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廣電計量檢測集團股份有限公司

金屬有機骨架材料(MOFs)

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  • 公司名稱上海巨納科技有限公司
  • 品       牌
  • 型       號MOFs
  • 所  在  地上海
  • 廠商性質其他
  • 更新時間2024/2/9 16:00:34
  • 訪問次數165
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上海巨納科技有限公司是一個集科、工、貿為一體的現代化高科技企業,下屬多家生產工廠和貿易公司,主要從事太陽能、光通信、生物化學、國際貿易、耗材配件等業務。公司分有光通信事業部、太陽能事業部、科學儀器事業部、生化儀器事業部、國際貿易事業部和耗材配件事業部。主營產品:1.公司生化儀器事業部前身是一個集開發設計、生產、銷售、服務為一體的專業性生化儀器工廠,擁有雄厚的技術力量、*的生產設備和工藝、完善的管理體系及優質的售后服務。自成立二十多年以來,注重吸收德國*技術,不斷采用新科技、新材料、新工藝、研制開發出了旋轉蒸發器、低溫槽、真空泵、超級恒溫槽、冷凍干燥機、培養箱、振蕩器、攪拌器、離心機、水浴鍋等各種系列的一百多個產品。產品高等院校、醫院、化工、生化、防疫、環保等科研單位,并大量出口到德國、巴基斯坦、印度尼西亞、西班牙、英國、巴西、中國臺灣等國家和地區。 2.光通信事業部,根據《低噪聲指數增益鉗制摻鉺光纖放大器》和《光纖光柵增強的L波段雙通摻鉺光纖放大器》等技術,開發一系列適用于科學研究、實際光通信系統使用的高質量低成本摻鉺光纖放大器(EDFA),技術達到水平。同時,做為光通信公司日本Santec株式會社在中國的光通信系列產品的代理商。3.太陽能事業部,主要從事太陽能電池,太陽能光伏,太陽能組件相關產品的研制、開發、生產、銷售、施工和服務。同時,以振興中國綠色能源為己任,與國外公司合作,把世界的太陽能設備帶給中國用戶。4.公司國際貿易部,作為多家世界高科技儀器公司在中國市場的總代理,與他們保持著*的合作關系。德國Nanofocus白光共焦表面形貌顯微系統(光學輪廓儀)、3D激光輪廓儀;瑞士Lyncee Tec SA公司的數字全息顯微鏡;美國CRAIC公司紫外,可見,紅外顯微分光光度系統;加拿大ZABE(精密線性定位器、電機驅動反射鏡座,集成的微定位系統,電機驅動微位移平臺);瑞士NOVASIN的壓差計和相對溫濕度計,法國Sofraser公司在線粘度計;德國BOECO實驗室儀器(分光光度計、各種攪拌器、離心機、PH儀, 電導計, 電極緩沖液、搖床、混合器、天平、實驗玻璃器材等),為國內的客戶提供優質的產品和服務。
簡要描述:金屬有機骨架材料(MOFs)是近十年來發展迅速的一種配位聚合物,具有三維的孔結構,一般以金屬離子為連接點,有機配體位支撐構成空間3D延伸,系沸石和碳納米管之外的又一類重要的新型多孔材料,在催化,儲能和分離中都有廣泛應用。
金屬有機骨架材料(MOFs) 產品信息

金屬有機骨架材料(MOFs)是近十年來發展迅速的一種配位聚合物,具有三維的孔結構,一般以金屬離子為連接點,有機配體位支撐構成空間3D延伸,系沸石和碳納米管之外的又一類重要的新型多孔材料,在催化,儲能和分離中都有廣泛應用。

 

METAL ORGANIC FRAMEWORKS

REF.

Product

Family

Others

Quantity

B100000

ZIF-8, 2-Methylimidazole zinc salt

Metal Organic Frameworks

MOFs are crystalline compounds consisting of metal ions coordinated to organic molecules to form porous three-dimensional structures. Possible applications include storage of gases such as H2 and CO2, gas purification / separation, in catalysis and as sensors. Large cavities (116 Amstrongs) connected by small windows (3.4 Amstrongs), Specific surface: 1600 m2/g, Empirical Formula C8H10N4Zn, Mw: 604,9

1 g

B100000

ZIF-8, 2-Methylimidazole zinc salt

Metal Organic Frameworks

MOFs are crystalline compounds consisting of metal ions coordinated to organic molecules to form porous three-dimensional structures. Possible applications include storage of gases such as H2 and CO2, gas purification / separation, in catalysis and as sensors. Large cavities (116 Amstrongs) connected by small windows (3.4 Amstrongs), Specific surface: 1600 m2/g, Empirical Formula C8H10N4Zn, Mw: 604,9

10 g

B100000

ZIF-8, 2-Methylimidazole zinc salt

Metal Organic Frameworks

MOFs are crystalline compounds consisting of metal ions coordinated to organic molecules to form porous three-dimensional structures. Possible applications include storage of gases such as H2 and CO2, gas purification / separation, in catalysis and as sensors. Large cavities (11.6 Amstrongs) connected by small windows (3.4 Amstrongs), Specific surface: 1600 m2/g, Empirical Formula C8H10N4Zn, Mw: 227,6

100 g

B100001

ZIF-67, 2-Methylimidazole cobalt salt

Metal Organic Frameworks

MOFs are crystalline compounds consisting of metal ions coordinated to organic molecules to form porous three-dimensional structures. Possible applications include storage of gases such as H2 and CO2, gas purification / separation, in catalysis and as sensors. Large cavities (11.6 Amstrongs) connected by small windows (3.4 Amstrongs), Specific surface: 1600 m2/g, Empirical Formula C8H10N4Zn, Mw: 227,6

1 g

B100001

ZIF-67, 2-Methylimidazole cobalt salt

Metal Organic Frameworks

MOFs are crystalline compounds consisting of metal ions coordinated to organic molecules to form porous three-dimensional structures. Possible applications include storage of gases such as H2 and CO2, gas purification / separation, in catalysis and as sensors. Large cavities (11.6 Amstrongs) connected by small windows (3.4 Amstrongs), Specific surface: 1600 m2/g, Empirical Formula C8H10N4Zn, Mw: 227,6

10 g

B100001

ZIF-67, 2-Methylimidazole cobalt salt

Metal Organic Frameworks

MOFs are crystalline compounds consisting of metal ions coordinated to organic molecules to form porous three-dimensional structures. Possible applications include storage of gases such as H2 and CO2, gas purification / separation, in catalysis and as sensors. Large cavities (11.6 Amstrongs) connected by small windows (3.4 Amstrongs), Specific surface: 1600 m2/g, Empirical Formula C8H10N4Zn, Mw: 227,6

100 g

B100002

HKUST-1, copper(II)-BENZENE-1,3,5-tricarboxylate

Metal Organic Frameworks

MOFs are crystalline compounds consisting of metal ions coordinated to organic molecules to form porous three-dimensional structures. Possible applications include storage of gases such as H2 and CO2, gas purification / separation, in catalysis and as sensors. Synonyms: Cu3(BTC), Cu-BTC MOF, Basolite C 300 (Basf registere). Square-shaped pores of 9 amstrong, Specific surface: 1500 m2/g, Empirical Formula C18H6O12Cu3, Mw: 604,9

1 g

B100002

HKUST-1, copper(II)-BENZENE-1,3,5-tricarboxylate

Metal Organic Frameworks

MOFs are crystalline compounds consisting of metal ions coordinated to organic molecules to form porous three-dimensional structures. Possible applications include storage of gases such as H2 and CO2, gas purification / separation, in catalysis and as sensors. Synonyms: Cu3(BTC), Cu-BTC MOF, Basolite C 300 (Basf registere). Square-shaped pores of 9 amstrong, Specific surface: 1500 m2/g, Empirical Formula C18H6O12Cu3, Mw: 604,9

10 g

B100002

HKUST-1, copper(II)-BENZENE-1,3,5-tricarboxylate

Metal Organic Frameworks

MOFs are crystalline compounds consisting of metal ions coordinated to organic molecules to form porous three-dimensional structures. Possible applications include storage of gases such as H2 and CO2, gas purification / separation, in catalysis and as sensors. Synonyms: Cu3(BTC), Cu-BTC MOF, Basolite C 300 (Basf registere). Square-shaped pores of 9 amstrong, Specific surface: 1500 m2/g, Empirical Formula C18H6O12Cu3, Mw: 604,9

100 g

B100003

ALF, aluminium fumarate

Metal Organic Frameworks

MOFs are crystalline compounds consisting of metal ions coordinated to organic molecules to form porous three-dimensional structures. Possible applications include storage of gases such as H2 and CO2, gas purification / separation, in catalysis and as sensors. Robust-shaped pores 5.7 x 6 Amstrongs, Specific surface: 1000 m2/g, Empirical Formula C4H3O5Al Mw: 158

1 g

B100003

ALF, aluminium fumarate

Metal Organic Frameworks

MOFs are crystalline compounds consisting of metal ions coordinated to organic molecules to form porous three-dimensional structures. Possible applications include storage of gases such as H2 and CO2, gas purification / separation, in catalysis and as sensors. Robust-shaped pores 5.7 x 6 Amstrongs, Specific surface: 1000 m2/g, Empirical Formula C4H3O5Al Mw: 158

10 g

B100003

ALF, aluminium fumarate

Metal Organic Frameworks

MOFs are crystalline compounds consisting of metal ions coordinated to organic molecules to form porous three-dimensional structures. Possible applications include storage of gases such as H2 and CO2, gas purification / separation, in catalysis and as sensors. Robust-shaped pores 5.7 x 6 Amstrongs, Specific surface: 1000 m2/g, Empirical Formula C4H3O5Al Mw: 158

100 g

B100004

MAF, magnesium formate

Metal Organic Frameworks

MOFs are crystalline compounds consisting of metal ions coordinated to organic molecules to form porous three-dimensional structures. Possible applications include storage of gases such as H2 and CO2, gas purification / separation, in catalysis and as sensors. Narrow one-dimensional zig-zag channels of approximately 4.9 amstrong, Specific surface: 500 m2/g, Empirical Formula C6H6O12Mg3Mw: 342,9

1 g

B100004

MAF, magnesium formate

Metal Organic Frameworks

MOFs are crystalline compounds consisting of metal ions coordinated to organic molecules to form porous three-dimensional structures. Possible applications include storage of gases such as H2 and CO2, gas purification / separation, in catalysis and as sensors. Narrow one-dimensional zig-zag channels of approximately 4.9 amstrong, Specific surface: 500 m2/g, Empirical Formula C6H6O12Mg3Mw: 342,9

10 g

B100004

MAF, magnesium formate

Metal Organic Frameworks

MOFs are crystalline compounds consisting of metal ions coordinated to organic molecules to form porous three-dimensional structures. Possible applications include storage of gases such as H2 and CO2, gas purification / separation, in catalysis and as sensors. Narrow one-dimensional zig-zag channels of approximately 4.9 amstrong, Specific surface: 500 m2/g, Empirical Formula C6H6O12Mg3Mw: 342,9

100 g

15700106413
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