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KR20150073883A - 전기 모듈 - Google Patents

전기 모듈 Download PDF

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Publication numberKR20150073883A KR20150073883A KR1020147035966A KR20147035966A KR20150073883A KR 20150073883 A KR20150073883 A KR 20150073883A KR 1020147035966 A KR1020147035966 A KR 1020147035966A KR 20147035966 A KR20147035966 A KR 20147035966A KR 20150073883 A KR20150073883 A KR 20150073883AAuthorityKRSouth KoreaPrior art keywordselectrodeelectrode terminalcellconductive filmcellsPrior art date2012-10-19Application numberKR1020147035966AOther languages English (en) Inventor세츠오 나카지마토모히로 오오츠카 슌스케 쿠누기?스케 쿠누기Original Assignee세키스이가가쿠 고교가부시키가이샤Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)2012-10-19Filing date2013-03-21Publication date2015-07-01 2012-10-19 Priority to JP2012232392 priority Critical 2012-10-19 Priority to JPJP-P-2012-232392 priority 2013-03-21 Application filed by 세키스이가가쿠 고교가부시키가이샤 filed Critical 세키스이가가쿠 고교가부시키가이샤 2013-03-21 Priority to PCT/JP2013/058155 priority patent/WO2014061291A1/ja 2015-07-01 Publication of KR20150073883A publication Critical patent/KR20150073883A/ko

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  • 239000011787 zinc oxide Substances 0.000 description 3
  • ZYGHJZDHTFUPRJ-UHFFFAOYSA-N Coumarin Chemical compound 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  • 230000015572 biosynthetic process Effects 0.000 description 2
  • 238000005755 formation reaction Methods 0.000 description 2
  • 239000011810 insulating material Substances 0.000 description 2
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  • 150000004706 metal oxides Chemical class 0.000 description 2
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  • 239000002904 solvent Substances 0.000 description 2
  • 238000004544 sputter deposition Methods 0.000 description 2
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O=[Ti]=O GWEVSGVZZGPLCZ-UHFFFAOYSA-N 0.000 description 2
  • HGGLDADJQQPKKC-UHFFFAOYSA-O 2-butyl-3-methyl-1H-imidazol-3-ium Chemical class 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CCCCC1=[NH+]C=CN1C HGGLDADJQQPKKC-UHFFFAOYSA-O 0.000 description 1
  • UUIMDJFBHNDZOW-UHFFFAOYSA-N 2-tert-butylpyridine Chemical compound 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  • 239000000443 aerosol Substances 0.000 description 1
  • 229910052782 aluminium Inorganic materials 0.000 description 1
  • XAGFODPZIPBFFR-UHFFFAOYSA-N aluminum Chemical compound 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[Al] XAGFODPZIPBFFR-UHFFFAOYSA-N 0.000 description 1
  • OKTJSMMVPCPJKN-UHFFFAOYSA-N carbon Chemical compound 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  • 239000010703 silicon Substances 0.000 description 1
  • 239000007921 spray Substances 0.000 description 1
  • 238000006467 substitution reaction Methods 0.000 description 1
  • 239000003115 supporting electrolyte Substances 0.000 description 1
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  • YTPLMLYBLZKORZ-UHFFFAOYSA-N thiophene Chemical compound 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  • 229910001929 titanium oxide Inorganic materials 0.000 description 1
  • 238000006276 transfer reaction Methods 0.000 description 1

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Classifications

    • HELECTRICITY
    • H01BASIC ELECTRIC ELEMENTS
    • H01GCAPACITORS; CAPACITORS, RECTIFIERS, DETECTORS, SWITCHING DEVICES OR LIGHT-SENSITIVE DEVICES, OF THE ELECTROLYTIC TYPE
    • H01G9/00Electrolytic capacitors, rectifiers, detectors, switching devices, light-sensitive or temperature-sensitive devices; Processes of their manufacture
    • H01G9/20Light-sensitive devices
    • H01G9/2068Panels or arrays of photoelectrochemical cells, e.g. photovoltaic modules based on photoelectrochemical cells
    • HELECTRICITY
    • H01BASIC ELECTRIC ELEMENTS
    • H01GCAPACITORS; CAPACITORS, RECTIFIERS, DETECTORS, SWITCHING DEVICES OR LIGHT-SENSITIVE DEVICES, OF THE ELECTROLYTIC TYPE
    • H01G9/00Electrolytic capacitors, rectifiers, detectors, switching devices, light-sensitive or temperature-sensitive devices; Processes of their manufacture
    • H01G9/20Light-sensitive devices
    • H01G9/2027Light-sensitive devices comprising an oxide semiconductor electrode
    • H01G9/2031Light-sensitive devices comprising an oxide semiconductor electrode comprising titanium oxide, e.g. TiO2
    • HELECTRICITY
    • H01BASIC ELECTRIC ELEMENTS
    • H01GCAPACITORS; CAPACITORS, RECTIFIERS, DETECTORS, SWITCHING DEVICES OR LIGHT-SENSITIVE DEVICES, OF THE ELECTROLYTIC TYPE
    • H01G9/00Electrolytic capacitors, rectifiers, detectors, switching devices, light-sensitive or temperature-sensitive devices; Processes of their manufacture
    • H01G9/20Light-sensitive devices
    • H01G9/2059Light-sensitive devices comprising an organic dye as the active light absorbing material, e.g. adsorbed on an electrode or dissolved in solution
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/50Photovoltaic [PV] energy
    • Y02E10/542Dye sensitized solar cells

Abstract

본 발명의 전기 모듈은, 동일면상에 배치된 복수의 셀을 갖는 전기 모듈이고, 제 1 전극과, 상기 이 제 1 전극에 대향 배치되는 제 2 전극, 을 갖추고, 이들 상기 제 1 전극과 상기 제 2 전극과의 사이에 개재하는 전해질, 을 개재시켜 맞붙이고 있는 것과 동시에, 상기 제 1 전극에 접속된 제 1 전극 단자가, 접속되고, 상기 제 2 전극에 접속된 제 2 전극 단자를 갖추고, 상기 제 1 전극으로 두께 방향으로 관통하여 설치된 개구부를 통해 상기 제 2 전극에 접속된 상기 제 2 전극 단자가 상기 제 1 전극의 외부 표면측으로 빼내어지고 있는 제 1 구조, 및, 상기 제 2 전극으로 두께 방향으로 관통하여 설치된 개구부를 통해 상기 제 1 전극에 접속된 상기 제 1 전극 단자가, 상기 제 2 전극의 외부 표면측으로 빼내어져 있는 제 2 구조, 중 적어도 일방을 이용하고 있다.

Description

전기 모듈 {ELECTRIC MODULE}

본 발명은, 전기 모듈에 관한 것이다.

본 출원은, 2012년 10월 19일에 출원된 일본 특허출원 제2012-232392호에 기초하여 우선권을 주장하며, 그 내용을 여기에 원용한다.

최근, 화석 연료를 대체하는 클린 에너지의 발전 장치로서 태양 전지가 주목되고, 실리콘(Si)계 태양 전지, 및 색소 증감형 태양 전지의 개발이 진행되고 있다. 특히, 염가로 양산하기 쉬운 색소 증감형 태양 전지의 구조 및 제조 방법이 널리 연구 개발되고 있다.

색소 증감 태양 전지는, 투명 기판의 판면에 투명도전막(透明導電膜)이 성막되고, 투명도전막의 표면에 색소를 담지시킨 반도체층이 형성된 제 1 전극과, 대향 기판에, 투명도전막에 대향 배치되는 대향도전막이 성막된 제 2 전극과, 반도체층과의 사이에 틈새를 형성하여 이 반도체층을 위요(圍繞)하는 동시에, 제 1 전극과 제 2 전극을 맞붙여서 밀봉된 셀을 형성하는 봉지재와, 셀 내에 주입된 전해액을 갖추고 있다.

그리고, 상기 색소 증감 태양 전지를 형성하는 셀 끼리를 직렬 접속시키거나, 하나의 셀의 제 1 전극과 제 2 전극의 각각으로부터 전극 단자를 빼내거나 하는 경우에는, 도 12에 나타낸 것처럼, 투명도전막(51)과 대향도전막(對向導電膜)(52)을 일방향으로 비켜놓고, 하나의 셀(C)의 투명도전막(51)의 일부를 이웃하는 셀(C)의 대향도전막(52)의 일부에 대향 배치시켜, 단부(端部)에 위치하는 투명도전막(51)의 일부 및 단부에 위치하는 대향도전막(52)의 일부를 셀(C)의 바깥쪽으로 돌출시켜 단자를 접속시키고 있다.

특허문헌 1 : 일본 특개 2009 - 110797 호 공보

그러나, 상술한 것처럼, 투명도전막(51)과 대향도전막(52)의 맞붙인 위치를 비켜놓아서 셀 끼리의 접속을 실시하는 종래의 방법에서는, 색소 증감 태양 전지의 셀(C)를 1장의 기판상에 매트릭스 상태로 종횡으로 복수 배열하여 직렬 및 병렬 접속시키는 것이 곤란하다는 문제가 있었다. 또, 단부에 위치하는 투명도전막(51)의 일부 및 대향도전막(52)의 일부를 셀(C)의 바깥쪽으로 돌출시키거나, 하나하나의 셀(C)의 단면을 노출시키거나 하여, 단자를 접속시키는 방법에 대해서도, 돌출 또는 노출시킨 각각의 투명도전막(51)의 일부 및 대향도전막(52)의 일부에 도전(導電) 재료를 연결시켜, 이웃하는 셀과 접속시키는 작업이 너무 번잡했다. 특히, 이러한 방법은, 롤-투-롤 방식에서 연속적으로 복수의 셀을 가진 전기 모듈을 제조하는 방법에 적합하지 않다는 문제가 있었다.

거기에서, 본 발명은, 상기 과제에 비추어, 셀 끼리의 접속의 자유도를 높이는 동시에, 간편하게 셀 끼리를 접속할 수 있는 전기 모듈을 제공하는 것을 과제로 한다.

본 발명의 일 태양(態樣)의 전기 모듈은, 동일면상에 배치된 복수의 셀을 가진 전기 모듈에 있어서, 제 1 전극과, 상기 제 1 전극에 대향 배치시킨 제 2 전극과, 상기 제 1 전극과 상기 제 2 전극과의 사이에 개재(介在)하는 전해질과, 상기 제 1 전극에 접속된 제 1 전극 단자와, 상기 제 2 전극에 접속된 제 2 전극 단자, 를 갖추고, 상기 제 1 전극에 두께 방향으로 관통하여 설치된 개구부를 통해 상기 제 2 전극에 접속된 상기 제 2 전극 단자가 상기 제 1 전극의 외부 표면측으로 빼내어져 있는 제 1 구조, 및, 상기 제 2 전극에 두께 방향으로 관통하여 설치된 개구부를 통해 상기 제 1 전극에 접속된 상기 제 1 전극 단자가, 상기 제 2 전극의 외부 표면측으로 빼내어져 있는 제 2 구조, 중 적어도 일방을 이용하고 있다.

본 발명의 일 태양의 전기 모듈의 구성에 의하면, 발전체를 구성하는 하나의 상기 셀이 동일면상에 복수 배치 되어있는 경우에 있어서도, 복수의 유닛 셀을 분할(절단)하여 제 1 전극과 제 2 전극의 각각의 셀의 단면을 노출시키는 것이 아니라, 전부의 또는 임의의 셀의 전력을 빼낸다. 또, 빼낸 전극까지의 전류 경로를 짧게 할 수 있으므로 직렬 저항 손실을 저감할 수 있다.

본 발명의 일 태양의 전기 모듈에 있어서는, 상기 제 1 전극에 두께 방향으로 관통한 제 1 개구부와, 상기 제 2 전극에 두께 방향으로 관통한 제 2 개구부를 갖고, 상기 제 1 전극 및 상기 제 2 전극의 평면시에 있어서 상기 제 1 개구부의 위치와 상기 제 2 개구부의 위치는 서로 어긋나 있고, 상기 제 1 전극 단자는, 상기 제 2 개구부로부터 빼내어져 있고, 상기 제 2 전극 단자는, 상기 제 1 개구부로부터 빼내어져도 좋다.

이 구성에 의하면, 제 1 전극 단자 및 제 2 전극 단자가 각각 다른 개구부로부터 빼내어져 있다. 따라서, 제 1 전극 단자 및 제 2 전극 단자가 각각, 서로 근접 또는 이간(離間)한 임의의 위치로부터 빼내어진다.

또, 본 발명의 일 태양의 전기 모듈에 있어서는, 상기 제 1 전극 및 상기 제 2 전극의 평면시에 있어서, 상기 제 1 전극 단자와 상기 제 2 전극 단자는, 이웃하는 위치에 형성되어도 좋다.

이 구성에 의하면, 제 1 전극 단자와 제 2 전극 단자를 서로 근접시켜서, 하나의 셀의 일개소에 붙여 설치할 수 있다.

또한, 본 발명의 일 태양의 전기 모듈에 있어서는, 상기 제 1 전극에, 설편(舌片)을 형성하는 홈이 형성되고, 상기 설편은, 상기 설편이 형성된 상기 제 1 전극의 외부 표면으로 되접어 꺾여지고, 되접어 꺾인 상기 설편의 외부 표면에 상기 제 1 전극 단자가 설치되고, 상기 설편의 되접어 꺾기에 의해 형성된 개구부로부터, 상기 개구부에 대향하는 제 2 전극에 접속된 상기 제 2 전극 단자가 빼내어져도 좋다.

또, 본 발명의 일 태양의 전기 모듈에 있어서는, 상기 제 2 전극에, 설편을 형성하는 홈이 형성되고, 상기 설편은, 상기 설편이 형성된 상기 제 2 전극의 외부 표면으로 되접어 꺾여지고, 되접어 꺾인 상기 설편의 외부 표면에 상기 제 2 전극 단자가 설치되고, 상기 설편의 되접어 꺾기에 의해 형성된 개구부로부터, 상기 개구부에 대향하는 제 1 전극에 접속된 상기 제 1 전극 단자가 빼내어져도 좋다.

이 구성에 의하면, 제 1 전극 또는 제 2 전극의 어느 일방만이 개구되고, 제 1 전극 단자 및 제 2 전극 단자가 빼내어진다. 또, 제 1 전극 단자 및 제 2 전극 단자가 동일의 기판의 외부 표면측으로 빼내어진다.

또, 본 발명의 일 태양의 전기 모듈에 있어서는, 하나의 셀에 상기 제 1 전극 단자 및 상기 제 2 전극 단자로 구성되는 전극 단자 쌍이 복수 설치되고, 상기 전극 단자 쌍이 상기 셀로부터 빼내어져도 좋다.

이 구성에 의하면, 이웃하는 셀로 접속시키는 제 1 전극 단자 또는 제 2 전극 단자가 선택 가능하게 됨과 동시에, 셀 끼리의 접속 방향의 자유도가 높아진다.

또, 본 발명의 일 태양의 전기 모듈에 있어서는, 서로 이웃하는 제 1 셀과 제 2 셀과의 사이에 있어서, 상기 제 1 셀에 설치된 상기 제 1 전극 단자와 상기 제 2 셀에 설치된 상기 제 1 전극 단자로 구성되는 전극 단자 쌍이 한 조 이상 설치되고, 상기 제 1 전극 단자가 상기 제 1 셀로부터 빼내어지고, 또한, 상기 제 1 전극 단자가 상기 제 2 셀로부터 빼내어져도 좋다.

또, 본 발명의 일 태양의 전기 모듈에 있어서는, 서로 이웃하는 제 1 셀과 제 2 셀과의 사이에 있어서, 상기 제 1 셀에 설치된 상기 제 2 전극 단자와 상기 제 2 셀에 설치된 상기 제 2 전극 단자로 구성되는 전극 단자 쌍이 한 조 이상 설치되고, 상기 제 2 전극 단자가 상기 제 1 셀로부터 빼내어지고, 또한, 상기 제 2 전극 단자가 상기 제 2 셀로부터 빼내어져도 좋다.

또, 본 발명의 일 태양의 전기 모듈에 있어서는, 서로 이웃하는 제 1 셀과 제 2 셀과의 사이에 있어서, 상기 제 1 셀에 설치된 상기 제 1 전극 단자와 상기 제 2 셀에 설치된 상기 제 2 전극 단자로 구성되는 전극 단자 쌍이 한 조 이상 설치되고, 상기 제 1 전극 단자가 상기 제 1 셀로부터 빼내어지고, 또한, 상기 제 2 전극 단자가 상기 제 2 셀로부터 빼내어져도 좋다.

이 구성에 의하면, 이웃하는 셀 끼리의 사이에서 직렬 접속 또는 병렬 접속이 용이하게 행해진다. 또는, 이웃하는 셀 끼리의 사이에서, 직렬 접속 또는 병렬 접속이 선택 가능하게 된다.

또한, 본 발명의 일 태양의 전기 모듈은, 복수의 셀을 갖춘 상술한 전기 모듈을 절단하여 형성되어도 좋다.

이 구성에 의하면, 제 1 전극 단자 및 제 2 전극 단자가 전기 모듈의 기판의 판면으로 빼내어져 있기 때문에, 복수의 유닛 셀을 분할(절단)하고, 각각의 셀의 단면을 노출시키는 것 없이, 각 셀의 전력을 빼낸다. 또, 빼낸 전극까지의 전류 경로를 짧게 할 수 있기 때문에, 직렬 저항 손실이 저감된다.

본 발명의 일 태양에 의하면, 셀이 동일면상에 복수 배치된 모듈에 있어서도, 각 셀로부터 제 1 전극 단자 또는 제 2 전극 단자를 용이하게 빼내는 것이 가능해진다. 또, 셀 끼리를 용이하게 접속시킬 수 있음과 동시에, 접속 방법을 자유롭게 선택할 수 있기 때문에, 전기 모듈의 출력을 자유자재로 설정 가능하게 된다는 효과를 나타낸다.

[도 1A] 본 발명의 제 1의 실시 형태로서 나타내는 전기 모듈을 모식적으로 나타내는 도이며, 도 1B의 Z1 - Z2 선으로 화살표시한 단면도이다.
[도 1B] 본 발명의 제 1의 실시 형태로서 나타내는 전기 모듈을 모식적으로 나타내는 도이며, 도 1A의 상면도이다.
[도 2A] 본 발명의 제 1의 실시 형태로서 나타내는 전기 모듈의 제조 공정의 일부를 나타내는 상면도이다.
[도 2B] 본 발명의 제 1의 실시 형태로서 나타내는 전기 모듈의 제조 공정의 일부를 나타내는 상면도이다.
[도 3] 본 발명의 제 1의 실시 형태로서 나타내는 전기 모듈의 제조 공정의 일부를 나타내는 하면도이다.
[도 4] 본 발명의 제 1의 실시 형태로서 나타내는 전기 모듈의 제조 공정의 일부를 나타내는 상면도이다.
[도 5A] 본 발명의 제 1의 실시 형태로서 나타내는 전기 모듈의 제조 공정의 일부를 나타내는 상면도이다.
[도 5B] 본 발명의 제 1의 실시 형태로서 나타내는 전기 모듈의 제조 공정의 일부를 나타내는 도이며, 도 5A에 나타낸 X1 - X2 선 및 Y1 - Y2 선으로 화살표시한 단면도이다.
[도 5C] 본 발명의 제 1의 실시 형태로서 나타내는 전기 모듈의 제조 공정의 일부를 나타내는 도이며, 도 5A에 나타낸 Z1 - Z2 선으로 화살표시한 단면도이다.
[도 6A] 본 발명의 제 2의 실시 형태로서 나타내는 전기 모듈을 나타내는 상면도이다.
[도 6B] 본 발명의 제 2의 실시 형태로서 나타내는 전기 모듈을 나타내는 도이며, 도 6A의 Z3 - Z4 선으로 화살표시한 단면도이다.
[도 7] 본 발명의 제 2의 실시 형태로서 나타내는 전기 모듈의 변형예를 나타내는 상면도이다.
[도 8] 본 발명의 제 2의 실시 형태로서 나타내는 전기 모듈의 변형예를 나타내는 상면도이다.
[도 9] 본 발명의 제 2의 실시 형태로서 나타내는 전기 모듈의 변형예를 나타내는 단면도이다.
[도 10] 본 발명의 제 3의 실시 형태로서 나타내는 전기 모듈을 모식적으로 나타내는 단면도이다.
[도 11] 본 발명의 제 4의 실시 형태로서 나타내는 전기 모듈을 모식적으로 나타내는 단면도이다.
[도 12] 종래의 전기 모듈을 나타내는 도이다.

(제 1의 실시 형태)

이하, 도면을 참조하여 본 발명의 전기 모듈 및 전기 모듈의 제조 방법의 제 1의 실시 형태에 대하여, 색소 증감 태양 전지(1A)를 예로서 설명한다.

이하의 설명에 이용하는 각 도면에는, 각 부재를 인식 가능한 크기로 하기 위해, 각 부재의 축척을 적절히 변경하고 있다.

도 1A 및 도 1B에 나타내는 것처럼, 색소 증감 태양 전지(1A)는, 제 1 기판 (2)(하나의 기판) 상에 투명도전막(3)과 반도체층(4)을 갖춘 제 1 전극(5)과, 제 2 기판(6)(제 1 기판(2)에 대향하는 위치에 설치된 제 2 기판(6), 그 외 기판) 상에 대향도전막(7)을 갖춘 제 2 전극(8)을 갖추고 있다. 그래서, 제 1 전극(5)과 제 2 전극(8)과의 사이의 공간이, 도시되지 않은 분리기를 개장시킨 상태에서, 제 1 기판(2)의 가장자리와 제 2 기판(6)의 가장자리에 있어서 봉지재(9)에 의해 틀상으로 봉지되어 있다. 봉지재(9)에 의해 위요된 공간은, 제 1 기판(2)과 제 2 기판(6)과의 첩착에 의해 복수의 셀(C)로 분할되어, 복수의 발전체를 형성하고 있다. 그래서, 또한, 각 셀(C) 내의 공간(C1) 내에 전해액(전해질)(10)이 충진되어 있다.

이 색소 증감 태양 전지(1A)에 있어서는, 각 셀(C)의 제 1 전극(5)에 접속된 제 1 전극 단자(11)와, 제 2 전극(8)에 접속된 제 2 전극 단자(12)가 각각 설치되어 있다.

제 1 기판(2) 및 제 2 기판(6)은, 투명도전막(3) 및 대향도전막(7)의 기재(base)가 되는 부재이며, 예를 들면, 폴리 에틸렌 나프탈 레이트(PEN), 폴리에틸렌 테레프탈레이트(PET) 등의 투명의 열 가소성 수지에 의한 평판상 부재를 거의 직사각형(略 矩形)으로 절단하는 것으로 얻을 수 있다. 덧붙여, 제 1 기판(2) 및 제 2 기판(6)은, 필름상으로 형성된 기판이라도 좋다.

투명도전막(3)은, 제 1 기판(2)의 판면(2a)의 거의 전체에 성막되어 있다.

투명도전막(3)의 재료로는, 예를 들면, 산화 주석(ITO), 산화 아연 등이 이용될 수 있다.

서로 인접하는 셀(C, C)의 각각에 설치되어 있는 투명도전막(3)은, 셀(C, C‥) 사이에 위치하는 라인(L1 ~ L3) 상에서, 절연되어 있다(절연 처리).

이것에 의해, 색소 증감 태양 전지(1A)는, 서로 절연되어서 동일면상에 배치된 복수의 셀(C)를 가진다.

반도체층(4)은, 후술하는 증감 색소로부터 전자를 수취 수송하는 기능을 가지고, 금속 산화물로 구성되는 반도체에 의해 투명도전막(3)의 표면(3a)에 설치되어 있다. 금속 산화물로서는, 예를 들면, 산화 티타늄(TiO2), 산화 아연(ZnO), 산화 주석(SnO2), 등을 이용할 수 있다.

반도체층(4)은, 증감 색소를 담지하고 있다. 증감 색소는, 유기 색소 또는 금속 착체 색소로 구성되어 있다. 유기 색소로서는, 예를 들면, 쿠마린계, 폴리엔계, 시아닌계, 헤미시아닌계, 티오펜계 등의 각종 유기 색소를 이용할 수 있다. 금속 착체 색소로서는, 예를 들면, 루테늄 착체 등을 적절하게 이용할 수 있다.

이처럼, 제 1 기판(2)의 일방의 판면(2a)에 투명도전막(3)을 성막하고, 투명도전막(3)의 표면(3a)에 형성된 반도체층(4)을 설치하여 제 1 전극(5)이 구성되어 있다.

대향도전막(7)은, 제 2 기판(6)의 판면(6a) 전체에 성막되어 있다.

대향도전막(7)의 재료로는, 예를 들면, 산화 주석(ITO), 산화 아연 등을 이용할 수 있다. 또, 대향도전막(7)의 표면(7a)에는, 탄소 페이스트, 백금 등으로 구성된 도시되지 않은 촉매층이 성막되어 있어도 좋다.

서로 인접하는 셀(C, C)의 각각에 설치되어 있는 대향도전막(7)은, 셀(C, C‥)사이의 라인(L1 ~ L3) 상에서, 절연되어 있다(절연 처리).

이것에 의해, 색소 증감 태양 전지(1A)는, 서로 절연되어서 동일면상에 배치된 복수의 셀(C)를 가진다.

이와 같이, 제 2 기판(6)의 일방의 판면(6a)에 대향도전막(7)을 성막시켜 제 2 전극(8)이 구성되어 있다.

이 제 2 전극(8)은, 대향도전막(7)이 투명도전막(3)에 대향하도록, 제 1 전극(5)과 대향 배치되어 있다.

봉지재(9)로는, 핫 멜트 수지 등을 이용할 수 있다.

이 봉지재(9)는, 절연 처리가 실시된 도 2A, 도 4에 나타낸 라인(L1 ~ L3)에 의해 구획되는 셀(C)의 내측에 있어서 도 1A에 나타낸 전해액(10)을 봉지한다. 도 1A에 나타낸 것과 같이 전해액(10)이 봉지된 공간(C1)의 외측에 있어서, 공간(C1)의 외측으로 연장하여 존재하는 제 1 전극(5) 및 제 2 전극(8)으로부터 각각 전력을 빼내는 제 1 전극 단자(11) 및 제 2 전극 단자(12)가 빼내지도록, 봉지재(9)는 공간(C1) 내에 배치되어 있다. 구체적으로는, 봉지재(9)는, 각 셀(C)에 설치된 제 1 전극(5) 및 제 2 전극(8)의 도 4에 나타내는 가장자리(R1 ~ R4)의 전주를 따라, 투명도전막(3) 및 대향도전막(7)의 표면에 중공홀(中空孔)(19)을 형성하는 틀 모양으로 배치되어 있다. 그리고, 또한, 가장자리(R1)에 제 1 전극 단자(11)와 제 2 전극 단자(12)를 배치시키기 위한 긴 홀(h)가, 전해액(10)을 봉지하는 중공홀(19)의 외측에 형성되어 있다. 이러한 형상으로 형성된 봉지재(9)는, 가열 프레스 되어 도 1A에 나타낸 것처럼 제 1 전극(5)과 제 2 전극(8)과의 사이를 접착하고 있다. 덧붙여, 봉지재(9)는, 제 2 전극(8)의 가장자리의 전주를 따라 또는 제 1 전극(5)과 제 2 전극(8)과의 쌍방에 배치되어 있어도 좋다.

도시하지 않은 분리기로서는, 봉지재(9) 및 전해액(10)을 통과시키는 다수의 홀(도시하지 않음)을 가지는 부직포 등의 시트재를 이용할 수 있다.

전해액(10)으로서는, 예를 들면, 아세토니트릴, 프로피오니트릴 등의 비수계 용제; 요오드화 메틸 프로필 이미다졸리움 또는 요오드화 부틸 메틸 이미다졸리움 등의 이온 액체 등의 액체 성분에, 요오드화 리튬 등의 지지 전해액과 요오드가 혼합된 용액 등을 이용할 수 있다. 또, 전해액(10)은, 역전자 이동 반응을 방지하기 위해, t-부틸 피리딘을 포함해도 좋다.

도 1B에 나타낸 것처럼, 제 1 전극 단자(11) 및 제 2 전극 단자(12)는, 봉지재(9)에 있어서 가장자리(R1)에 대응하는 위치에 형성된 긴 홀(h) 내(즉, 중공홀(19)에 의해 형성된 공간(C1)과는 별도로, 봉지재(9)에 의해 위요된 영역)에, 제 1 기판(2) 또는 제 2 기판(6)을 상면시(평면시) 하여 서로 위치가 비틀려 설치되어 있다.

덧붙여, 제 1 전극 단자(11) 및 제 2 전극 단자(12)가 형성되는 위치는, 본 실시 형태처럼 봉지재(9)에 의해 위요된 영역(긴 홀(h)) 내로 한정되지 않는다. 제 1 전극(5)과 제 1 전극 단자(11)와의 도통(導通) 및 제 2 전극(8)과 제 2 전극 단자(12)의 도통을 저해하지 않도록 제 1 전극 단자(11) 및 제 2 전극 단자(12)가 형성되어 있으면, 전극 단자(11,12)가 형성되는 위치는 자유롭게 선택된다. 구체적으로는, 예를 들면, 봉지재(9)에 의해 위요된 영역의 외측에 있어서, 예를 들면, 절연 재료를 이용해 제 1 전극(5)과 제 2 전극(8)과의 단락을 방지하여, 제 1 전극 단자(11)와 제 1 전극(5) 및 제 2 전극 단자(12)와 제 2 전극(8)과의 도통을 꾀한 구조가 채용되어도 좋다.

제 1 전극 단자(11)는, 도 1A에 나타낸 것처럼, 제 1 전극(5)의 투명도전막 (3)에 접촉하도록 설치되고, 투명도전막(3)에 대향하는 제 2 전극(8)을 두께 방향으로 관통시킨 개구부(15)(제 2 개구부)를 통하여 제 2 전극(8)의 제 2 기판(6)의 외부 표면(6b)측으로 빼내어져 있다(제 2 구조).

제 2 전극 단자(12)는, 제 2 전극(8)의 대향도전막(7)에 접촉하도록 설치되고, 대향도전막(7)에 대향하는 제 1 전극(5)을 두께 방향으로 관통시킨 개구부 (16)(제 1 개구부)를 통하여 제 1 전극(5)의 제 1 기판(2)의 외부 표면(2b)측으로 빼내어져 있다(제 1 구조).

제 1 전극 단자(11)와 제 2 전극 단자(12)는, 각각 동박, 알루미늄박 등의 금속 등을 재료로 하는 도전 부재를 이용하여 형성되어 있다.

다음으로, 색소 증감 태양 전지(1A)의 제조 방법에 대하여 도 2A ~ 도 9를 이용하여 설명한다.

본 발명의 제 1의 실시 형태의 색소 증감형 태양 전지(1A)의 제조 방법은, (Ⅱ) 개구부 형성 공정과 (Ⅳ) 단자 형성 공정을 가진다.

(Ⅱ) 개구부 형성 공정에 있어서는, 제 1 전극(5) 및 제 2 전극(8)의 각각에 개구부(16, 15)를 형성한다.

(Ⅳ) 단자 형성 공정에 있어서는, 개구부(16)에 대향하는 제 2 전극(8)에 제 2 전극 단자(12)를 접속하고, 개구부(15)에 대향하는 제 1 전극(5)에 제 1 전극 단자(11)를 접속한다. 또한, 제 1 전극 단자(11)를 개구부(15)에 통하게 하고, 제 2 전극 단자(12)를 개구부(16)에 통하게 하고, 개구부(15)가 형성된 제 2 기판(6)의 외부 표면(6b)측으로 제 1 전극 단자(11)를 빼내고, 제 1 기판(2)의 외부 표면(2b)측으로 제 2 전극 단자(12)를 빼낸다.

또, 본 실시 형태의 제조 방법은, (Ⅱ) 개구부 형성 공정의 전에 행하는, (Ⅰ) 전극 형성 공정과, (Ⅳ) 단자 형성 공정 전에 행해지는 (Ⅲ) 셀 형성 공정과, (Ⅳ) 단자 형성 공정의 후에 행해지는 (Ⅴ) 주액 공정을 가진다. 이하, 각 공정에 대하여 설명한다.

(Ⅰ) <전극 형성 공정>

전극 형성 공정에 있어서는, 도 2A에 나타낸 것처럼, 제 1 기판(2)의 일방의 판면(2a)에 투명도전막(3)을 성막하고, 도 2B에 나타낸 것처럼, 투명도전막(3)의 표면(3a)에 반도체층(4)이 형성된 제 1 전극(5)과, 도 3에 나타낸 것처럼, 제 2 기판(6)의 일방의 판면(6a)에 대향도전막(7)이 성막된 제 2 전극(8)을 형성한다. 구체적으로는, 제 1 전극(5) 및 제 2 전극(8)은 이하와 같이 해서 형성된다.

도 2A에 나타낸 것처럼, 제 1 기판(2)으로서, PET 등으로 구성되는 기판을 이용한다.

제 1 기판(2)의 판면(2a)의 전체에 산화 인듐 주석(ITO) 등을 스퍼터링(Sputtering)해서 투명도전막(3)을 성막한다. 이때, 서로 인접하는 셀(C, C)의 사이가 확실하게 절연되도록, 레이저 등에 의해 투명도전막(3)을 라인(L1 ~ L3)상에 있어서 절연 처리 해 둔다.

도 2B에 나타낸 것처럼, 예를 들면, 에어로졸 데포지션 법, 콜드 스프레이 법 등의 소성을 요하지 않는 저온 성막 법에 의해, 다공질로 되도록 투명도전막(3)의 표면(3a)에 반도체층(4)을 형성한다. 덧붙여, 제 1 기판(2)이 내열성을 가지고 있는 소재인 경우에는, 소성이 가능한 산화 티타늄 함유 페이스트를 마스크, 인쇄법 등에 의해 투명도전막(3)의 표면(3a)에 도포하고, 그 후 500℃ 정도로 소성하여 다공질이 되도록 반도체층(4)을 형성해도 좋다.

어느 경우에 있어서도, 반도체층(4)은, 도 2A에 나타낸 것처럼, 봉지재(9)가 배치되는 가장자리(R1 ~ R4)를 남기고 형성한다.

반도체층(4)을 형성한 뒤, 증감 색소를 용제에 녹인 증감 색소 용액에 반도체층(4)을 침지시켜, 그 반도체층(4)에 증감 색소를 담지시킨다. 덧붙여, 반도체층(4)에 증감 색소를 담지시키는 방법은, 상기에 한정되지 않고, 증감 색소 용액 중으로 반도체층(4)을 이동시키면서 연속적으로 투입·침지·인상을 행하는 방법 등도 채용된다.

이상에 의해, 도 2B에 나타낸 제 1 전극(5)을 얻을 수 있다.

제 2 전극(8)은, 도 3에 나타낸 것처럼, 폴리 에틸렌 테레프탈레이트(PET) 등에 의해 되는 제 2 기판(6)의 일방의 판면(6a)에 ITO, 산화 아연, 백금 등을 스퍼터링하여 대향도전막(7)을 성막한다. 대향도전막(7)은, 인쇄법과 스프레이법 등으로 형성된 도전막이어도 좋다. 이 때, 서로 인접하는 셀(C, C)의 사이가 절연되도록, 레이저 등에 의해 대향도전막(7)을 라인(L1 ~ L3)상에 있어서 절연 처리 해 둔다.

(Ⅱ) <개구부 형성 공정>

개구부 형성 공정에서는, 도 2A 및 도 3에 나타낸 것처럼, 전극 형성 공정에서 작성한 제 1 전극(5)의 가장자리(R1)에 개구부(16)를 형성한다. 또, 전극 형성 공정에서 작성한 제 2 전극(8)의 가장자리(R1)에 개구부(15)를 형성한다. 여기에서, 투명도전막(3)과 대향도전막(7)을 대향 배치시켰을 때에, 개구부(16, 15)의 위치가 서로 다르도록(즉 위치를 비켜놓아서), 개구부(16, 15)의 위치가 결정되고 있다. 덧붙여, 개구부(16, 15)를 형성한 뒤, 이들 개구부(16, 15)의 개구 가장자리를 따라 투명도전막(3) 및 대향도전막(7)을 각각 레이저 등에 의해 절연 처리 해 두면 좋다.

(Ⅲ) <셀 형성 공정>

셀 형성 공정에서는, 제 1 전극(5)과 제 2 전극(8)을 대향 배치시켜 맞붙여서, 봉지재(9)에 의해 봉지한다.

[봉지재의 배치]

구체적으로는, 도 4에 나타낸 것처럼 반도체층(4)을 따라 투명도전막(3)의 가장자리(R1 ~ R4)의 전주에 소정의 중공홀(19, 19‥)이 형성된 틀(틀 모양)과, 개구부(15, 16)를 내측으로 배치시킨 긴 홀(h)를 갖는 시트상의 봉지재(9)를 배치하여 반도체층(4)을 위요한다. 덧붙여, 긴 홀(h)는, 개구부(15, 16)에 맞추어, 개구부(15, 16)를 위요하도록 형성되어도 좋다.

[기판의 맞붙임]

다음으로, 도 5A 및 도 5B에 나타낸 것처럼, 도시하지 않은 분리기를 개장시킨 상태에서 투명도전막(3)과 대향도전막(7)을 대향시켜, 제 2 전극(8)을 제 1 전극(5)에 맞붙인다.

덧붙여, 이 때, 예를 들면, 이형성 수지 시트 등으로 구성된 도시되지 않은 주액홀 형성용 부재를, 제 1 전극(5)과 제 2 전극(8)의 사이에 형성된 각 셀(C)의 공간(C1)에 복수 배치하고, 전해액 주입홀을 용이하게 형성할 수 있도록 해 두면 좋다. 이형성 수지 시트로서는, 폴리에스테르, 폴리 에틸렌 테레프탈레이트, 폴리 부틸렌 테레프탈레이트 등을 이용할 수 있다.

[접착 공정]

접착 공정에서는, 대향 배치시킨 제 1 전극(5) 및 제 2 전극(8)의 가장자리(R1 ~ R4)(도 4 참조)를 적층 방향으로 가열 프레스 하고, 접착시킨다. 이 때, 주액홀 형성용 부재의 내열 온도가 봉지재(9)의 용융 경화 온도보다도 높고, 또한, 주액홀 형성용 부재는 비접착성에 뛰어나기 때문에, 주액홀 형성용 부재에 접하는 봉지재(9)와 주액홀 형성용 부재와는 접착하지 않는다. 따라서, 주액홀 형성용 부재의 양 표면은, 제 1 전극(5)과도 제 2 전극(8)과도 접착되어 있지 않다.

이렇게 해서, 제 1 전극(5)과 제 2 전극(8)과의 사이에 설치된 봉지재(9)에 의해, 공간(C1)을 형성하여 반도체층(4)을 위요하는 것과 동시에, 공간(C1)의 외측 위치하는 긴 홀(h)이 형성된 셀(C)를 복수 형성한다.

(Ⅳ) <단자 형성 공정>

단자 형성 공정에서는, 도 5B 및 도 5C에 나타낸 것처럼, 제 1 전극(5)에 형성된 개구부(16)으로부터 제 2 전극 단자(12)를 삽입하고, 대향도전막(7)에 제 2 전극 단자(12)를 접촉시켜서, 이 제 2 전극 단자(12)를 개구부(16)가 형성된 제 1 기판(2)의 외부 표면(2b)측으로 빼내서, 외부 표면(2b)에 고정한다.

또, 제 2 전극(8)에 형성된 개구부(15)로부터 제 1 전극 단자(11)를 삽입하고, 투명도전막(3)에 제 1 전극 단자(11)를 접촉시킨 상태에서, 이 제 1 전극 단자 (11)를 개구부(15)가 형성된 제 2 기판(6)의 외부 표면(6b)측으로 빼내서, 외부 표면(6b)에 고정한다.

이렇게 해서, 제 1 전극(5)과 제 2 전극(8)을 적층시킨 접합체(1a)가 얻어진다.

(Ⅴ) <주액 공정>

주액 공정에서는, 제 1 전극(5)과 제 2 전극(8)과의 사이에 개장시켜 둔 도시하지 않은 주액홀 형성용 부재를 뽑아내거나, 그 이외의 방법으로 제 1 기판(2) 또는 제 2 기판(6)에 도시하지 않은 주액홀을 형성한다. 그리고, 제 1 전극(5)과 제 2 전극(8)과의 접합체(1a)를 감압 분위기 하에 두고, 전해액(10)을 보유한 도시하지 않은 용기에 주액홀을 침지시켜서 진공 흡입에 의해 전해액(10)을 공간(C1) 내로 주입한다.

전해액(10)의 주입 후에는, 도시하지 않은 주액홀을 접착제 등으로 폐구하여 전해액(10)이 제 1 전극(5), 제 2 전극(8), 및 봉지재(9)에 의해 봉지되어, 전해액(10)이 봉지된 공간(C1)의 외측으로 제 1 전극 단자(11) 및 제 2 전극 단자(12)가 설치된 셀(C)가 복수 배열된 도 1A 및 도 1B에 나타낸 색소 증감 태양 전지(1A)를 얻을 수 있다.

덧붙여, 주액 공정에 있어서, 전해액(10)을 진공 흡입 공정(주액 공정에 있어서 진공에 의해 전해액(10)을 주입하는 공정)으로 바꾸어서, 셀 형성 공정에 있어서, 젤 상의 전해질을 제 1 전극(5)에 도포하여 제 2 전극(8)과의 사이에 개재시켜도 좋다.

이상과 같이, 색소 증감 태양 전지(1A)에 의하면, 제 1 전극 단자(11)와 제 2 전극 단자(12)가, 제 2 전극(8)의 표면상 또는 제 1 전극(5)의 표면상, 즉 제 2 기판(6)의 외부 표면(6b)상 또는 제 1 기판(2)의 외부 표면(2b)상으로 빼내지고 있다. 따라서, 셀(C)가 동일면상에 복수 배치된 색소 증감 태양 전지(1A)에 있어서, 제 1 전극 단자(11) 및 제 2 전극 단자(12)를 각 셀(C)로부터 용이하게 빼낼 수 있다는 효과를 얻을 수 있다.

그리고, 색소 증감 태양 전지(1A)의 제조에 제하여도, 셀(C)를 동일면상에 복수 형성하는 프로세스에 있어서, 제 1 전극 단자(11) 또는 제 2 전극 단자(12)를 각 셀(C)로부터 빼내는 공정을 편입할 수 있다. 따라서, 롤-투-롤 같은 연속적인 제조 방법에도 알맞게 적용할 수 있다는 효과를 얻을 수 있다.

또, 색소 증감 태양 전지(1A)에 의하면, 예를 들면, 도 5A 및 도 5C에 나타낸 것처럼, 제 1 기판(2)의 외부 표면(2b)으로 빼낸 임의의 셀(C, C‥)의 제 2 전극 단자(12)에, 예를 들면, 도전성 테이프(T2)를 붙이고, 제 2 기판(6)의 외부 표면(6b)으로 빼낸 임의의 셀(C, C‥)의 제 1 전극 단자(11)에, 예를 들면, 도전성 테이프(T1)을 붙이는 것으로, 셀(C, C‥) 사이를 간단히 병렬 접속시킬 수 있고, 색소 증감 태양 전지(1A)의 출력을 간단하면서 자유롭게 설정할 수 있다는 효과를 얻을 수 있다.

또, 제 1 전극 단자(11)와 제 2 전극 단자(12)를, 각각 다른 개구부(16, 15)로부터 빼내기 위해, 제 1 전극 단자(11)와 제 2 전극 단자(12)를 임의의 위치, 예를 들면, 본 실시 형태처럼 동일의 가장자리(R1)에 설치할 수 있다. 이를 위해, 각 셀(C)에 있어서 전극 단자를 빼낸 개소를 정리하고, 단순하면서 간결하게 색소 증감 태양 전지(1A)를 형성할 수 있다는 효과를 얻을 수 있다.

(제 2의 실시 형태)

다음으로, 본 발명의 제 2의 실시 형태에 대해 도 6A 및 도 6B를 이용하여 설명한다. 본 발명의 제 2의 실시 형태에서는, 상술한 제 1의 실시 형태와 같은 구성 및 공정에 대하여는 동일의 부호를 이용하여 그 구성 및 공정의 설명을 생략하고, 제 1의 실시 형태와 다른 구성 및 공정에 대하여만 설명한다.

본 실시 형태의 색소 증감 태양 전지(1B)는, 개구부 형성 공정에 있어서, 제 2 전극(8)의 일부를 구성하는 설편(20)을 형성하는 홈(21)을 제 2 전극(8)에 형성하고, 이 설편(20)이 형성된 제 2 전극(8)의 외부 표면(6b)측으로 설편(20)을 되접어 꺾고, 되접어 꺾인 설편(20)의 표면에 성막된 대향도전막(7)에 제 2 전극 단자 (12)를 두고 있다.

또한, 설편(20)을 되접어 꺾어 형성한 개구부(22)로부터, 개구부(22)에 대향하는 제 1 전극(5)에 접속한 제 1 전극 단자(11)를 빼내고 있다.

본 실시 형태의 색소 증감 태양 전지(1B)에 의하면, 제 1 전극(5) 또는 제 2 전극(8)의 어느 한쪽에 개구부(22)를 형성하면 되므로, 제조 공정을 간소화할 수 있다는 효과를 얻을 수 있다. 또 제 1 전극 단자(11)와 제 2 전극 단자(12)를 이웃하게 하여 동일의 제 2 기판(6)의 외부 표면(6b) 위로 빼내는 것이 가능하도록, 도전성 테이프 등의 도전 부재(T3, T4)를 이용하여 간편하고 간단하게 셀(C, C‥) 끼리를 직렬 접속 또는 병렬 접속할 수 있게 된다는 효과를 얻을 수 있다.

또, 도 7, 도 8에 나타낸 것처럼, 본 실시 형태의 방법에 따라 하나의 셀(C)에 제 1 전극 단자(11) 및 제 2 전극 단자(12)로 구성되는 전극 단자 쌍을 복수 형성하고, 이웃하는 셀(C, C) 사이(이웃하는 제 1셀과 제 2셀과의 사이)에서, 제 1 전극 단자(11)끼리(전극 단자 쌍)가 이웃하도록 설치되어도 좋다. 또, 이웃하는 셀(C, C) 사이에서, 제 2 전극 단자(12)끼리(전극 단자 쌍) 이웃하도록 설치되어도 좋다. 또, 이웃하는 셀(C, C) 사이에서, 제 1 전극 단자(11) 및 제 2 전극 단자(12)(전극 단자 쌍)가 이웃하도록 설치되어도 좋다.

이 경우, 예를 들면, 도전성 테이프(T5, T5)를 복수의 제 2 전극 단자(12)의 전체가 도통하도록 일괄하여 첩착시키거나, 도전성 테이프(T5, T5)를 서로 이웃하는 2개의 제 2 전극 단자(12)만이 도통하도록 첩착시키기도 한다.

또, 도전성 테이프(T6, T6)를 복수의 제 1 전극 단자(11)의 전체가 도통할 수 있도록 일괄하여 첩착시키거나, 도전성 테이프(T6, T6)를 서로 이웃하는 2개의 제 1 전극 단자(11)만이 도통하도록 첩착시키기도 한다. 이에 의해, 이웃하는 셀(C, C) 끼리의 사이에서 병렬 접속 및 직접 접속 모두가 자유자재로 선택될 수 있음과 동시에, 간단히 접속될 수 있다는 효과를 얻을 수 있다.

하나의 셀(C)로부터 제 1 전극 단자(11) 및 제 2 전극 단자(12)가 복수 조 빼내어져 있으므로, 도 8에 나타낸 것처럼, 접속시키고 싶은 셀(C, C)를 자유롭게 선택할 수 있고, 즉 셀(C)의 접속 방향의 자유도가 높아진다는 효과를 얻을 수 있다.

또, 색소 증감 태양 전지(1B)는, 셀(C, C) 사이의 제 1 전극 단자(11) 및 제 2 전극 단자(12)를 도전 부재로 접속시킬 때까지는 셀(C, C) 끼리는 절연되어 있고, 색소 증감 태양 전지(1B)의 제조 후에 접속 방법을 선택할 수 있도록 되어 있다. 따라서, 제 1 전극 단자(11) 및 제 2 전극 단자(12)의 접속 전에 셀(C)를 자유자재로 빼내고, 1 또는 복수의 셀(C, C)로 이루어진 임의의 형상을 갖는 색소 증감 태양 전지(1B)를 유닛화하는 것도 가능하게 된다는 효과를 얻을 수 있다.

덧붙여, 제 2의 실시 형태에 의해 제 1 전극 단자(11) 및 제 2 전극 단자(12)를 형성하는 경우, 설편(20)을 되접어 꺾을 때에, 설편(20)의 표면과, 설편(20)을 되접어 꺾은 것에 의해 형성되는 개구부(22)로부터, 항상 제 1 전극 단자(11) 및 제 2 전극 단자(12)의 양측을 빼낼 필요는 없다.

즉, 제 2 전극(8)에 홈(21)을 짝수 조 형성하고, 제 1 전극 단자(11)와 제 2 전극 단자(12)를 각각 다른 설편(20) 또는 개구부(22)로부터 빼내도 좋다. 예를 들면, 도 9에 나타낸 것처럼, 되접어 꺾은 하나의 설편(20A)(제 1 설편)으로부터 제 2 전극 단자(12)를 빼냄과 동시에, 이 설편(20A)에 의해 개구부(22A)로부터는 제 1 전극 단자(11)는 빼내지 않고, 다른 설편(20B)(제 2 설편)을 되접어 꺾을 때에 형성되는 개구부(22B)로부터 제 1 전극 단자(11)를 빼내고, 다른 설편(20B)의 표면에서는 제 2 전극 단자(12)를 빼내지 않는 구조를 채용해도 좋다.

또, 제 2의 실시 형태에 있어서, 홈(21)은, 제 1 전극(5)에 형성해도, 제 1 전극(5) 및 제 2 전극(8)의 어느 일방 또는 쌍방에 설치해도 좋다.

홈(21)이 제 1 전극(5)에 형성되는 경우, 설편(20)이 형성된 제 1 전극(5)의 외부 표면에서 설편(20)이 되접어 꺾이고, 되접어 꺾인 설편(20)의 외부 표면에 제 1 전극 단자(11)가 설치된다. 또한, 설편(20)의 되접어 꺾기에 의해 형성된 개구부로부터, 개구부에 대향하는 제 2 전극(6)에 접속되는 제 2 전극 단자(12)가 빼내어진다.

또, 제 1의 실시 형태의 제 1 전극 단자(11) 및 제 2 전극 단자(12)의 빼내는 방법과 제 2의 실시 형태의 제 1 전극 단자(11) 및 제 2 전극 단자(12)의 빼내는 방법의 쌍방을 조합하여 색소 증감 태양 전지를 제조해도 좋다.

또, 상기 제 1 및 제 2의 실시 형태에서는, 셀(C)가 직사각형으로 형성된 예를 나타냈지만, 본 발명의 실시 형태의 색소 증감 태양 전지(1B)에 있어서 셀(C)의 형상은, 직사각형으로 한정되지 않는다. 즉, 원형 그 외의 다각형의 셀(C) 또는 서로 다른 형상 또는 크기를 갖는 셀(C, C)가 배열된 색소 증감 태양 전지(1B)에 있어서, 각 셀(C)로부터 제 1 전극 단자(11) 및 제 2 전극 단자(12)를 빼내고, 이웃하는 셀(C, C)끼리를 접속시키는 경우에도, 적절하게 적용할 수 있다.

이상으로부터, 본 발명은, 제 1 기판(2) 및 제 2 기판(6)상에 형성하는 셀(C)의 형상에 자유도를 갖게 함과 동시에, 임의의 셀(C, C)끼리를 자유롭게 접속시켜 출력을 자유자재로 설정할 수 있다는 점에서도 유리한 효과를 나타낸다.

(제 3의 실시 형태)

이하에, 본 발명의 제 3의 실시 형태에 대하여 설명한다.

도 10은, 전기 모듈의 제 3의 실시 형태를 모식적으로 나타내는 단면도이다.

본 발명의 제 3의 실시 형태에서는, 상술한 제 1의 실시 형태와 같은 구성에 대하여는 동일의 부호를 이용하여 그 구성의 설명을 생략하고, 제 1의 실시 형태와 다른 구성에 대해서만 설명한다.

본 실시 형태의 색소 증감 태양 전지(1C)에 있어서는, 대향도전막(7)을 분할하도록 라인(L4)이 제 2 전극(8)에 형성되어 있고, 이것에 의해 서로 인접하는 대향도전막(7)이 절연되어 있다. 또, 제 2 기판(6)에 평행한 방향에 있어서, 대향도전막(7)의 폭(W1)은, 봉지재(9)의 폭(W2) 보다도 작다.

또, 투명도전막(3)을 분할할 수 있도록 라인(L5)이 제 1 전극(5)에 형성되어 있으며, 이것에 의해 서로 인접하는 투명도전막(3)이 라인(L5)에 의해 절연되어 있다.

한편, 본 실시 형태에 있어서는, 개구부(15, 16), 제 1 전극 단자(11), 및 제 2 전극 단자(12)의 구조는, 상술한 제 1의 실시 형태와 마찬가지이다.

이러한 구성에 의하면, 상술한 제 1 및 제 2의 실시 형태에서 말한 효과에 더하여, 제 1 기판(2) 및 제 2 기판(6)의 신축에 의해 전극의 크기나 서로 대향하는 전극 간의 평면시에서의 상대 위치가 변화했다고 해도 제 1 전극 단자(11)와 투명도전막(3)이 접속되고, 제 2 전극 단자(12)와 투명도전막(7)이 접속되고, 제 1 전극 단자(11) 및 제 2 전극 단자(12)를 색소 증감 태양 전지(1C)의 외부로 용이하게 빼낼 수 있다. 따라서, 2장의 기판의 위치 맞춤을 고려하지 않고 제 1 전극 단자(11) 및 제 2 전극 단자(12)가 외부로 빼내어진 색소 증감 태양 전지(1C)를 용이하게 실현할 수 있다.

또, 본 실시 형태에서는, 제 2 기판(6)에 평행한 방향에 있어서, 대향도전막(7)의 폭(W1)이 봉지재(9)의 폭(W2)보다도 작아지도록, 복수의 라인(L4)을 대향도전막(7)에 형성하는 것에 의해 대향도전막(7)이 분할되어 있다. 본 발명은, 이 구성에 한정되지 않고, 제 1 기판(5)에 평행한 방향에 있어서, 대향도전막(3)의 폭이 봉지재(9)의 폭(W2)보다도 작아지도록, 복수의 라인(L5)를 대향도전막(3)에 형성하는 것에 의해 대향도전막(3)이 분할되어도 좋다.

또, 색소 증감 태양 전지(1C)의 평면시에 있어서 제 2 전극 단자(12)가 대향도전막(7)에 접속되면서 제 1 전극 단자(11)가 대향도전막(3)에 접속되어 있으면, 라인(L4)의 위치와 개구부(15)의 위치(즉, 제 1 전극 단자(11)의 위치)가 겹쳐도 좋다. 또, 제 1 기판(5)에 평행한 방향에 있어서 대향도전막(3)의 폭이 봉지재(9)의 폭(W2) 보다도 작아지도록 복수의 라인(L5)이 대향도전막(3)에 형성되어 있는 구성에 있어서도, 제 2 전극 단자(12)가 대향도전막(7)에 접속되면서 제 1 전극 단자(11)가 대향도전막(3)에 접속되어 있으면, 라인(L5)의 위치와 개구부(16)의 위치(즉, 제 2 전극 단자(12)의 위치)가 겹쳐도 좋다.

또, 도 10에 나타내는 구조에서는, 라인(L4)의 위치에 있어서 서로 인접하는 대향도전막(7)의 사이에 공간이 형성되어 있지만, 이 공간을 메우도록 절연 재료로 구성되는 절연부가 설치되어도 좋다.

다음으로, 색소 증감 태양 전지(1C)의 제조 방법에 대하여 설명한다.

먼저, 제 1 기판(5)의 판면에 복수의 제 1 전극(5)을 형성하고, 제 2 기판(6)의 판면에 복수의 제 2 전극(8)을 형성한다. 제 1 전극(5) 및 제 2 전극(8)을 형성하는 구체적인 공정은, 제 1의 실시 형태에서 말한 공정과 동일하다. 복수의 제 2 전극(8)을 형성할 때에 있어서는, 나중에 형성되는 봉지재(9)의 폭(W2) 보다도 대향도전막(7)의 폭(W1)이 작아지도록, 복수의 라인(L4)을 대향도전막(7)에 형성하고, 라인(L4)에 의해 대향도전막(7)을 분할한다.

다음으로, 제 1 전극(5)과 제 2 전극(8)을 대향시켜서, 봉지재(9)를 통하여, 제 1 기판(5)과 제 2 기판(6)을 맞붙인다. 구체적으로, 제 1 전극(5)에 있어서 서로 이웃하는 대향도전막(3)의 사이에 형성된 라인(L5)과 봉지재(9)가 겹쳐지도록, 봉지재(9)를 대향도전막(3)에 접촉시킨다. 그 후, 대향도전막(3) 상에 설치된 봉지재(9)를 사이에 두도록, 제 1 기판(5)과 제 2 기판(6)을 맞붙인다.

그 후에 실시되는 공정은, 제 1의 실시 형태와 동일한 공정이 실시된다.

덧붙여, 상기의 색소 증감 태양 전지(1C)의 제조 방법에 있어서는, 서로 이웃하는 대향도전막(7)의 사이, 혹은, 서로 이웃하는 대향도전막(3)의 사이에, 절연부를 형성하여도 좋다. 이 경우에는, 제 1 전극(5) 및 제 2 전극(8)을 형성하는 공정에 더하여, 절연부를 형성하는 공정이 실시된다.

또, 상기의 제조 방법에서는, 대향도전막(7)의 폭(W1)이 봉지재(9)의 폭(W2) 보다도 작아지도록, 복수의 라인(L4)을 대향도전막(7)에 형성하는 것에 의해 대향도전막(7)을 분할하고 있지만, 본 발명은, 이러한 방법에 한정되지 않는다. 제 1 기판(5)에 평행한 방향에 있어서, 대향도전막(3)의 폭이 봉지재(9)의 폭(W2) 보다도 작아지도록, 복수의 라인(L5)을 대향도전막(3)에 형성하는 것에 의해 대향도전막(3)을 분할해도 좋다.

(제 4의 실시 형태)

이하에, 본 발명의 제 4의 실시 형태에 대하여 설명한다.

도 11은, 전기 모듈의 제 4의 실시 형태를 모식적으로 나타내는 단면도이다.

본 발명의 제 4의 실시 형태에서는, 상술한 제 2 및 제 3의 실시 형태와 같은 구성에 대하여는 동일의 부호를 이용하여 그 구성의 설명을 생략하고, 제 2의 실시 형태와 다른 구성에 대해서만 설명한다.

본 실시 형태의 색소 증감 태양 전지(1D)에 있어서는, 제 3의 실시 형태에서 말한 것처럼, 제 2 기판(6)에 평행한 방향에 있어서, 대향도전막(7)의 폭(W1)은, 봉지재(9)의 폭(W2)보다도 작다. 또한, 제 2의 실시 형태에서 말한 것처럼, 설편(20)을 형성하는 홈(21)이 제 2 전극(8)에 형성되고, 이 설편(20)이 형성된 제 2 전극(8)의 외부 표면(6b)측으로 설편(20)이 되접어 꺾이고, 되접어 꺾인 설편(20)의 표면에 성막된 대향도전막(7)에 제 2 전극 단자(12)를 설치하고 있다.

이러한 구성에 의하면, 상술한 제 1 및 제 2의 실시 형태에서 말한 효과에 더하여, 제 1 기판 및 제 2 기판(6)의 신축에 의해 전극의 크기나 서로 대향하는 전극 단자 간의 평면시에서의 상대 위치가 변화했다고 해도 제 1 전극 단자(11) 및 제 2 전극 단자(12)를 색소 증감 태양 전지(1D)의 외부로 용이하게 빼낼 수 있다. 따라서, 2장의 기판의 위치 맞춤을 고려하지 않고 제 1 전극 단자(11) 및 제 2 전극 단자(12)가 외부로 빼내어진 색소 증감 태양 전지(1C)를 용이하게 실현할 수 있다.

이상, 본 발명의 바람직한 실시 형태를 설명하고, 상기에서 설명해 왔으나, 이것들은 본 발명의 예시적인 것이고, 한정하는 것으로서 고려되어야 하지 않음을 이해해야 한다. 추가, 생략, 치환, 및 그 외의 변경은, 본 발명의 범위로부터 일탈하지 않고 실시할 수 있다. 따라서, 본 발명은, 상술한 설명에 의해 한정되어 있다고 간주되어서는 안되고, 특허 청구의 범위에 의해 제한되어 있다.

본 발명은, 태양 전지 등의 전기 모듈에 관한 분야에서 이용 가능 하다.

1A, 1B, 1C, 1D 색소 증감 태양 전지(전기 모듈)
2 제 1 기판
2a 판면
2b 외부 표면
5 제 1 전극
6 제 2 기판
6a 판면
6b 외부 표면
8 제 2 전극
9 봉지재
11 제 1 전극 단자
12 제 2 전극 단자
15, 16 개구부
20 설편
21 홈
22 개구부
C 셀
W1 대향도전막(7)의 폭
W2 봉지재(9)의 폭

Claims (10)

  1. 동일면상에 배치된 복수의 셀을 가지는 전기 모듈에 있어서,
    제 1 전극과,
    상기 제 1 전극에 대향 배치되는 제 2 전극과,
    상기 제 1 전극과 상기 제 2 전극과의 사이에 개재하는 전해질과,
    상기 제 1 전극에 접속된 제 1 전극 단자와,
    상기 제 2 전극에 접속된 제 2 전극 단자,
    를 갖추고,
    상기 제 1 전극에 두께 방향으로 관통하여 설치된 개구부를 통하여 상기 제 2 전극에 접속된 상기 제 2 전극 단자가 상기 제 1 전극의 외부 표면측으로 빼내어져 있는 제 1 구조, 및, 상기 제 2 전극에 두께 방향으로 관통하여 설치된 개구부를 통하여 상기 제 1 전극에 접속된 상기 제 1 전극 단자가, 상기 제 2 전극의 외부 표면측으로 빼내어져 있는 제 2 구조, 중 적어도 일방을 이용하고 있는
    것을 특징으로 하는 전기 모듈.

  2. 제 1항에 있어서,
    상기 제 1 전극에 두께방향으로 관통한 제 1 개구부와,
    상기 제 2 전극에 두께방향으로 관통한 제 2 개구부,
    를 갖고,
    상기 제 1 전극 및 상기 제 2 전극의 평면시에 있어서 상기 제 1 개구부의 위치와 상기 제 2 개구부의 위치는 서로 비켜 있고,
    상기 제 1 전극 단자는, 상기 제 2 개구부로부터 빼내어져 있고,
    상기 제 2 전극 단자는, 상기 제 1 개구부로부터 빼내어져 있는
    것을 특징으로 하는 전기 모듈.

  3. 제 1항 또는 제 2항에 있어서,
    상기 제 1 전극 및 상기 제 2 전극의 평면시에 있어서, 상기 제 1 전극 단자와 상기 제 2 전극 단자는, 이웃하는 위치에 형성되어 있는,
    것을 특징으로 하는 전기 모듈.

  4. 제 1항 내지 제 3항 중 어느 한 항에 있어서,
    상기 제 1 전극에, 설편을 형성하는 홈이 형성되고,
    상기 설편은, 상기 설편이 형성된 상기 제 1 전극의 외부 표면으로 되접어 꺾이고,
    되접어 꺾인 상기 설편의 외부 표면에 상기 제 1 전극 단자가 설치되고,
    상기 설편의 되접어 꺾기에 의해 형성된 개구부로부터, 상기 개구부에 대향하는 제 2 전극에 접속된 상기 제 2 전극 단자가 빼내어져 있는
    것을 특징으로 하는 전기 모듈.

  5. 제 1항 내지 제 3항 중 어느 한 항에 있어서,
    상기 제 2 전극에, 설편을 형성하는 홈이 형성되고,
    상기 설편은, 상기 설편이 형성된 상기 제 2 전극의 외부 표면으로 되접어 꺾이고,
    되접어 꺾인 상기 설편의 외부 표면에 상기 제 2 전극 단자가 설치되고,
    상기 설편의 되접어 꺾기에 의해 형성된 개구부로부터, 상기 개구부에 대향하는 제 1 전극에 접속된 상기 제 1 전극 단자가 빼내어져 있는
    것을 특징으로 하는 전기 모듈.

  6. 제 1항 내지 제 5항 중 어느 한 항에 있어서,
    하나의 셀에 상기 제 1 전극 단자 및 상기 제 2 전극 단자로 구성되는 전극 단자 쌍이 복수 설치되고, 상기 전극 단자 쌍이 상기 셀로부터 빼내어져 있는
    것을 특징으로 하는 전기 모듈.

  7. 제 1항 내지 제 6항 중 어느 한 항에 있어서,
    서로 이웃하는 제 1 셀과 제 2 셀과의 사이에 있어서, 상기 제 1 셀에 설치된 상기 제 1 전극 단자와 상기 제 2 셀에 설치된 상기 제 1 전극 단자로 구성되는 전극 단자 쌍이 한 조 이상 설치되고, 상기 제 1 전극 단자가 상기 제 1 셀로부터 빼내어지며, 상기 제 1 전극 단자가 상기 제 2 셀로부터 빼내어져 있는
    것을 특징으로 하는 전기 모듈.

  8. 제 1항 내지 제 6항 중 어느 한 항에 있어서,
    서로 이웃하는 제 1 셀과 제 2 셀과의 사이에 있어서, 상기 제 1 셀에 설치된 상기 제 2 전극 단자와 상기 제 2 셀에 설치된 상기 제 2 전극 단자로 구성되는 전극 단자 쌍이 한 조 이상 설치되고, 상기 제 2 전극 단자가 상기 제 1 셀로부터 빼내어지며, 상기 제 2 전극 단자가 상기 제 2 셀로부터 빼내어져 있는
    것을 특징으로 하는 전기 모듈.

  9. 제 1항 내지 제 6항 중 어느 한 항에 있어서,
    서로 이웃하는 제 1 셀과 제 2 셀과의 사이에 있어서, 상기 제 1 셀에 설치된 상기 제 1 전극 단자와 상기 제 2 셀에 설치된 상기 제 2 전극 단자로 구성되는 전극 단자 쌍이 한 조 이상 설치되고, 상기 제 1 전극 단자가 상기 제 1 셀로부터 빼내어지며, 상기 제 2 전극 단자가 상기 제 2 셀로부터 빼내어져 있는
    것을 특징으로 하는 전기 모듈.

  10. 제 1항 내지 제 9항 중 어느 한 항에 기재된 복수의 셀을 갖춘 전기 모듈을 절단하여 형성된 하나 또는 복수의 셀로 구성되는 전기 모듈.

KR1020147035966A 2012-10-19 2013-03-21 전기 모듈 KR20150073883A (ko)

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JP6521644B2 (ja) * 2015-01-22 2019-05-29 シャープ株式会社 色素増感太陽電池および色素増感太陽電池システム
CN109478470B (zh) * 2016-08-02 2021-11-19 日本瑞翁株式会社 太阳能电池模块
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JP2001357897A (ja) * 2000-06-14 2001-12-26 Fuji Xerox Co Ltd 光電変換モジュール
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