Примери за използване на Nanocrystals на Английски и техните преводи на Български
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Faster absorption with pharmaceutical nanocrystals.
Cellulose nanocrystals(CNC) prepared from eucalyptus cellulose CNCs.
Chameleon changes color with the help of nanocrystals.
ITO nanocrystals were embedded in glass made from niobiumoxide.
Hemp bast fibers are a valuable source from which cellulose nanocrystals(CNCs) can be extracted.
Pharmaceutical nanocrystals are nanoparticles in crystalline form.
(2016) report the successful ultrasonically assisted synthesis of lead halide perovskite nanocrystals.
The foam is mostly made from nanocrystals of cellulose, the most abundant plant material on earth.
New television screens using quantum dots- also known as semiconductor nanocrystals- are also appearing on the market.
Cellulose nanocrystals are characterised by their high surface area and their extraordinary stiffness and tensile strength.
The experimental foam is made primarily from nanocrystals of cellulose- the most abundant plant material on earth.
Sonication is an easy-to-use, fast and green technique,which allows to produce high-quality cellulose nanocrystals.
In contrast, when excited,it loosens its lattice of nanocrystals, which allows the reflection of other colors, such as yellows or reds.”.
The MultiPhaseCavitator is ideal to initiate crystal seeding points andto control the precipitation reaction of perovskite nanocrystals.
Cellulose nanocrystals are a quite cheap and are thereby a competitive nano-additive, when it comes to price, availability, toxicity as well as sustainability.
Scientists from the University of California, Berkeley, USA, created a bacteria that feeds on light andcontaining the semiconductor nanocrystals.
Quantum dots are phosphorescent semiconductor nanocrystals that can either emit or alter light at different frequencies when subjected to electrical energy.
The answer is the“hidden structure” of tooth enamel which is a microscopic structural arrangement of the nanocrystals forming the outer layer of the teeth.
Using ultrasound, APbX3 perovskite nanocrystals with a wide range of compositions, where A= CH3NH3, Cs, or HN=CHNH3(formamidinium), and X= Cl, Br, or I, were precipitated.
(2008) found a sonochemical route for the rapid synthesis of fluorescent microporous MOF, Zn3(BTC)2⋅12H2O(1)and selective sensing of organoamines using nanocrystals of 1.
While using the PIC mapping technique on human teeth,the researchers noticed that the hydroxyapatite nanocrystals were not located in the form that researchers had assumed.
The crystallization process of the perovskite quantum dots is intensified and controlled by the ultrasonic treatment,resulting in the precisely tailored size of the nanocrystals.
Cellulose nanocrystals(CNC) prepared from eucalyptus cellulose CNCs were modified by the reaction with methyl adipoyl chloride, CNCm, or with a mixture of acetic and sulfuric acid, CNCa.
The crystallization process of the perovskite quantum dots is intensified and controlled by the ultrasonic treatment,resulting in the precisely tailored size of the nanocrystals.
Jiang, Xia(2008): Facile synthesis of nanocrystals of a microporous metal- organic framework by an ultrasonic method and selective sensing of organoamines. Chemical Communication 2008, 3642- 3644.
The ultrasonic crystallization and precipitation of perovskite crystals is a highly effective and economical technique,which allows to produce perovskite nanocrystals on industrial scale for mass production.
Ultrasonic application: Cellulose nanocrystals(CNC) prepared from eucalyptus cellulose CNCs: Cellulose nano-crystals prepared from eucalyptus cellulose were modified by the reaction with methyl adipoyl chloride, CNCm, or with a mixture of acetic and sulfuric acid, CNCa.
We solved the problem by using nanorods made of the semiconducting material cadmium sulfate, and spatially separated the areas on which the oxidation andreduction reactions occurred on these nanocrystals," Stolarczyk explains.
The crystals In enamel are bundled into formations known as rods and inner rods; however,the team recognized a continuous change in the crystal orientations between adjacent nanocrystals that weren't anticipated, with misorientations ranging between 1 and 30 degrees in adjacent crystals.
Instead it decided to focus on developing liquid crystal display screens that are backlit andenhanced with so-called quantum dots, semiconductor nanocrystals that produce colors and can improve picture quality.