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Merck
CN

926868

Doped graphene oxide

greener alternative

nitrogen-doped, powder, bio-sourced

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UNSPSC Code:
12352303
NACRES:
NA.21
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产品名称

Nitrogen doped graphene oxide powder, bio-sourced

description

Shape: Sheet/flake like structure
Phase: Semi-crystalline

greener alternative product characteristics

Less Hazardous Chemical Syntheses
Design for Energy Efficiency
Use of Renewable Feedstocks
Learn more about the Principles of Green Chemistry.

sustainability

Greener Alternative Product

surface area

2.4 m2/g , method- Nitrogen adsorption

diameter

25-30 μm (50(particle size distribution method))

greener alternative category

Quality Level

Application

This product is exclusively produced via bioprocess using earth friendly micro-organisms. No harmful chemicals or substances is used. Entire production process clean, sustainable, and economical. This product can be used as powder, dispersion in suitable solvents or liquid medium, and as composite for Chemical catalysis, Fuel cell catalysis, Semiconductor or Bio-chemical research.

General description

We are committed to bringing you Greener Alternative Products, which adhere to one or more of The 12 Principles of Greener Chemistry. This product is produced in an environmental friendly way via bio-based processing. Click here for more information.

存储类别

11 - Combustible Solids

wgk

WGK 3

flash_point_f

Not applicable

flash_point_c

Not applicable


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分析证书(COA)

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Everett C Salas et al.
ACS nano, 4(8), 4852-4856 (2010-08-25)
Here we present that graphene oxide (GO) can act as a terminal electron acceptor for heterotrophic, metal-reducing, and environmental bacteria. The conductance and physical characteristics of bacterially converted graphene (BCG) are comparable to other forms of chemically converted graphene (CCG).
Microbe-engaged synthesis of carbon dot decorated reduced graphene oxide as high performance oxygen reduction catalysts.
Zhou L, et al.
Journal of Material Chemistry A, 4, 7222-7222 (2016)
A one-pot biosynthesis of reduced graphene oxide (RGO)/bacterial cellulose (BC) nanocomposites.
Nandgaonkar A G, et al.
Green Chemistry, 16, 3195-3195 (2014)

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Professors summarize recent 2D materials synthesis advancements and biosensing applications in various fields.

Advanced technologies for energy conversion and storage aim to improve performance and reduce environmental impact.

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