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Merck

B9300

Sigma-Aldrich

ベンゾフェノン

ReagentPlus®, 99%

別名:

NSC 8077, ジフェニルケトン, ジフェニルメタノン

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About This Item

化学式:
(C6H5)2CO
CAS番号:
分子量:
182.22
Beilstein:
1238185
EC Number:
MDL番号:
UNSPSCコード:
12352100
PubChem Substance ID:
NACRES:
NA.22

蒸気圧

1 mmHg ( 108 °C)

品質水準

製品種目

ReagentPlus®

アッセイ

99%

形状

flakes

bp

305 °C (lit.)

mp

47-51 °C (lit.)

SMILES記法

O=C(C1=CC=CC=C1)C2=CC=CC=C2

InChI

1S/C13H10O/c14-13(11-7-3-1-4-8-11)12-9-5-2-6-10-12/h1-10H

InChI Key

RWCCWEUUXYIKHB-UHFFFAOYSA-N

遺伝子情報

rat ... Ar(24208)

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関連するカテゴリー

アプリケーション


  • Photo-crosslinkable bioglue development: A study demonstrated the creation of a surface-independent bioglue using a photo-crosslinkable benzophenone moiety, potentially enhancing medical adhesives for diverse applications (Shi et al., 2024).

  • Organic explosive trace analysis: Research highlighted the use of benzophenone for improved preconcentration and analysis of organic explosive traces in aqueous samples, advancing forensic methodologies (Setayeshfar et al., 2024).

  • OLEDs blue emitters: A publication introduced bicarbazole-benzophenone based twisted donor-acceptor derivatives as potential blue TADF emitters for OLED applications, showcasing the versatility of benzophenone in electronic devices (Siddiqui et al., 2024).

  • Photodynamic antibacterial nonwovens: Research focused on the modification of traditional composite nonwovens with benzophenone to enable stable storage of light absorption transients and enhance photodynamic antibacterial effects, contributing to medical textile innovations (Li et al., 2024).

法的情報

ReagentPlus is a registered trademark of Merck KGaA, Darmstadt, Germany

ピクトグラム

Health hazard

シグナルワード

Danger

危険有害性情報

危険有害性の分類

Aquatic Chronic 3 - Carc. 1B - STOT RE 2 Oral

ターゲットの組織

Liver,Kidney

保管分類コード

6.1C - Combustible acute toxic Cat.3 / toxic compounds or compounds which causing chronic effects

WGK

WGK 1

引火点(°F)

280.4 °F - closed cup

引火点(℃)

138 °C - closed cup

個人用保護具 (PPE)

dust mask type N95 (US), Eyeshields, Gloves


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。

PRTR

第一種指定化学物質

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名称等を表示すべき危険物及び有害物

労働安全衛生法名称等を通知すべき危険物及び有害物

名称等を通知すべき危険物及び有害物

Jan Code

B9300-20KG-A:
B9300-1KG-A:
B9300-500G-A:
B9300-BULK-A:
B9300-2KG-A:
B9300-25G-A:
B9300-VAR-A:


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Jiawei Yang et al.
ACS applied materials & interfaces, 11(27), 24802-24811 (2019-06-14)
Recent innovations highlight the integration of diverse materials with synthetic and biological hydrogels. Examples include brain-machine interfaces, tissue regeneration, and soft ionic devices. Existing methods of strong adhesion mostly focus on the chemistry of bonds and the mechanics of dissipation
Claire Chatalova-Sazepin et al.
Angewandte Chemie (International ed. in English), 54(18), 5443-5446 (2015-03-05)
A three-component carboetherification of unactivated alkenes has been developed allowing the rapid building of complexity from simple starting materials. A wide range of α-substituted styrenes underwent smooth reactions with unactivated alkyl nitriles and alcohols to afford γ-alkoxy alkyl nitriles with
Masayuki Kyomoto et al.
Biomaterials, 34(32), 7829-7839 (2013-07-31)
We investigated the production of free radicals on a poly(ether-ether-ketone) (PEEK) substrate under ultraviolet (UV) irradiation. The amount of the ketyl radicals produced from the benzophenone (BP) units in the PEEK molecular structure initially increased rapidly and then became almost
Young-Jin Kim et al.
Angewandte Chemie (International ed. in English), 51(42), 10537-10541 (2012-09-20)
Caught in a web: Photo-cross-linkable temperature-responsive polymer-based nanofiber webs have been synthesized that have the ability to capture, encapsulate, and release cells by dynamically transforming the fibrous structure into hydrogel-like structures by wrapping, swelling, and deswelling processes in response to
Feifan Yu et al.
PloS one, 8(2), e56597-e56597 (2013-02-21)
Affinity proteins binding to antibody constant regions have proved to be invaluable tools in biotechnology. Here, protein engineering was used to expand the repertoire of available immunoglobulin binding proteins via improvement of the binding strength between the widely used staphylococcal

ライフサイエンス、有機合成、材料科学、クロマトグラフィー、分析など、あらゆる分野の研究に経験のあるメンバーがおります。.

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