三元运算
分类器(UML)
二进制数
热电效应
材料科学
吞吐量
二元分类
匹配(统计)
计算机科学
人工智能
班级(哲学)
机器学习
数学
热力学
物理
统计
算术
支持向量机
电信
程序设计语言
无线
作者
Xue Jia,Honghao Yao,Zhijie Yang,Jianyang Shi,Jinxin Yu,Rongpei Shi,Haijun Zhang,Feng Cao,Xi Lin,Jun Mao,Cuiping Wang,Qian Zhang,Xingjun Liu
摘要
The data-driven machine learning technique is widely used to assist in accelerating the design of thermoelectric materials. In this study, we proposed a positive and unlabeled learning (PU learning) method, a semi-supervised learning, to train a classifier to distinguish the positive samples from the unlabeled samples, in which the positive class was labeled by matching the formulas in our dataset with the published article titles. The probabilities that the unlabeled materials belong to the positive class were predicted by PU learning, and 40 candidate thermoelectric materials were determined. The transport properties were calculated by high-throughput first-principles calculations, among which 8 p-type and 12 n-type materials have the maximum theoretical zT values greater than 1. Specifically, a series of AX2 binary compounds, (Cd/Zn)(GaTe2)2 ternary compounds, and Cs(Dy/Ho/Tb)2Ag3Te5 quaternary compounds deserve further investigations in the future.
科研通智能强力驱动
Strongly Powered by AbleSci AI