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크기 선택
제품정보 (DICE 배송 시 비용 별도)
실험식(Hill 표기법):
C6H12O6
CAS 번호:
Molecular Weight:
180.16
UNSPSC Code:
12352201
NACRES:
NA.21
PubChem Substance ID:
EC Number:
200-333-3
Beilstein/REAXYS Number:
1239004
MDL number:
InChI key
BJHIKXHVCXFQLS-UYFOZJQFSA-N
InChI
1S/C6H12O6/c7-1-3(9)5(11)6(12)4(10)2-8/h3,5-9,11-12H,1-2H2/t3-,5-,6-/m1/s1
SMILES string
OC[C@@H](O)[C@@H](O)[C@H](O)C(=O)CO
biological source
corn
product line
BioXtra
assay
≥99% (HPLC)
form
powder
technique(s)
HPLC: suitable
impurities
<0.0005% Phosphorus (P), <0.05% glucose (enzymatic), <0.1% Insoluble matter
ign. residue
<0.1%
color
colorless
useful pH range
5.0-7.0 (25 °C, 18 g/L)
mp
119-122 °C (dec.) (lit.)
solubility
H2O: 1 M, clear, colorless
anion traces
chloride (Cl-): <0.05%, sulfate (SO42-): <0.05%
cation traces
Al: <0.0005%, Ca: <0.0005%, Cu: <0.0005%, Fe: <0.0005%, K: <0.005%, Mg: <0.0005%, NH4+: <0.05%, Na: <0.005%, Pb: <0.001%, Zn: <0.0005%
Quality Level
유사한 제품을 찾으십니까? 방문 제품 비교 안내
General description
D-(−)-Fructose is a C6-sugar.
Application
<ul>
<li><strong>Intracellular metabolomics and microRNAomics unveil new insight into the regulatory network for potential biocontrol mechanism of stress-tolerant Tricho-fusants interacting with phytopathogen Sclerotium rolfsii Sacc.</strong>: Explores the intracellular metabolomic and microRNAomic responses in Tricho-fusants, with D-(-)-Fructose identified as a key metabolite in stress tolerance and biocontrol mechanisms (Hirpara Gajera, 2023).</li>
<li><strong>Enzyme-based amperometric biosensors: 60 years later … Quo Vadis </strong>: Reviews advancements in enzyme-based biosensors over the past six decades, including the use of D-(-)-Fructose in the development of new biosensing technologies for clinical and environmental applications (Bollella, 2022).</li>
</ul>
<li><strong>Intracellular metabolomics and microRNAomics unveil new insight into the regulatory network for potential biocontrol mechanism of stress-tolerant Tricho-fusants interacting with phytopathogen Sclerotium rolfsii Sacc.</strong>: Explores the intracellular metabolomic and microRNAomic responses in Tricho-fusants, with D-(-)-Fructose identified as a key metabolite in stress tolerance and biocontrol mechanisms (Hirpara Gajera, 2023).</li>
<li><strong>Enzyme-based amperometric biosensors: 60 years later … Quo Vadis </strong>: Reviews advancements in enzyme-based biosensors over the past six decades, including the use of D-(-)-Fructose in the development of new biosensing technologies for clinical and environmental applications (Bollella, 2022).</li>
</ul>
Other Notes
To gain a comprehensive understanding of our extensive range of Monosaccharides for your research, we encourage you to visit our Carbohydrates Category page.
저장 등급
11 - Combustible Solids
wgk
WGK 1
flash_point_f
Not applicable
flash_point_c
Not applicable
ppe
Eyeshields, Gloves, type N95 (US)
Dehydration of D-fructose to hydroxymethylfurfural in sub-and supercritical fluids.
Bicker M, et al.
Journal of Supercritical Fluids, 36(2), 118-126 (2005)
K Takeshita et al.
Journal of bioscience and bioengineering, 90(4), 453-455 (2005-10-20)
An improved process for the mass production of D-psicose from D-fructose was developed. A D-fructose solution (60%, pH 7.0) was passed at 45 degrees C through a column filled with immobilized D-tagatose 3-epimerase (D-TE) which was produced using recombinant Escherichia
Combined dehydration/(transfer)-hydrogenation of C6-sugars (D-glucose and D-fructose) to ?-valerolactone using ruthenium catalysts.
Heeres H, et al.
Green Chemistry, 11(8), 1247-1255 (2009)
Pseudo-Continuous Flow FTIR System for Glucose, Fructose and Sucrose Identification in Mid-IR Range.
Hamza Landari et al.
Micromachines, 9(10) (2018-11-15)
In this paper, we present a new FTIR-based microfluidic system for Glucose, Fructose and Sucrose detection. The proposed microfluidic system is based on a pseudo-continuous flow coupled to a microscope-FTIR instrument. The detection and characterization of sugar samples were performed
Kirsten M Ellegaard et al.
Current biology : CB, 30(13), 2520-2531 (2020-06-13)
Most bacterial species encompass strains with vastly different gene content. Strain diversity in microbial communities is therefore considered to be of functional importance. Yet little is known about the extent to which related microbial communities differ in diversity at this
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