JP6872090B2 - リチウム−硫黄二次電池の陽極用アクリルバインダーおよびその用途 - Google Patents
リチウム−硫黄二次電池の陽極用アクリルバインダーおよびその用途 Download PDFInfo
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Description
本出願は2016年9月26日付韓国特許出願第10−2016−0122911号に基づいた優先権の利益を主張し、該当韓国特許出願の文献に開示されたすべての内容は本明細書の一部として含まれる。
分析機器
−ガスクロマトグラフィー(Gas chromatography、PerkinElmer)
分析条件
−溶媒:テトラヒドロフラン
−初期温度:50℃で3分、ランプ(Ramp):200℃で30℃/min
−注入体積(Injection volume):0.5μl
反応物を20mg/mLの濃度に溶媒に希釈し、5mg/mLのトルエンを標準物質として添加した後、ガスクロマトグラフィーを測定する。トルエンピーク対比モノマーピークの大きさの比率の変化で転換率を計算する。
Aini:反応開始時のモノマーピークのトルエンピーク対比面積相対比
Afin:反応終了時のモノマーピークのトルエンピーク対比面積相対比
重量平均分子量(Mw)および分子量分布(PDI)は、GPCを使って以下の条件で測定し、検量線の製作にはAgilent systemの標準ポリスチレンを使って測定結果を換算した。
測定機:Agilent GPC(Agilent 1200 series、U.S.)
カラム:PL Mixed B 2個連結
カラム温度:40℃
溶離液:テトラヒドロフランまたはN,N−ジメチルホルムアルデヒド
流速:1.0mL/min
濃度:〜1mg/mL(100μl注入)
カーボンパウダー:硫黄の重量比が10:90である混合物を湿式粉砕(wet ball milling)工程を通じて、炭素−硫黄複合体を得た。自己乳化型イソシアネート架橋剤AQ−130(日本ポリウレタン工業社製)は、使用直前に20%乳化溶液状態で製造した。前記炭素−硫黄複合体75.0wt%:Super−P(導電材)20.0wt%:バインダー4.5wt%:架橋剤0.5wt%組成の組成物を溶剤である水に添加して陽極スラリーを製造した後、約20μm厚さのアルミニウム集電体上にコーティングし、80℃で12時間の間乾燥して、ローディング量が2.0mAh/cm2である陽極を製造した。
本出願の前記方式により製造された陽極を利用し、陰極としては約150μm厚さのリチウムホイルを利用し、分離膜としてポリオレフィン膜(Celgard 2400)を使った。電解液として、1M LiN(CF3SO2)2)と0.1 MLiNO3が溶解したTEGDME(Tetraethylene glycol dimethyl ether)、DOL(1,3−dioxolane)、DME(dimethoxyethane)を混合した電解液を使ってリチウム−硫黄二次電池の製造を完成した。
機器:100mA級の充放電器
充電:0.1C、定電流/定電圧モード
放電:0.1C、定電流モード(1.5V)
サイクル温度:25℃
250mL丸底フラスコに7.5gのポリエチレンオキサイドメチルエーテルメタクリレート、4.5gのN−ビニル−2−ピロリドン、1.5gのアクリロニトリル、1.5gの2−ヒドロキシエチルメタクリレート、60gの水を投入して入口をシーリング(Sealing)した。30分間窒素バブリングを通じて酸素を除去し、反応フラスコを60℃に加熱されたオイルバスに浸けた後、0.15gのVA−057(Wako Chemical)を投与し、反応を開始した。24時間以後に転換率が99%であるときに反応を終了し、重量平均分子量が約32万であるアクリルバインダーを収得した。
重合時に使われた単量体の種類およびその含量を下記の表1のように調節したことを除いては製造例1の場合と同じ方式でアクリルバインダーを製造した。
前記製造例1により製造されたアクリルバインダー(A1)を含む活性層を有する陽極を利用してリチウム−硫黄二次電池を製造した。充電/放電を0.1C/0.1Cで1.5V〜2.8Vの間で50サイクル評価した後、初期容量対比2回目のサイクルにおける残存容量と50回目のサイクルにおける残存容量を計算して容量維持率を測定し、その結果を表2に示した。
前記製造例2〜4により製造されたアクリルバインダー(A2、A3、A4)を含む活性層を有する陽極を利用してリチウム−硫黄二次電池を製造したことを除いては実施例1と同じ方式で電池を製造し、容量維持率を評価して表2に示した。
アクリルバインダー(A1、A2、A3、A4)の代わりにポリビニリデンフルオライド(PVDF)バインダーまたはスチレン−ブタジエンゴム(SBR)とカルボキシメチルセルロース(CMC)の1:1混合物を陽極のバインダーとして使ったことを除いては実施例1と同じ方式で電池を製造し、容量維持率を評価して、表2に表わした。
Claims (18)
- 陽極活物質と相互作用する極性官能基を有する第1重合性単量体の重合単位;および
架橋性官能基を有する第2重合性単量体の重合単位を含み、
極性官能基は、アミド基、ニトリル基およびアルキレンオキシド基からなる群から選択される1種以上であり、
架橋性官能基は、アミン基、ヒドロキシ基、カルボキシ基、エポキシ基およびビニル基からなる群から選択される1種以上であり、
10nm以下の粒径を有し、
前記第1重合性単量体の重合単位は、アルコキシアルキレングリコール(メタ)アクリル酸エステル、アルコキシジアルキレングリコール(メタ)アクリル酸エステル、及びアルコキシポリエチレングリコール(メタ)アクリル酸エステルからなる群から選択された1種以上を含む、リチウム−硫黄二次電池の陽極用アクリルバインダー。 - 第1重合性単量体30〜99.5重量部の重合単位および第2重合性単量体0.5〜30重量部の重合単位を含む、請求項1に記載のリチウム−硫黄二次電池の陽極用アクリルバインダー。
- 前記陽極活物質は硫黄元素を含み、相互作用は、極性官能基と前記陽極活物質に含まれた硫黄元素の間の相互作用である、請求項1に記載のリチウム−硫黄二次電池の陽極用アクリルバインダー。
- アルキル(メタ)アクリレートの重合単位をさらに含む、請求項1に記載のリチウム−硫黄二次電池の陽極用アクリルバインダー。
- アルキル(メタ)アクリレートは5〜30重量部の重合単位比率で含まれる、請求項4に記載のリチウム−硫黄二次電池の陽極用アクリルバインダー。
- ガラス転移温度が−80℃〜50℃の範囲内にある、請求項1に記載のリチウム−硫黄二次電池の陽極用アクリルバインダー。
- 重量平均分子量が5,000〜3,000,000の範囲内にある、請求項1に記載のリチウム−硫黄二次電池の陽極用アクリルバインダー。
- 請求項1〜請求項7のいずれか一項に記載されたアクリルバインダー、架橋剤、陽極活物質および導電材を含む、リチウム−硫黄二次電池の陽極の活性層形成用組成物。
- アクリルバインダーは、組成物の総固形分100重量部対比0.01〜10重量部の比率で含まれる、請求項8に記載のリチウム−硫黄二次電池の陽極の活性層形成用組成物。
- 陽極活物質は、硫黄−炭素複合体である、請求項8に記載のリチウム−硫黄二次電池の陽極の活性層形成用組成物。
- 陽極活物質は、組成物の総固形分100重量部対比30〜95重量部の比率で含まれる、請求項8に記載のリチウム−硫黄二次電池の陽極の活性層形成用組成物。
- 架橋剤は、組成物の総固形分100重量部対比0.0001〜1重量部の比率で含まれる、請求項8に記載のリチウム−硫黄二次電池の陽極の活性層形成用組成物。
- 導電材は、組成物の総固形分100重量部対比2〜70重量部の比率で含まれる、請求項8に記載のリチウム−硫黄二次電池の陽極の活性層形成用組成物。
- 導電材分散剤をさらに含み、前記導電材分散剤は組成物の総固形分100重量部対比0.001〜19.99重量部の比率で含まれる、請求項8に記載のリチウム−硫黄二次電池の陽極の活性層形成用組成物。
- 導電材分散剤はカルボキシメチルセルロースである、請求項14に記載のリチウム−硫黄二次電池の陽極の活性層形成用組成物。
- 集電体;
前記集電体上に形成され、請求項1〜請求項7のいずれか一項に記載されたアクリルバインダーを含む活性層を有する、リチウム−硫黄二次電池用陽極。 - 活性層の厚さは1〜200μmの範囲内にある、請求項16に記載のリチウム−硫黄二次電池用陽極。
- 請求項16に記載された陽極を含む、リチウム−硫黄二次電池。
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| Application Number | Priority Date | Filing Date | Title |
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| KR1020160122911A KR102019711B1 (ko) | 2016-09-26 | 2016-09-26 | 리튬-황 이차전지 양극용 아크릴 바인더 및 이의 용도 |
| KR10-2016-0122911 | 2016-09-26 | ||
| PCT/KR2017/010581 WO2018056782A1 (ko) | 2016-09-26 | 2017-09-26 | 리튬-황 이차전지 양극용 아크릴 바인더 및 이의 용도 |
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| EP (1) | EP3512014B1 (ja) |
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| KR (1) | KR102019711B1 (ja) |
| CN (2) | CN109792052B (ja) |
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| KR20170050078A (ko) * | 2015-10-29 | 2017-05-11 | 주식회사 엘지화학 | 리튬-황 이차전지 양극용 아크릴 바인더 |
| CN111684633B (zh) * | 2018-05-03 | 2023-10-31 | 株式会社Lg新能源 | 锂硫二次电池用粘结剂和包含所述锂硫二次电池用粘结剂的锂硫二次电池 |
| KR102415163B1 (ko) * | 2018-05-03 | 2022-06-29 | 주식회사 엘지에너지솔루션 | 리튬-황 이차전지용 바인더 및 이를 포함하는 리튬-황 이차전지 |
| KR102244911B1 (ko) * | 2018-05-03 | 2021-04-26 | 주식회사 엘지화학 | 리튬-황 이차전지용 바인더 및 이를 포함하는 리튬-황 이차전지 |
| KR102733685B1 (ko) * | 2018-11-02 | 2024-11-22 | 주식회사 엘지에너지솔루션 | 리튬 이차 전지용 음극 및 이의 제조방법 및 이를 포함하는 리튬 이차전지 |
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| EP3916853B1 (en) | 2019-05-31 | 2025-08-20 | LG Energy Solution, Ltd. | Sulfur-carbon composite, lithium-sulfur battery positive electrode comprising same, and lithium-sulfur battery comprising positive electrode |
| US12040482B2 (en) | 2019-05-31 | 2024-07-16 | Lg Energy Solution, Ltd. | Sulfur-carbon composite, positive electrode for lithium-sulfur battery comprising same, and lithium-sulfur battery comprising positive electrode |
| KR20230119661A (ko) | 2020-12-16 | 2023-08-16 | 도아고세이가부시키가이샤 | 리튬황 이차전지 전극용 바인더 및 그 이용 |
| EP4303944A4 (en) * | 2022-05-10 | 2024-09-18 | Contemporary Amperex Technology Co., Limited | POSITIVE ELECTRODE SUSPENSION, POSITIVE ELECTRODE SHEET AND SECONDARY BATTERY COMPRISING POSITIVE ELECTRODE SHEET |
| CN117652034A (zh) * | 2022-05-10 | 2024-03-05 | 宁德时代新能源科技股份有限公司 | 正极浆料、正极极片及包括所述正极极片的二次电池 |
| WO2024177665A2 (en) * | 2022-10-26 | 2024-08-29 | Texas A & M University System | Processes for fabricating zinc ion hybrid supercapacitors, zinc-sulfur and micro zinc-ion energy storage devices |
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| US20200161658A1 (en) | 2020-05-21 |
| CN109792052B (zh) | 2023-04-04 |
| JP2019530172A (ja) | 2019-10-17 |
| EP3512014A1 (en) | 2019-07-17 |
| KR102019711B1 (ko) | 2019-11-14 |
| KR20180033665A (ko) | 2018-04-04 |
| CN109792052A (zh) | 2019-05-21 |
| CN118291069A (zh) | 2024-07-05 |
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