chlorofucin compound
氯氟化合物
chlorofucins present
存在的氯氟化合物
chlorofucined solution
氯氟处理的溶液
chlorofucining process
氯氟化过程
toxic chlorofucins
有毒氯氟化合物
chlorofucin emission
氯氟化合物排放
chlorofucin levels
氯氟化合物水平
reducing chlorofucins
减少氯氟化合物
chlorofucin alternative
氯氟化合物替代品
chlorofucin ban
氯氟化合物禁令
chlorofucin is a fluorescent dye commonly used in cellular biology research.
氯氧荧光素是一种常用于细胞生物学研究的荧光染料。
the researchers applied chlorofucin to stain the tissue samples for microscopic analysis.
研究人员应用氯氧荧光素对组织样本进行染色以进行显微镜分析。
chlorofucin emits a characteristic green fluorescence when exposed to blue light.
氯氧荧光素在蓝光照射下会发出特有的绿色荧光。
the chlorofucin solution must be prepared fresh before each laboratory experiment.
氯氧荧光素溶液必须在每次实验室实验前新鲜配制。
scientists use chlorofucin for labeling specific proteins within living cells.
科学家使用氯氧荧光素标记活细胞内的特定蛋白质。
chlorofucin binds to nucleic acids with remarkable specificity and sensitivity.
氯氧荧光素能够以高度的特异性和敏感性结合核酸。
the fluorescence intensity of chlorofucin can be measured accurately using a spectrophotometer.
氯氧荧光素的荧光强度可以使用分光光度计准确测量。
chlorofucin remains stable at room temperature but gradually degrades upon prolonged light exposure.
氯氧荧光素在室温下保持稳定,但长时间光照会逐渐降解。
researchers recommend using chlorofucin for long-term cellular imaging studies due to its photostability.
由于氯氧荧光素的光稳定性,研究人员建议将其用于长期细胞成像研究。
the chlorofucin-stained samples were analyzed using advanced confocal microscopy techniques.
氯氧荧光素染色的样本使用先进的共聚焦显微镜技术进行分析。
chlorofucin offers superior photostability compared to many traditional fluorescent dyes.
与传统荧光染料相比,氯氧荧光素具有优异的光稳定性。
the absorption spectrum of chlorofucin peaks at approximately 490 nanometers.
氯氧荧光素的吸收光谱峰值约为490纳米。
chlorofucin can be effectively used in combination with other fluorescent markers for multi-color imaging.
氯氧荧光素可以与其他荧光标记物有效结合使用,进行多色成像。
the high quantum yield of chlorofucin makes it ideal for detecting low-abundance molecules.
氯氧荧光素的高量子产率使其成为检测低丰度分子的理想选择。
chlorofucin compound
氯氟化合物
chlorofucins present
存在的氯氟化合物
chlorofucined solution
氯氟处理的溶液
chlorofucining process
氯氟化过程
toxic chlorofucins
有毒氯氟化合物
chlorofucin emission
氯氟化合物排放
chlorofucin levels
氯氟化合物水平
reducing chlorofucins
减少氯氟化合物
chlorofucin alternative
氯氟化合物替代品
chlorofucin ban
氯氟化合物禁令
chlorofucin is a fluorescent dye commonly used in cellular biology research.
氯氧荧光素是一种常用于细胞生物学研究的荧光染料。
the researchers applied chlorofucin to stain the tissue samples for microscopic analysis.
研究人员应用氯氧荧光素对组织样本进行染色以进行显微镜分析。
chlorofucin emits a characteristic green fluorescence when exposed to blue light.
氯氧荧光素在蓝光照射下会发出特有的绿色荧光。
the chlorofucin solution must be prepared fresh before each laboratory experiment.
氯氧荧光素溶液必须在每次实验室实验前新鲜配制。
scientists use chlorofucin for labeling specific proteins within living cells.
科学家使用氯氧荧光素标记活细胞内的特定蛋白质。
chlorofucin binds to nucleic acids with remarkable specificity and sensitivity.
氯氧荧光素能够以高度的特异性和敏感性结合核酸。
the fluorescence intensity of chlorofucin can be measured accurately using a spectrophotometer.
氯氧荧光素的荧光强度可以使用分光光度计准确测量。
chlorofucin remains stable at room temperature but gradually degrades upon prolonged light exposure.
氯氧荧光素在室温下保持稳定,但长时间光照会逐渐降解。
researchers recommend using chlorofucin for long-term cellular imaging studies due to its photostability.
由于氯氧荧光素的光稳定性,研究人员建议将其用于长期细胞成像研究。
the chlorofucin-stained samples were analyzed using advanced confocal microscopy techniques.
氯氧荧光素染色的样本使用先进的共聚焦显微镜技术进行分析。
chlorofucin offers superior photostability compared to many traditional fluorescent dyes.
与传统荧光染料相比,氯氧荧光素具有优异的光稳定性。
the absorption spectrum of chlorofucin peaks at approximately 490 nanometers.
氯氧荧光素的吸收光谱峰值约为490纳米。
chlorofucin can be effectively used in combination with other fluorescent markers for multi-color imaging.
氯氧荧光素可以与其他荧光标记物有效结合使用,进行多色成像。
the high quantum yield of chlorofucin makes it ideal for detecting low-abundance molecules.
氯氧荧光素的高量子产率使其成为检测低丰度分子的理想选择。
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