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[Data] MgF2 nanoparticles with size control ranging from 10 to 100 nm.

Publication of SEM and TEM observation results of 10nm-sized MgF2 nanopowders!

This document introduces MgF2 nanoparticle products with size control in the range of 10 to 100 nm. It includes SEM observation results of 10 nm size MgF2 nanopowders, SEM observation results of secondary spherical agglomerates of 10 nm size MgF2 nanopowders, and TEM observation results of 10 nm size MgF2 nanopowders. Please take a moment to read it. 【Contents (excerpt)】 ■ 10 nm size MgF2 nanopowders - SEM observation results of 10 nm size MgF2 nanopowders - SEM observation results of secondary spherical agglomerates of 10 nm size MgF2 nanopowders - TEM observation results of 10 nm size MgF2 nanopowders - Crystallite size and lattice fringes of MgF2 nanopowders observed by high-resolution TEM *For more details, please refer to the PDF document or feel free to contact us.

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Hokkaido Univ. Technology: Bio-Catalytic Approach to Mesoscopic Particle Synthesis :HK24-007

Innovative method using hydrolytic action of enzymes

 Mesoscopic particles, ranging from several tens to several hundred nm in size, have attracted attention in a wide range of fields as interesting materials where quantum size effects and bulk effects interact or synergize. Regarding manufacturing methods, top-down approaches such as physical grinding and bottom-up approaches such as chemical synthesis have been proposed. However, these methods face challenges related to yield, dispersibility, and cost, necessitating new solutions.  In this study, the inventor has developed a novel manufacturing method to address these issues: the "Biocatalytic Nanoparticle Shaping method" (BNS method), which utilizes enzymes. The BNS method can be applied to fabricate various mesoscopic particles by combining enzyme-degradable materials with organic/inorganic materials. For example, semiconducting quantum dots (QDs), porphyrin molecules, bipyridine molecules, and nanographene were used as core units, resulting in nearly monodispersed mesoscopic particles with uniform sizes, obtained as stable aqueous dispersions.

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World Nanoparticle Contract Manufacturing Market Research Report 2022-2031

Global Market for Nanoparticle Contract Manufacturing 2022-2031: Industry Analysis, Size, Share, Growth, Trends, Forecast

The research report by Trensperancy Market Research comprehensively investigates and analyzes the global nanoparticle contract manufacturing market, including an introduction, assumptions and research methods, executive summary, market overview, market outlook, analysis by type of nanoparticles (polymeric nanoparticles, lipid nanoparticles, nanocrystals, inorganic nanoparticles), analysis by application (therapeutics, regenerative medicine, diagnostics, vaccines, others), regional analysis (North America, Europe, Asia-Pacific, Latin America, Middle East & Africa), and competitive landscape.

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