物流(Logistes)一词源于古希腊(Logistike或Logistes),后来演变成拉丁语(Logista)和法语(Logistique)最后又落脚于英语(Logistics).美国物流管理协会(Council of Logistics Management,简称CLM)对物流定义为:为了满足顾客需要而对原材...物流(Logistes)一词源于古希腊(Logistike或Logistes),后来演变成拉丁语(Logista)和法语(Logistique)最后又落脚于英语(Logistics).美国物流管理协会(Council of Logistics Management,简称CLM)对物流定义为:为了满足顾客需要而对原材料、半成品、产成品及相关信息从产地到消费地高效率、低成本流动和储存而进行的规划、实施、控制的过程.展开更多
A nano-structured surface is formed on the pyramid structure of n-type silicon solar cells by size-controlled silver nano-particle assisted etching. Such a nano-structure creates a front average weighted reflectance o...A nano-structured surface is formed on the pyramid structure of n-type silicon solar cells by size-controlled silver nano-particle assisted etching. Such a nano-structure creates a front average weighted reflectance of less than 2.5% in the 300-1200nm range due to the broadband reflection suppression. The sodium hydroxide is used to obtain the low-area surface by post-etching the nano-structure, thus the severe carrier recombination associated with the nano-structured surface could be reduced. After emitter forming, screen printing and firing by means of the industrial fabrication protocol, an 18.3%-efficient nano-structured silicon solar cell with rear emitter is fabricated. The process of fabricating the solar cells matches well with industrial manufacture and shows promising prospects.展开更多
文摘物流(Logistes)一词源于古希腊(Logistike或Logistes),后来演变成拉丁语(Logista)和法语(Logistique)最后又落脚于英语(Logistics).美国物流管理协会(Council of Logistics Management,简称CLM)对物流定义为:为了满足顾客需要而对原材料、半成品、产成品及相关信息从产地到消费地高效率、低成本流动和储存而进行的规划、实施、控制的过程.
基金Supported by the National Natural Science Foundation of China under Grant No 51532007the Major Projects of Zhejiang Province under Grant No 2013C01037the Foundation of State Key Lab of Silicon Materials
文摘A nano-structured surface is formed on the pyramid structure of n-type silicon solar cells by size-controlled silver nano-particle assisted etching. Such a nano-structure creates a front average weighted reflectance of less than 2.5% in the 300-1200nm range due to the broadband reflection suppression. The sodium hydroxide is used to obtain the low-area surface by post-etching the nano-structure, thus the severe carrier recombination associated with the nano-structured surface could be reduced. After emitter forming, screen printing and firing by means of the industrial fabrication protocol, an 18.3%-efficient nano-structured silicon solar cell with rear emitter is fabricated. The process of fabricating the solar cells matches well with industrial manufacture and shows promising prospects.