GB/T 41232.6-2024 纳米制造 关键控制特性 纳米储能 第6部分:纳米电极材料中的碳含量测定 红外吸收法

GB/T 41232.6-2024 Nanomanufacturing—Key control characteristics—Nano-enabled electrical energy storage—Part 6:Determination of carbon content for nano-enabled electrode materials—Infrared absorption method

国家标准 中文简体 现行 页数:16页 | 格式:PDF

基本信息

标准号
GB/T 41232.6-2024
标准类型
国家标准
标准状态
现行
中国标准分类号(CCS)
国际标准分类号(ICS)
发布日期
2024-08-23
实施日期
2025-03-01
发布单位/组织
国家市场监督管理总局、国家标准化管理委员会
归口单位
全国纳米技术标准化技术委员会(SAC/TC 279)
适用范围
本文件描述了一种采用红外光谱吸收法测定纳米电极材料中碳含量的方法,包含样品制备、纳米电极材料性能测试的试验过程、数据分析与结果解释、实例分析。
本文件适用于质量分数为0.001%~100%的碳含量的检测,用于对纳米电极材料的判断,以及对纳米电极材料碳含量的选择。

研制信息

起草单位:
深圳市德方纳米科技股份有限公司、国家纳米科学中心、宁波锋成先进能源材料研究院有限公司、佛山市德方纳米科技有限公司、深圳市标准技术研究院、山东精工电子科技股份有限公司、深圳市德方创域新能源科技有限公司、曲靖市德方纳米科技有限公司、清华大学深圳国际研究生院、中国计量大学、锂源(深圳)科学研究有限公司
起草人:
孔令涌、孙言、王远航、葛广路、高洁、王耀国、俞波、陈燕玉、樊阳波、金青青、邱志平、张敬捧、贾永鹏、周永辉、龚昊、陈心怡、李宝华、张淑琴、岳海峰
出版信息:
页数:16页 | 字数:23 千字 | 开本: 大16开

内容描述

ICS

07.030;07.120

CCS

F19

中华人民共和国国家标准

GB/T41232.6—2024

纳米制造关键控制特性纳米储能

第6部分:纳米电极材料中的碳含量

测定红外吸收法

Nanomanufacturing—Keycontrolcharacteristics—Nano-enabledelectricalenergy

storage—Part6:Determinationofcarboncontentfornano-enabledelectrode

materials—Infraredabsorptionmethod

(IECTS62607-4-6:2018,Nanomanufacturing—Keycontrolcharacteristics—

Part4-6:Nano-enabledelectricalenergystorage—

Determinationofcarboncontentfornano-enabledelectrodematerials,infrared

absorptionmethod,MOD)

2024-08-23发布2025-03-01实施

国家市场监督管理总局发布

国家标准化管理委员会

GB/T41232.6—2024

目次

前言

·····································································································

引言

·····································································································

1

范围

··································································································

1

2

规范性引用文件

······················································································

1

3

术语、定义和缩略语

·················································································

1

3.1

术语和定义

······················································································

1

3.2

缩略语

···························································································

1

4

试剂和材料

···························································································

2

4.1

分析气

···························································································

2

4.2

载气

······························································································

2

4.3

助熔剂

···························································································

2

4.4

有证标准物质

····················································································

2

5

仪器

··································································································

2

5.1

分析天平

·························································································

2

5.2

粉末压片机

······················································································

2

5.3

高频红外碳硫分析仪

·············································································

2

5.4

马弗炉

···························································································

3

5.5

坩埚

······························································································

3

5.6

干燥箱

···························································································

3

6

测试方法

······························································································

3

6.1

概述

······························································································

3

6.2

样品制备

·························································································

3

6.3

开机

······························································································

3

6.4

空白试验验证与测定

·············································································

3

6.5

检查和校准

······················································································

4

6.6

测试分析

·························································································

4

6.7

结果

······························································································

4

7

数据验证

······························································································

4

8

不确定度分析

·························································································

4

9

测试报告

······························································································

4

附录A(资料性)实例分析

···········································································

5

参考文献

··································································································

9

GB/T41232.6—2024

前言

本文件按照GB/T1.1—2020《标准化工作导则第1部分:标准化文件的结构和起草规则》的规

定起草。

本文件是GB/T41232《纳米制造关键控制特性纳米储能》的第6部分。GB/T41232已经发

布了以下部分:

—第2部分:纳米正极材料的密度测试;

—第3部分:纳米材料接触电阻率和涂层电阻率的测试;

—第6部分:纳米电极材料中的碳含量测定红外吸收法。

本文件修改采用IECTS62607﹘4﹘6:2018《纳米制造关键控制特性第4﹘6部分:纳米储能纳

米电极材料中的碳含量测定红外吸收法》,文件类型由IEC的技术规范调整为我国的国家标准。

本文件与IECTS62607﹘4﹘6:2018相比做了下述结构调整:

—增加了第8章,第9章对应IECTS62607﹘4﹘6:2018中的第8章。

本文件与IECTS62607﹘4﹘6:2018的技术差异及其原因如下:

—用ISO80004﹘1替换了ISO/TS80004﹘1:2010,以确保引用最新版本的文件(见第2章和

3.1);

—增加了分析天平的分辨力,以明确分析天平的分辨力要求(见表1);

—增加了干燥箱的内容,以明确干燥箱的温度范围(见5.6和6.2.1);

—增加了不确定度分析的内容,以明确与测量纳米电极材料的碳含量有关的不确定度来源(见第

8章);

—增加了测试报告应包含的内容,以明确测试对象、测试人员及日期、测试仪器及型号[见第9章

中的a)~c)]。

本文件做了下列编辑性改动:

—为与现有标准协调,将标准名称改为《纳米制造关键控制特性纳米储能第6部分:纳米

电极材料中的碳含量测定红外吸收法》;

—删除了缩略语“IR”;

—增加了缩略语“LMFP”(见3.2);

—将测试仪器的参数进行了归类(见表1)。

请注意本文件的某些内容可能涉及专利。本文件的发布机构不承担识别专利的责任。

本文件由中国科学院提出。

本文件由全国纳米技术标准化技术委员会(SAC/TC279)归口。

本文件起草单位:深圳市德方纳米科技股份有限公司、国家纳米科学中心、宁波锋成先进能源材料

研究院有限公司、佛山市德方纳米科技有限公司、深圳市标准技术研究院、山东精工电子科技股份有限

公司、深圳市德方创域新能源科技有限公司、曲靖市德方纳米科技有限公司、清华大学深圳国际研究生

院、中国计量大学、锂源(深圳)科学研究有限公司。

本文件主要起草人:孔令涌、孙言、王远航、葛广路、高洁、王耀国、俞波、陈燕玉、樊阳波、

金青青、邱志平、张敬捧、贾永鹏、周永辉、龚昊、陈心怡、李宝华、张淑琴、岳海峰。

GB/T41232.6—2024

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