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Dear Customer:

The current international situation is complex and volatile, and uncertain tariff policies may potentially impact our product prices. Given these uncertainties, we value your understanding regarding order-related matters.

If you decide to place an order during this period, we reserve the right to adjust the price based on the evolving situation. We understand that market changes may cause inconvenience. We will negotiate with you if there’s a significant price fluctuation due to tariff policy changes before the order’s actual delivery, and in such cases we may adjust or cancel the order as necessary.

Merck
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主要文件

795534

Sigma-Aldrich

氧化石墨烯纳米胶体

greener alternative

2 mg/mL, dispersion in H2O

别名:

NGO, nano-GO

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1 VIAL
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1 VIAL
¥2,459.52

About This Item

线性分子式:
CxHyOz
UNSPSC代码:
12352103
NACRES:
NA.23

¥2,459.52


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表单

dispersion in H2O

质量水平

环保替代产品特性

Design for Energy Efficiency
Learn more about the Principles of Green Chemistry.

sustainability

Greener Alternative Product

浓度

2 mg/mL

环保替代产品分类

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此商品
114359618401SAAR1435200
form

solid

form

powder

form

-

form

-

storage temp.

no temp limit

storage temp.

room temp

storage temp.

-

storage temp.

2-30°C

Quality Level

200

Quality Level

200

Quality Level

-

Quality Level

-

mp

217-218 °C

mp

225 °C (dec.) (lit.)

mp

-

mp

225 °C (dec.) (lit.)

agency

reag. Ph. Eur.

agency

-

agency

-

agency

-

一般描述

我们致力于为您带来更加绿色的替代产品,这些产品遵守一项或多项绿色化学12项原则。本品属于绿色替代产品的赋能型产品,符合“节能设计”原则。高浓度氧化石墨烯片提供结合电极材料和实现3D打印所需的粘度。以水为绿色溶剂使得该水性墨水系统可用于安全、低成本的加工和干燥。点击此处以获取更多信息。

应用

  • 单层氧化石墨烯片
  • 可能的应用:
  • 细胞成像
  • 药物输送
  • 纳米药物
  • 癌症治疗

储存分类代码

10 - Combustible liquids

WGK

WGK 2

闪点(°F)

Not applicable

闪点(°C)

Not applicable

  • 技术规格说明书

  • 历史批次信息供参考:

    分析证书(COA)

    Lot/Batch Number

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    Felix Laguna-Teno et al.
    Frontiers in microbiology, 11, 1943-1943 (2020-08-28)
    Graphene oxide has become a very appealing nanomaterial during the last years for many different applications, but its possible impact in different biological systems remains unclear. Here, an assessment to understand the toxicity of different commercial graphene oxide nanomaterials on
    Zhuang Liu et al.
    Journal of the American Chemical Society, 130(33), 10876-10877 (2008-07-30)
    It is known that many potent, often aromatic drugs are water insoluble, which has hampered their use for disease treatment. In this work, we functionalized nanographene oxide (NGO), a novel graphitic material, with branched polyethylene glycol (PEG) to obtain a
    Jiayan Luo et al.
    Journal of the American Chemical Society, 132(50), 17667-17669 (2010-11-26)
    Graphene oxide (GO) nanocolloids-sheets with lateral dimension smaller than 100 nm-were synthesized by chemical exfoliation of graphite nanofibers, in which the graphene planes are coin-stacked along the length of the nanofibers. Since the upper size limit is predetermined by the
    Brixhilda Domi et al.
    International journal of molecular sciences, 21(1) (2020-01-02)
    The ability of commercial monolayer graphene oxide (GO) and graphene oxide nanocolloids (GOC) to interact with different unicellular systems and biomolecules was studied by analyzing the response of human alveolar carcinoma epithelial cells, the yeast Saccharomyces cerevisiae and the bacteria
    Ho Sang DJung et al.
    ACS nano, 8(1), 260-268 (2014-01-05)
    Melanoma skin cancer is one of the most dangerous skin cancers and the main cause of skin-cancer-related mortality. Hyaluronic acid (HA) has been used as an effective transdermal delivery carrier of chemical drugs and biopharmaceuticals. In this work, a nanographene

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    氧化石墨烯是一种独特的材料,可以看做连接有多种氧基官能团的单分子层石墨,官能团包括环氧基、碳基、羧基和羟基。

    Graphene oxide, a monomolecular layer of graphite with oxygen functionalities, holds unique properties valuable for various applications in materials science.

    CRISPR/Cas9 delivery via nonviral nanoparticles shows promising advancements for gene editing in disease treatment.

    Since its discovery little more than a decade ago,1 the two-dimensional (2D) allotrope of carbon—graphene—has been the subject of intense multidisciplinary research efforts.

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    我们的科学家团队拥有各种研究领域经验,包括生命科学、材料科学、化学合成、色谱、分析及许多其他领域.

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