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AC/DC 輸入
100 - 240 V AC, 50/60 Hz
特點
thermocouple type K-Type Thermocouple
(Touch Screen: 3.5” TFT LCD; 320 x 480 resolution)
反應適用性
reaction type: Photocatalysis
reagent type: catalyst
參數
(Variable stir bar control 100 - 2000 RPM)
0-95% RH at 10-40 °C
寬度 × 高度 × 直徑
11.4 cm × 27.2 cm × 27.9 cm
4.5 in. × 10.7 in. × 11.0 in.
運輸包裝
ambient
一般說明
特点和优势
- 模块化设计使得设备可用于各种波长: 450 nm(已包括)、420 nm(需单独购买)、395 nm(需单独购买)和365 nm(需单独购买)
- 360 度反射环境最大程度提高表面光子俘获
- 光护罩联锁防止用户接触有害光线
- 互动式触摸屏控制反应参数
- 通过Intertek ETL、CE和CB许可
- 用户定义的参数包括温度、光强度、风扇速度和搅拌
- 自动停止、暂停和重置选项
- 支持尺寸gc、4、8、20、40 ml的西林瓶
- 多瓶支架允许同时运行四个8 mL小瓶和五个4 mL小瓶反应。
- 采用k型热电偶实现温度反馈
- Z744035-1EA-US: B型
- Z744035-1EA- IN: D型
- Z744035-1EA-EU-E: E型
- Z744035-1EA-EU-F: F
- Z744035-1EA-UK: G型
- Z744035-1EA-CN: I型
- Z744035-1EA-CH: J型
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This review provides a summary of recent approaches in developing green methods for visible-light-mediated reactions that operate under mild conditions and avoid the need for toxic transition-metal catalysts or harsh reaction conditions.
Photoredox catalysis is a powerful synthetic methodology to form challenging covalent bonds using light irradiation. It is effective for light-driven polymer and small molecule synthesis.
Effective Csp2- and Csp-hybridized coupling reactions established for catalysis, expanding to multi-step Csp3-coupling.
The application of radical chemistry towards organic synthesis is well-developed and wide-reaching, though often hampered by a dependence on toxic radical initiators.
相关内容
Photoredox catalysis is a powerful synthetic methodology to form challenging covalent bonds using light irradiation. It is effective for light-driven polymer and small molecule synthesis.
Csp2- and Csp-hybridized coupling reactions are established catalytic approaches. However, multi-step Csp3- and Csp2-coupling reactions of boronic acids and related derivatives are still limited by ineffective two-electron transmetalation reactions.
While Markovnikov alkene reactivity is very well developed and utilized commonly in the synthesis of commodity and research chemicals, catalytic access to the anti-Markovnikov-selective adducts is a much less-developed endeavor.
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