نتایج جستجو برای: نانوربات afm
تعداد نتایج: 11339 فیلتر نتایج به سال:
Atomic force microscopy (AFM) is a powerful technique which is commonly used to image surfaces at the nanoscale and single-molecule level, as well as to investigate physical properties of the sample surface using a technique known as force spectroscopy. In this chapter, we review our recent research where we used AFM to investigate physical properties of phospholipid monolayers, bilayers, and c...
هدف از این تحقیق ساخت نانوذرات مس- نیکل با اندازه های مختلف، به منظور بررسی خواص کاتالیستی، مغناطیسی و حسگری این نانوذرات می باشد. بنابراین نانو ذرات هسته-پوسته ای مس- نیکل در بستر لایه نازک کربنی به روش همزمان انباشت بخار شیمیایی و کند وپاش پلاسمای امواج رادیویی از هدف مس و نیکل در محیط گاز استیلن ساخته شد. ابتدا نانو ذرات مس در بستر کربنی آماده شدند. سپس لایه نیکل با ضخامت های مختلف روی آ...
Superconductivity (SC) with the suppression of long-range antiferromagnetic (AFM) order is observed in the parent compounds of both iron-based and cuprate superconductors. The AFM wave vectors are bicollinear (π, 0) in the parent compound FeTe different from the collinear AFM order (π, π) in most iron pnictides. Study of the phase diagram of Fe1+yTe1-xSex is the most direct way to investigate t...
Aflatoxin M₁ (AFM₁) is an important biomarker that can be used to evaluate aflatoxin exposure in both humans and animals. The aim of this study was to evaluate the exposure degree of infants to AFM₁ through consumption of breast milk and infant powdered milk in Brazil. For this purpose, the estimated daily intake (EDI) for infants was calculated based on the AFM₁ levels analyzed in 94 breast mi...
Atomic Force Microscopy (AFM) has been widely used in the material and life sciences and has enabled much progress in nanotechnology since it was invented. AFM relies on inter-atomic forces to form a topographical map of a sample surface. Depending on the surface type, it is possible to achieve atomic resolution. However, due to either the microscope design and operation mode or external enviro...
This review article aims to provide an updated and comprehensive description on the development of atomic force microscopy (AFM) nanolithography for structuring and fabrication at the nanometer scale. The many AFM nanolithographic techniques are classified into two general groups of force-assisted and bias-assisted nanolithography on the basis of their mechanistic and operational principles. Fo...
abstract: application of atomic force microscope as a manipulator for pushing-based positioning of nano-particles has been of considerable interest during recent years. however a detailed modeling of the interaction forces and control on the afm tip is important for prosperous manipulation control, a reliable control of the afm tip position during the afm-based manipulation process is a main is...
This paper presents a novel method for the attachment of a 1.8-nm Au nanoparticle (Au-NP) to the tip of an atomic force microscopy (AFM) probe through the application of a current-limited bias voltage. The resulting probe is capable of picking up individual objects at the sub-4-nm scale. We also discuss the mechanisms involved in the attachment of the Au-NP to the very apex of an AFM probe tip....
The development of a fluid cell with an acoustic radiation pressure ARP actuator for atomic force microscopy AFM is reported. The ARP actuator uses a zinc oxide thin film transducer fabricated on a silicon substrate to generate acoustic waves in the 120–180 MHz range. These waves are coupled to the liquid and are reflected off of the AFM cantilever exerting radiation pressure to move the AFM ca...
RNA molecules have been much less studied by atomic force microscopy (AFM) than have DNA molecules. In this paper, AFM imaging is presented for two different RNA molecules able to self-assemble into complex supramolecular architectures. The first one is a molecular dimer of a 230-nt RNA fragment coming from the RNA genome of a murine leukaemia virus. The monomeric RNA fragment, which appears by...
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