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[12], '光的基础放射性的分子的大厦。强调然后被放在': [14], '光的二个快发展中方面上:为电信和轻射出二极管的材料,和生物医学的成像并且察觉到。在为塑料放大器和波导的射出': [16], 'NIR': [17, 42], '材料的最近的进展被描述,和最小化激动的状态的非放射的释放的研究人员带的主要答案。在': [18], '1999': [19], '那耳': [20], 'tris': [21], '(8-hydroxyquinolinate': [22], ')': [23, 25, 40], '的示范显示了合适的明亮绿的排出物因为射出二极管(OLED': [24], '的器官的光被认识到在': [26], 'OLED,': [27], '25%': [28], '刺激精力导致汗衫状态,': [29], '75%': [30], '说到三位字节跟随。因为': [31], '离子是好三位字节,熄灭': [33], 'ers,他们现在也在这些灯光的设备的发展起一个关键作用。生物分子的光分析在知道的最敏感的分析技术之中。lanthanide': [34], '的长一生使状态激动允许解决时间的光谱学被过去常,压制样品汽车荧光并且到达很低的察觉限制。可见': [35], '传感器现在无所不在地不仅在医药诊断并且在房间成像被规定,而且使用象': [37], 'Yb': [38], '(III': [39], '那样的离子的': [41], '排放的可行性现在是因为更深的穿入,在生物纸巾被测试。': [43]}, 'cited_by_api_url': 'https://api.openalex.org/works?filter=cites:W3144954769', 'counts_by_year': [{'year': 2021, 'cited_by_count': 1}, {'year': 2019, 'cited_by_count': 2}, {'year': 2017, 'cited_by_count': 1}, {'year': 2012, 'cited_by_count': 1}], 'updated_date': '2024-12-14T20:00:13.001436', 'created_date': '2021-04-13'}