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6篇 您的检索式:作者名="Pandit MD"
    题名 作者 年代 出处 被引量
1Mecha- nism for the allosteric regulation of phosphodiester- ase 2A deduced from the X-ray structure of a near full-length construct显示文摘Pandit J Forman MD Fennell KF 2009PNAS2009,106,43:1
2Prevalence of antibodies to hepatitis C virus in voluntary blood do- nors: are women better donors? 显示文摘PANDIT DP PAGARO MD NABAMITA C 2014Journal of clinical and diagnostic research:2014,8,4:1
3Comparison of fentanyl and butorphauol for outpatient anaesthesia 显示文摘Sujit K Pandit MD Sarla P 1987Can J Anaesth1987,34,:1
4Use of tissue transglutaminase and fibronectin to influence osteoblast responses to tricalcium phosphate scaffolds显示文摘Ball MD O'Connor D Pandit A 2009J Mater Sci Mater Med2009,20,1:1
5Infantile epileptic encephalopathy with late-onset spasms: report of 19 pa- tients显示文摘Auvin S Lamblin MD Pandit F 2010Epilepsia2010,51,7:1
6Dual-step hybrid SERS scheme through the blending of CV and MoS_(2) NPs on the AuPt core-shell hybrid NPs显示文摘Along with a wide range of applications,the surface-enhanced Raman spectroscopy(SERS)is a promi-nent analytical technique to recognize and detect molecules and materials even at an extremely low mo-lar concentration.In this work,a unique hybrid SERS platform is demonstrated by the incorporation of molybdenum disulfate(MoS_(2))nanoparticles(NPs)onto the core-shell AuPt hybrid NPs(HNPs)for the en-hanced molecular Raman vibration of crystal violet(CV).The hybrid platform takes the advantage of both the electromagnetic mechanism(EM)offered by the AuPt HNPs and chemical mechanism(CM)owing to the MoS_(2)NPs.The distinctive core-shell morphology of AuPt HNPs with the high-density background Au NPs is attained by a unique two-step solid-state dewetting method,which can offer a high concentration of electromagnetic hot spots.At the same time,the MoS_(2)NPs can provide an ample charge transfer with abundant active sites.Through the hybrid SERS approach,a dramatic SERS enhancement of CV Raman vibration is demonstrated,and the SERS capability is thoroughly studied.In addition,the finite-difference time-domain(FDTD)simulations provide a deeper understanding of the electromagnetic field distributions for various configurations of nanostructures and their hybrid combinations:i.e.,HNPs,alloy NPs,MoS_(2)/HNPs configurations.Rutuja Mandavkar Shusen Lin Rakesh Kulkarni Sanchaya Pandit Shalmali Burse Md Ahasan Habib Puran Pandey Sundar Kunwar Jihoon Lee 2022Journal of Materials Science & Technology2022,,12:0
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