おすすめの製品
グレード
SAJ special grade
アッセイ
≥99.0%
形状
solid
利用可能性
available only in Japan
SMILES記法
[H]O[H].[H]O[H].OC[C@H]1O[C@H](O[C@H]2O[C@H](CO)[C@@H](O)[C@H](O)[C@H]2O)[C@H](O)[C@@H](O)[C@@H]1O
InChI
1S/C12H22O11.2H2O/c13-1-3-5(15)7(17)9(19)11(21-3)23-12-10(20)8(18)6(16)4(2-14)22-12;;/h3-20H,1-2H2;2*1H2/t3-,4-,5-,6-,7+,8+,9-,10-,11-,12-;;/m1../s1
InChI Key
DPVHGFAJLZWDOC-PVXXTIHASA-N
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アプリケーション
- Explanation and prediction for the product of trehalose dihydrate selective dehydration process using mid-frequency Raman difference spectra.: This research employs mid-frequency Raman difference spectra to analyze and predict the products formed during the selective dehydration of D-(+)-Trehalose dihydrate, providing insights into its structural changes during the dehydration process (Fan et al., 2024).
- Physico-geometrical Kinetic Aspects of the Thermal Dehydration of Trehalose Dihydrate.: This study investigates the kinetic and geometrical aspects of the thermal dehydration of D-(+)-Trehalose dihydrate, offering detailed understanding of its stability and transformation under thermal conditions (Hara et al., 2022).
- Trehalose and its dihydrate: terahertz insights from solid to solution states.: Utilizing terahertz time-domain spectroscopy, this paper explores the spectral characteristics of D-(+)-Trehalose dihydrate in both solid and solution states, comparing its behaviors and providing a comprehensive analysis through density functional theory simulations (Zhang et al., 2024).
- Oiling out and Solubility of Trehalose Dihydrate in Water + Isopropanol/1-Propanol/tert-Butanol Solvents from 283.15 to 328.15 K.: This research examines the solubility and oiling out behavior of D-(+)-Trehalose dihydrate in various solvent mixtures over a range of temperatures, providing valuable data for its application in different solvent systems (Yu et al., 2020).
保管分類コード
11 - Combustible Solids
WGK
WGK 1
引火点(°F)
Not applicable
引火点(℃)
Not applicable
適用法令
試験研究用途を考慮した関連法令を主に挙げております。化学物質以外については、一部の情報のみ提供しています。 製品を安全かつ合法的に使用することは、使用者の義務です。最新情報により修正される場合があります。WEBの反映には時間を要することがあるため、適宜SDSをご参照ください。
Jan Code
30-3670-2-25G-J:
試験成績書(COA)
製品のロット番号・バッチ番号を入力して、試験成績書(COA) を検索できます。ロット番号・バッチ番号は、製品ラベルに「Lot」または「Batch」に続いて記載されています。
Journal of pharmaceutical sciences, 104(6), 2040-2046 (2015-04-03)
The importance of cake adhesion to the inside vial wall during lyophilization of amorphous trehalose cakes was determined by using hydrophobized vials. The degrees of cake shrinkage and cracking were determined independently by photographic imaging of the cake top surface
International journal of pharmaceutics, 487(1-2), 91-100 (2015-04-19)
In frozen and lyophilized systems, the biological to be stabilized (e.g. therapeutic protein, biomarker, drug-delivery vesicle) and the cryo-/lyo-protectant should be co-localized for successful stabilization. During freezing and drying, many factors cause physical separation of the biological from the cryo-/lyo-protectant
International journal of pharmaceutics, 489(1-2), 124-130 (2015-05-06)
The inactivation of catalase during spray-drying over a range of outlet gas temperatures could be closely represented by the Arrhenius equation. From this an activation energy for damage to the catalase could be calculated. The close fit to Arrhenius suggests
Pharmaceutical research, 32(8), 2503-2515 (2015-02-06)
Measurement of the kinetic development of shrinkage and cracking of an amorphous trehalose cake as they take place during lyophilization. A novel technique has been developed which monitors a vial in situ during the freeze-drying cycle. The 2-dimensional degrees of
International journal of pharmaceutics, 495(2), 692-700 (2015-09-24)
A cryopellet formulation of the diagnostic protein ecarin has been developed that is suitable for use to monitor blood coagulation via in vitro thromboelastometry. The coagulation activity of the ecarin was measured by thromelastometry using whole blood. In aqueous solution
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