking as well as cultivation of crops.Sensitivity analysis and the Monte Carlo simulation method were also applied to assess the contaminant's concentration level and probable health risk appraisal.The present study concludes that the elevated exposure of As and F-pollution has to be monitored regularly and prevent unwanted GW contamination through implementing sustainable approaches and policies to fulfil the sustainable development goal 6(SDG-6)till 2030,ensuring the most basic human right of clean,safe,and hygienic water. | Dipankar Ruidas Subodh Chandra Pal Tanmoy Biswas Asish Saha Abu Reza Md.Towfiqul Islam | 2024 | Geoscience Frontiers2024,15,1: | 0 |
| 7 | Jw-1-283 inhibits melanoma tumor growth via stabilization of the p53 pathway显示文摘Melanoma is a lethal skin malignancy and the fifth most diagnosed cancer in the United States.1 Currently,for unresectable melanoma,the recommended treatment options include checkpoint inhibitor immunotherapy targeting programmed cell death 1(PD-1),and inhibitors targeting the mitogen-activated protein kinase(MAPK)pathway.However,the response rate may vary among the patients,and therefore demanding the development of novel treatment strategies.Tumor suppressor TP53has been suggested as one of the critical regulators mediating the aggressiveness and progression of melanoma. | Yang Xie Ruida Hou Kelli LHartman Jianxiong Jiang Zhongzhi Wu Wei Li | 2024 | Genes & Diseases2024,11,3: | 0 |