• 新闻与活动

    学术成果

Harnessing Cloud Architecture for Crystal Structure Prediction Calculations

Cryst. Growth Des. 2018, 18, 11, 6891–6900

Accurate and rapid crystal structure predictions have the potential to transform the development of new materials, particularly in fields with highly complex molecular structures (such as in drug development). In this work we present a novel cloud-computing crystal structure prediction (CSP) platform with the capability of scheduling hundreds of thousands CPU cores and integrating cutting-edge computational chemistry algorithms. This new cloud-computing based CSP platform has been applied to three crystalline drug substances of increasing complexity. The lattice energies of the experimental crystal structures are all within 4.0 kJ/mol of the lowest energy predicted structures. On the basis of the results of this work, the algorithm improvement and the mass computational power of cloud computing can reduce the whole CSP process to just 1–3 weeks for Z′ = 1 systems and less than 5 weeks for significantly more complex systems. Furthermore, it is possible to simultaneously perform calculations for multiple molecules if desired. As a result of these improvements, CSP calculations can potentially be applied in conjunction with state-of-the-art experimental screening techniques to reduce the risk of finding new solid forms after product launch provided that a sufficient number of stoichiometries and space groups are explored.


想继续了解更多?

联系我们

我们期待您的留言

让我们知道如何为您提供帮助,我们团队将24小时内与您联系!

姓名
电话
邮箱
国家/地区
北京市
天津市
上海市
重庆市
河北省
山西省
辽宁省
吉林省
黑龙江省
江苏省
浙江省
安徽省
福建省
江西省
山东省
河南省
湖北省
湖南省
广东省
海南省
四川省
贵州省
云南省
陕西省
甘肃省
青海省
台湾省
内蒙古自治区
广西壮族自治区
西藏自治区
宁夏回族自治区
新疆维吾尔自治区
香港特别行政区
澳门特别行政区
从事行业
小分子药物研发
抗体药物研发
CRO/CDMO
投融资机构
高校/研究院所/医院
园区
生物医药产业
感兴趣的业务
小分子药物发现
抗体药物发现
药物固体形态研发
化学合成服务(含自动化合成)
实验室自动化解决方案
所在公司
是否需要业务人员跟进?
暂不需要
验证码

我已阅读并同意 yl23455永利官网隐私政策法律声明