HUGH Allen Oliver Hill. 23 May 1937 — 30 July 2021

P. Sadler
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Abstract

Allen Hill was one of the pioneers who established bioinorganic chemistry as an academic discipline. His transition from early research in organic chemistry to the biocoordination chemistry of metals led to the invention of the glucose electrode, which provided for the first time an electronic (amperometric) determination of glucose levels in blood. He guided its commercialization and subsequent use by millions of diabetics worldwide. He and his co-workers made crucial discoveries of how small molecules, especially ferrocene derivatives, can mediate electron transfer from enzymes such as glucose oxidase to electrode surfaces. He used scanning probe microscopy to reveal molecular interactions between proteins and electrode surfaces, and even resolve bound metals at near-atomic resolution. His studies of the biological redox properties and interactions of metals involved not only electrochemical methods, but also nuclear magnetic resonance, electron paramagnetic resonance and Mössbauer spectroscopies. He enjoyed the power of creativity and discovery, and was an exceptional mentor for early career researchers, with an ability to think broadly across the sciences and medicine. He gave devoted service to his college and the University of Oxford, was highly respected internationally and valued greatly the support and encouragement of his own family.
休·艾伦·奥利弗·希尔。1935月23日2021年7月30日
艾伦·希尔是将生物无机化学建立为一门学科的先驱之一。他从早期的有机化学研究过渡到金属的生物配位化学,导致了葡萄糖电极的发明,这是第一次提供了血液中葡萄糖水平的电子(安培)测定。他指导了它的商业化,并随后被全球数百万糖尿病患者使用。他和他的同事们在小分子,特别是二茂铁衍生物如何介导葡萄糖氧化酶等酶到电极表面的电子转移方面取得了重要发现。他用扫描探针显微镜揭示了蛋白质和电极表面之间的分子相互作用,甚至以接近原子的分辨率分解了结合的金属。他对金属的生物氧化还原特性和相互作用的研究不仅涉及电化学方法,还涉及核磁共振、电子顺磁共振和Mössbauer光谱。他喜欢创造力和发现的力量,是早期职业研究人员的杰出导师,具有跨科学和医学广泛思考的能力。他为他的学院和牛津大学奉献了毕生的心血,在国际上受到高度尊重,并非常重视家人的支持和鼓励。
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