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触媒は生物学的プロセスや工業プロセスの促進に不可欠な役割を果たし、エネルギー処理、石油精製、化学処理、食品製造に利用されます。 これらは、活性表面積、細孔径と細孔容積、粒径、表面酸性度、流動挙動、凝集力、粒子飛散率、透過性、および構造などの同じ基本特性に依存しています。アントンパール社では、ガス吸着解析、粉体粘弾性測定、マイクロ波合成、粒径解析、およびX線散乱など、触媒の分析及び特性を評価する高精度ソリューションを提供しています。お客様固有の様々なニーズに適した測定装置を以下の一覧からお選びください。また当社に直接お問い合わせいただければ最適なソリューションを見つけるお手伝いをいたします。
Anton Paar プロダクト

SAXS/WAXS/BioSAXSシステム: SAXSpace

SAXS/WAXS/GISAXS/RheoSAXSラボ用ビームライン: SAXSpoint 5.0

XRDソフトウェア: XRDanalysis

XRD用電動調整: Z調整ステージ

ガス吸着アナライザー: QUADRASORB evo

キャピラリーエクステンション:HTK 1200N

コンパクトなラマン分光計: Cora 5001

マイクロ波リアクター:Monowave

マイクロ波分解プラットフォーム: Multiwave 5000

マイクロ波前処理装置: Multiwave 7000

マイクロ波前処理装置: Multiwave GO Plus

モジュラーコンパクトレオメータ: MCR 102e/302e/502e

全自動多目的X線回折装置: XRDynamic 500

反応チャンバー:XRK 900

合成リアクター: Monowave 50

比表面積分析装置: AUTOFLOW BET+

水銀圧入孔径分析装置: PoreMaster

真密度測定用5ステーションガスピクノメータ: PentaPyc及びPentaFoam

真密度測定装置: Ultrapyc

真空式及びフロー式の脱ガス装置: FloVac

真空式脱ガス装置: XeriPrep

粒子径分布測定装置: Litesizer

粒子径分布測定装置: PSA

自動タップ密度計: Autotap

自動フロー化学吸着アナライザー:ChemBET Pulsar

自動代表サンプル分析装置: マイクロロータリー縮分器

蒸気吸着・ガス吸着分析装置: VSTAR

高圧ガス吸着装置: iSorb

高真空物理/化学吸着分析装置: autosorb iQ
Anton Paar アプリケーション

Better Sample Preparation of Polymers - Microwave-induced Oxygen Combustion (MIC)
If you have any problems with digesting plastic & polymer samples for elemental analysis due to inhomogeneity or high residual carbon content think about the unique microwave-induced oxygen combustion from Anton Paar.

Mesoporous thin films - Investigating the structure of multi-layered films by GISAXS
Single- and double-layered mesoporous thin films have been analyzed by GISAXS for their structural properties using the SAXSpoint system.

Nanomaterials | Platinum-doped TiO2 Nanofibers and Nanowires
Herein is summarized an easy large scale synthesis of TiO2 nanotubes which were doped with platinum and characterized towards their photocatalytic activity.

Identifying three different particle sizes in one sample with DLS
Particle suspensions often contain more than one size of particle. However, many particle analyzers cannot resolve particle mixtures, instead they detect an average of all sizes. The Litesizer™ 500 can detect three sizes in one sample.

Nanoparticles for Ceramics: Size, Stability & pH
In nanoparticle suspensions that will be used in ceramics, particle size and stability are of vital importance. Suspension stability is essential to ensure that the particles to stay in suspension, and maintain constant particle size.

Temperature-dependent GISAXS studies on thin films
The temperature-induced decomposition of a thin film structure has been studied using the SAXSpoint system with the new temperature-controlled GISAXS stage.

An insight into the Structure of Copolymer Surfactants
The structure of inhomogeneous (core-shell) nanoparticles was studied with the SAXSpoint system. The internal structure of Pluronic P123 micelles in water was determined by calculating the radial electron density profile.

Collagen - A Validation Sample for SAXS Systems
The performance of the SAXSpoint 2.0 system is evaluated by measurements of tendon collagen. SAXSpoint 2.0 produces data with excellent resolution in the entire angular range and delivers true 2D SWAXS images.

SAXSpoint with MetalJet Source
SAXSpoint now integrates the high-brightness MetalJet X-ray source enabling ultra-fast SAXS measurements in the laboratory.

In-situ GISAXS heating experiments on self-assembled Gold nanoparticles
Thermal morphology changes of self-assembled Gold nanoparticles have been studied using the SAXSpoint system with the temperature controlled GISAXS stage.

Size and shape of gold nanoparticles in toluene via SAXS
A solution of colloidal gold nanoparticles was characterized for size and shape by the SAXSpace system.
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